Pre-Fishery Stock Assessment Lough Foyle Native Oyster Fishery Autumn 2018
1
Aquaculture & Shellfisheries
____________________________________ Report Reference LA/0Y/0218
Version No. 1 2
Author CMG CMG
Date Issued 14/11/18 21/11/18
Amendments
Approved by
1st draft for comment BF Format and minor BF amendments
Prepared by: Ciarán McGonigle/Cass Bromley/Rachel Scott /Tom Sheerin/Luke Perry
For further information contact: Loughs Agency 22, Victoria Road Prehen Derry/Londonderry BT47 2AB Tel: 028 71 342100 Fax: 028 71 342720 email:general@loughs-agency.org
Loughs Agency D’arcy Magee Court Dundalk Street Carlingford Co Louth Tel: 042 93 83 888 Fax: 042 93 83 888 email:carlingford@loughsagency.org
www.loughs-agency.org
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Contents 1.
Executive Summary ................................................................................................................ 5
2.
Introduction ............................................................................................................................ 6
3.
Methods.................................................................................................................................. 6
4.
Oyster Density ........................................................................................................................ 7
5.
Biomass Estimate ................................................................................................................... 8
6.
Spatfall .................................................................................................................................. 10
7.
Mortality Levels .................................................................................................................... 12
8.
Population Structure ............................................................................................................ 14
9.
Oyster Bed Review ............................................................................................................... 17
9.1
The Perch .............................................................................................................................. 17
9.2 The Flat Ground ....................................................................................................................... 19 9.3 Quigley’s Point ......................................................................................................................... 21 9.4 Middle Bed South .................................................................................................................... 23 9.5 Southside North ....................................................................................................................... 25 9.6 Southside South ....................................................................................................................... 27 9.7 Great Bank ............................................................................................................................... 29 10.
Conclusions ........................................................................................................................... 31
2
List of Figures Figure 1 Estimated Biomass (tonnes) over 70mm on Foyle Oyster Beds Spring 2018 ........................... 5 Figure 2 Methods used during survey: ................................................................................................... 6 Figure 3 Interpolated oyster density Lough Foyle Autumn 2018 ........................................................... 7 Figure 4 Mean Density Lough Foyle 2008-2018...................................................................................... 8 Figure 5 Historic Pre-Season Biomass Estimates and Landings Lough Foyle .......................................... 9 Figure 6 Observed and Estimated Landings from Lough Foyle............................................................. 10 Figure 7 Length Frequency of oysters in Lough Foyle 2017-2018 ........................................................ 11 Figure 8 Oyster Spat Density in Lough Foyle Spring 2018 .................................................................... 11 Figure 9 Historic Spat Density and Presence Lough Foyle .................................................................... 12 Figure 10 Oyster mortality observed in Lough Foyle Autumn 2018 ..................................................... 13 Figure 11 Oyster Mortality levels Lough Foyle 2011-2018 ................................................................... 13 Figure 12 Length Frequency of Lough Foyle Oysters 2007 & 2018 ...................................................... 14 Figure 13 Cumulative Frequency across all oyster beds in Lough Foyle 2017-2018 ............................ 15 Figure 14 Length classes on oyster beds Lough Foyle Autumn 2018 ................................................... 15 Figure 15 Size class on each bed in Lough Foyle Autumn 2018 ............................................................ 16 Figure 16 Proportional Length Frequency: The Perch 2017-18 ............................................................ 17 Figure 17 Cumulative Frequency: The Perch 2017-2018 ...................................................................... 18 Figure 18 Length classes: The Perch 2018 ............................................................................................ 18 Figure 19 Proportional Length Frequency: Flat Ground 2017-18 ......................................................... 19 Figure 20 Cumulative Frequency: Flat Ground 2017-2018 ................................................................... 20 Figure 21 Percentage of each length class: Flat Ground 2018.............................................................. 20 Figure 22 Proportional Length Frequency Quigley's Point 2017-18 ..................................................... 21 Figure 23 Cumulative Frequency: Quigley's point 2017-2018 .............................................................. 22 Figure 24 Percentage of length classes: Quigley’s Point 2018.............................................................. 22 Figure 25 Proportional Length Frequency Middle bed 2017-18........................................................... 23 Figure 26 Cumulative Frequency Middle Bed 2016-2018..................................................................... 24 Figure 27 Percentage of length classes Middle Bed 2018 .................................................................... 24 Figure 28 Proportional Length Frequency Southside (N) 2017-18 ....................................................... 25 Figure 29 Cumulative Frequency Southside (N) 2016-2018 ................................................................. 26 Figure 30 Percentage of length classes: Southside (N) 2018 ................................................................ 26 Figure 31 Length Frequency Southside (S) 2017-18 ............................................................................. 27 Figure 32 Cumulative Length Frequency Southside (S) 2016-2018 ...................................................... 28 Figure 33 Percentage of length classes: Southside (S) 2018................................................................. 28
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Figure 31 Length Frequency Great Bank 2017-18 ................................................................................ 29 Figure 32 Cumulative Length Frequency Great Bank 2016-2018 ......................................................... 30 Figure 33 Percentage of length classes: Great Bank 2018 .................................................................... 30
List of Tables Table 1 Oyster biomass per oyster bed in Lough Foyle Spring 2018 ...................................................... 9 Table 2 Summary Information: The Perch ............................................................................................ 17 Table 3 Summary Information: The Flat Ground .................................................................................. 19 Table 4 Summary Information: Quigley's Point .................................................................................... 21 Table 5 Summary Information: Middle Bed South ............................................................................... 23 Table 6 Summary Information: Southside North .................................................................................. 25
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1. Executive Summary A pre-fishery stock assessment was conducted on the commercially active oyster beds in Lough Foyle during autumn 2018. There has been a widespread spatfall on the oyster beds in Lough Foyle during 2018. This has helped to rebalance the length frequency that had been exhibiting a skew towards the larger size classes following successive poor recruitment of juveniles. This spat settlement appears to have taken place relatively late in the summer period. It remains to be seen if these spat, the majority of which are less than 20mm, can survive in great enough numbers to help sustain a broodstock and a fishery. The biomass of oysters over 80mm on all oyster beds is estimated to be 269 tonnes. This is available to the fishery in 2018/19. The biomass over 70mm is currently estimated to be 458t. Landings from the fishery in the 2017/18 season amounted to just over 205 tonnes. It is recommended that the fishery does not remove the total harvestable biomass in the 2018/19 season. This will help to prevent the loss of an effective spawning stock for the 2019 spawning period and help retain sufficient stock to support a sustainable fishery for 2019/20.
Figure 1 Estimated Biomass (tonnes) over 80mm on Foyle Oyster Beds Autumn 2018
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2. Introduction A pre-fishery survey of the native oyster beds in Lough Foyle took place during the period September to October 2018. This survey was conducted by Agency staff on board a local fishing vessel.
3. Methods A dredge survey was carried out in Lough Foyle using a local fishing vessel. Scientific staff from the Loughs Agency assessed the population distribution and abundance by analysing dredge contents from each sample location (figure 2A-B). Oyster density is calculated by dividing the area dredged (m2) by the total number of oysters after adjusting for dredge efficiency (25%) and any sub-sampling. Dredge efficiency has been taken from the work done in Lough Foyle during the Baseline Survey of Shellfish Resources conducted by Cefas in 2006. Oyster density is interpolated across the oyster beds using a six point Inverse Distance Weighting (IDW) method and this allows a biomass figure to be calculated based on the area (m2) of the oyster bed within each density category (see Appendix I for full calculations). This follows the approach of similar work in Irish oyster fishery stock assessments conducted by the Marine Institute. The average weight of the oysters on each bed is used to factor up to an overall biomass based on mean density within each bed. Any fresh dead oysters are recorded as a measure of recent mortality (these exhibit no fouling on the inner surface of the shell valves). Oyster spat (<30mm) presence or absence was recorded at each sample point, as was total number of spat per dredge sample. A
B
Figure 2 Methods used during survey: (A) Analysing and recording dredge contents. (B) Oysters are measured for length frequency analysis
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4. Oyster Density Oyster density was calculated for each of the sample stations (figure 3). The mean density for all beds is 0.21 oysters/m2. This figure is in keeping with results from previous years (figure 4). The maximum density recorded was 2.47 oysters/ m2 which was observed on the Flat Ground Bed. Only 4.8% of the sampled stations had an oyster density of over 1 oyster/m2, this is represented by the green areas in Figure 3. Oyster density recorded from each dredge tow has been represented as point data and then interpolated using a 6 point IDW methodology. The interpolation has been performed only in areas of the oyster beds that were surveyed and have point data present. A barrier feature has been placed within the interpolation between the oyster beds in or to the north of the navigation channel and all beds on the east of the navigation channel to help replicate the impacts of a natural barrier (a sandbank) between the beds in this area.
Figure 3 Interpolated oyster density Lough Foyle Autumn 2018
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Mean Adult Density Lough Foyle Oysters 2008-2018 0.6
Density (m2)
0.5 0.4 0.3 0.2 0.1 0 2008
2009
2010
2011
2012
2013
2014
2015
2016
2017
2018
Year
Figure 4 Mean Density Lough Foyle 2008-2018
5. Biomass Estimate The estimated total oyster population biomass is 724 tonnes (table 1). This is an increase from the estimated biomass of 509 tonnes in spring 2018. Total stock biomass over 80mm is currently estimated to be 269 tonnes and biomass over 70mm is estimated to be 458 tonnes. The total stock biomass is high relative to previous years (figure 5) and this is likely due to good growth in the younger cohort of oysters that settled in late summer 2014 and the carryover of stock from this settlement as a result of the reduction in total fishing effort per season since 2014. The majority of these oysters have now attained a length of between 80-100mm. Mean weight was higher than previous years, with a mean of 64.3g for all oysters sampled during the survey (n=1440). The previous biomass estimates have correlated well with the observed landings in the fishery (figure 6). Note that on this graph the survey estimate is that of the pre-season (autumn) survey and the landings figure is taken from logbook returns made by fishermen on a continuous basis throughout the season. On one occasion (2013/14) the stock assessment was not completed on all beds prior to the commencement of the fishery and the landings made prior to the survey being completed were separated for the comparison.
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Table 1 Oyster biomass per oyster bed in Lough Foyle Spring 2018
Bed name Barney's Bank Black Ghee Drumskellan Flat Ground Great Bank McGhee Middle North Middle South Moville Peak Perch Quigley's Pt Redcastle Sandy Ridge Shooting Range Southside North Southside South Total
Area (ha) 200 236 91 936 824 167 228 531 250 208 276 139 141 474 81 312 297 5391.22
Dredge Efficiency 25% Bed Total (t) Total (t) >80mm Total (t) >70mm 0.17 0.13 0.15 8.10 6.00 7.84 4.38 1.40 3.20 238.39 88.20 140.65 101.16 43.50 65.75 8.90 4.01 7.83 8.37 1.93 5.94 108.15 40.02 73.54 2.00 0.80 1.62 15.57 6.23 12.61 33.12 11.92 22.86 26.21 5.77 13.63 5.14 2.06 3.86 3.81 2.70 3.35 4.30 1.94 3.78 43.29 12.12 18.61 113.18 40.74 73.57 724.24 269.46 458.80
Mean Weight (g) 85 65 58 68 71 66 70 62 55 75 66 58 60 58 57 69 66 64.35
Pre-Season Biomass Estimates and Landings Biomass (tonnes)
800
698
700
Landings (tonnes) 725 684 615
Biomass (tonnes)
600 500
556 467 413 376
400
295
294
300
258 221
200
200
158 119
95
100
113
185
168
148
205
69
0 2006
2008
2009
2010
2011
2012
2013
2014
2015
Year
Figure 5 Historic Pre-Season Biomass Estimates and Landings Lough Foyle
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2016
2017
Observed and Predicted Landings 2009-2018 350
Landings (tonnes)
Survey estimate (tonnes)
Landings (t) pre survey 315
300
Landings (tonnes)
250 205
200
176 158
150
177 165
148
150 119
185 167 158 138
127
100
111
174
98 69
44
50 0 2009/10
2010/11
2011/12
2012/13
2013/14
2014/15
2015/16
2016/17
2017/18
Season
Figure 6 Observed and Estimated Landings from Lough Foyle
6. Spatfall Oyster spawning and larval survival is thought to be heavily dependent on good environmental conditions throughout the spring and summer and the threshold water temperature values being exceeded for a minimum period of time, usually 15-16⁰C for 2-4 weeks. If these conditions do not occur it is expected that spawning will be limited to a small percentage of the stock on each bed and the numbers of juveniles will be minimal. Spawning is also limited by oyster density and proximity of each individual oyster to another has an impact on fertilisation success. Removal of oysters during the fishing season reduces the oyster density. Poor spawning and settlement was observed in the 2015, 2016 and a limited spawning event was recorded in 2017. A widespread spat settlement event appears to have occurred in 2018 on the majority of the beds with 44% of the stations sampled having spat present (figure 7 and 8). The majority of the spat recorded is less than 20mm in size suggesting that it settled out late in the summer period. Spat density is almost twice as high as the previously recorded peak in 2008 showing just how significant this 2018 spatfall could be. The spat size is a concern and it is likely that survival of these juveniles will be lower than previously observed spatfalls which were in the 10-30mm size classes at this time of year. The historic trends reinforce the fact that successful spawning
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occurs once or twice every 5 years at best (figure 9). Settlement preference in 2018 appears to have been for bio-fouled razor clam shells however spat were observed on other substrate such as clam, cockle, mussel and oyster shells. Up to 15 individual spat were observed on 1 single razor clam shell with 2 articulated valves.
Length Frequency Lough Foyle Oysters 25
Autumn 2017
Spring 2018
Autumn 2018
% Frequency
20 15 10 5 0
Length Class Midpoint (mm) Figure 7 Length Frequency of oysters in Lough Foyle 2017-2018
Figure 8 Oyster Spat Density in Lough Foyle Spring 2018
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Mean Spat Density and Spat Presence 2008-2017 Mean Spat Density/m2
% stations spat +
Landings 250
Mean Spat Density (m2)
0.4 200
0.35 0.3
150
0.25 0.2
100
0.15 0.1
50
0.05 0
% Stations Positive/Landings (t)
0.45
0 2008
2009
2010
2011
2012
2013
2014
2015
2016
2017
2018
Year
Figure 9 Historic Spat Density and Presence Lough Foyle
7. Mortality Levels There was very limited evidence of recent mortality on the oyster beds (figure 10). Mortality was recorded in 14.6% of the samples taken and the majority of these appeared to be due to natural causes. The latest Bonamia test results show infection rates of between 10-20%. Total mortality throughout the stock has gradually begun to climb again since 2016 (figure 11). This may be a result of increased fishing intensity or may be density dependent. Stock biomass has been relatively high in the past 2 seasons and these increased densities may be causing a slight increase in natural mortality. There was some evidence of mortality linked to fishing gear with some chipped and cracked oyster shells being observed. This needs further investigation to determine which types of gear are having the biggest impact. Heavy dredges with hydroplanes to help depress the dredge into the substratum may be having more of an impact that the traditional oyster dredge which does not have a hydroplane. The weight of the dredges should be investigated to determine the impact this has on survival of the catch and by-catch.
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Figure 10 Oyster mortality observed in Lough Foyle Autumn 2018
Percentage of Stations with Oyster Mortality 30 25.8
25
% Stations +
20.3 18.5
20 15.3
14.6
15
11.9
11 8.8
10 5.5
4.7
5
3.3
0 Spring Spring 2011 2012
Spring Spring Spring 2013 2014 2015
Spring Autumn Spring Autumn Spring Autumn 2016 2016 2017 2017 2018 2018
Survey Figure 11 Oyster Mortality levels Lough Foyle 2011-2018
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8. Population Structure The length frequency of the oyster population shows that the proportion of larger size classes has increased since the 2007 stock survey. The 2007 results show there was poor representation of oysters 75mm and above in the population. In the years since the regulation of the fishery in 2008 there has been greater evidence of larger oysters within the population (see figure 12). The larger oysters are an important resource within the population. These size classes constitute the majority of the spawning stock biomass. Although oysters as small as 35mm are capable of spawning, the larger oysters are capable of producing large quantities of larvae for the fishery, and are therefore of great importance. If there is a higher percentage of large oysters present in high enough densities in the population, along with suitable environmental conditions, there is a greater chance of spawning success. The overall sampled population consists of 56% above 70mm. Figure 12 highlights the bias towards larger length classes as a result of poor recruitment in the last 3 seasons. The spawning event observed in 2018 has helped to begin to shift the balance with more evidence of juvenile oysters in the population. These oysters will help to sustain the population in the coming years and are likely to recruit into the fishery in 2021/22 at the earliest.
Length Frequency Lough Foyle Oysters 2007/2018 25
Autumn 2007
Autumn 2018
% Frequency
20 15 10 5 0
Length Class Midpoint (mm) Figure 12 Length Frequency of Lough Foyle Oysters 2007 & 2018
The cumulative length frequency (figure 13) shows the reduction in the proportion of oysters in the larger length classes as a result of fishing removal and the large increase in the proportion of the stock less than 40mm as a result of the new spat settlement.
14
Cumulative Length Frequency 2017-2018 120
Autumn 2017
Spring 2018
Autumn 2018
% Frequency
100 80 60 40 20 0
Mid-Point of length class (mm)
Figure 13 Cumulative Frequency across all oyster beds in Lough Foyle 2017-2018
The pie chart in figure 14 shows a better representation of smaller size classes than had been evident in the past 3 years. The spawning event in 2018 has increased the numbers of oysters in the <30mm sizes classes with the majority of the spat falling into the 1-20mm size class.
Length Classes Lough Foyle Autumn 2018 4% 9%
1-20 (mm)
13%
21-30 (mm)
2%
31-40 (mm)
5%
41-50 (mm) 4%
22%
4%
51-60 (mm) 61-70 (mm) 71-80 (mm)
13%
81-90 (mm) 91-100 (mm) 101+ (mm)
24%
Figure 14 Length classes on oyster beds Lough Foyle Autumn 2018
Figure 15 illustrates the percentage of each length class on the oyster beds in Lough Foyle. This chart highlights the differences between beds in terms of the health of their stock structure. The beds which consistently produce commercially important quantities of oysters (Middle
15
Bed, Perch, and Flat Ground) have good representation of length classes from 61mm-101mm+. This chart shows the strong evidence of the recent spatfall on the flat Ground, Southside and Great Bank beds with high percentages of the stocks on these beds <20mm
Length Classes on Oyster Beds Lough Foyle Autumn 2018 100% 90% 80% 70% 60% 50% 40% 30% 20% 10% 0% Flatground 1-20mm 61-70mm
Quigleys
Perch 21-30mm 71-80mm
Southside (north) 31-40mm 81-90mm
Figure 15 Size class on each bed in Lough Foyle Autumn 2018
16
Southside (south)
Middlebed
41-50mm 91-100mm
Great bank 51-60mm 101mm+
9. Oyster Bed Review 9.1 The Perch Table 2 Summary Information: The Perch
Bed Name
Perch
Area (h)
276
Total Biomass (t)
33.12
Biomass (t) >80mm
11.92
The Perch is one of the 5 main commercially fished oyster beds with the highest density in Lough Foyle and it covers an area of 276 hectares. The overall biomass estimated for this bed is 33.12 tonnes, 11.92 tonnes of that figure is currently over 80mm and is available to the fishery. 11.9 tonnes of oysters were landed from this bed during the 2017/18 fishing season. The length frequency for the Perch shows less evidence of the new spat settlement from summer 2018 with a small quantity of spat in the 12.5-30mm size classes. The poor recruitment of juveniles into the stock on this bed in the past few seasons is evident from the lack of oysters in the 45-65mm size classes.
25
Length Frequency Perch Autumn 2017
Spring 2018
Autumn 2018
Frequency (%)
20
15
10
5
0
Length Class Midpoint (mm)
Figure 16 Proportional Length Frequency: The Perch 2017-18
17
Cumulative Length Frequency Perch 2017-2018 Autumn 2017
120
Spring 2018
Autumn 2018
Frequency
100 80 60 40 20 0 10-20
21-30
31-40
41-50
51-60
61-70
71-80
81-90
91-100
101+
Length Class (mm)
Figure 17 Cumulative Frequency: The Perch 2017-2018
The cumulative frequency of the stock on the Perch Bed shows evidence of the increase in oysters in the 30-40mm size class from a limited spat settlement in 2018.
Length Classes Perch Autumn 2018 2.24
0.90
7.62
6.73 8.52
10.76 26.91 4.04 9.42 22.87
10-20 21-30 31-40 41-50 51-60 61-70 71-80 81-90 91-100 101+
Figure 18 Length classes: The Perch 2018
The length class structure is beginning to improve on the Perch Bed with a series of limited spat settlements in the past few years. The majority of the stock is still above 60mm.
18
9.2 The Flat Ground Table 3 Summary Information: The Flat Ground
Bed Name
Flat Ground
Area (h)
936
Total Biomass (t)
238.39
Biomass (t) >80mm
88.2
The Flat Ground covers an area of 936 hectares. Total stock biomass for this bed is estimated to be 238.39 tonnes. 88.2 tonnes is above 80mm in size and therefore is available to the fishery in 2018/19. 48 tonnes of oysters were landed from the Flat Ground during the 2017/18 season. The length frequency (figure 19) shows evidence of the spatfall (<20mm) that was recorded during the survey on most oyster beds. It is yet to be seen if these fragile oyster spat can survive over winter and contribute to the population in the coming years. In keeping with the overall length frequencies there is good representation of older age classes which would not have been recorded in the stock assessments during the period 2007-2010.
Length Frequency Flat Ground 30
Autumn 2017
Spring 2018
Autumn 2018
Frequency (%)
25 20 15 10 5 0
Length Class Midpoint (mm) Figure 19 Proportional Length Frequency: Flat Ground 2017-18
The cumulative frequency (Figure 20) for the stock on the Flat Ground shows the impact of the spat settlement in the smallest size classes and the growth in the larger size classes.
19
Cumulative Length Frequency Flat Ground Autumn 2017
Spring 2018
Autumn 2018
120
Frequency (%)
100 80 60 40 20 0 20
30
40
50
60
70
80
90
100
160
Length Class (mm)
Figure 20 Cumulative Frequency: Flat Ground 2017-2018
The pie chart (Figure 21) also shows evidence of the larger spat settlement on this bed with almost 30% of the stock in the 10-20mm size class.
Length Classes Flat Ground Autumn 2018 8.67
2.04
10-20 21-30 31-40 41-50 51-60
27.04
2.55
61-70 71-80
13.78
81-90
91-100 101+
21.94
Figure 21 Percentage of each length class: Flat Ground 2018
20
9.3 Quigley’s Point Table 4 Summary Information: Quigley's Point
Bed Name
Quigley’s Point
Area (h)
139
Total Biomass (t)
26.2
Biomass (t) >80mm
5.7
Quigley’s Point covers an area of 139 hectares. The total biomass has been estimated to be 26.2 tonnes on this bed with 5.7 tonnes above 80mm. 10.9 tonnes were landed from Quigley’s Point bed during the fishing season of 2017/18. The length frequency for Quigley’s Point (figure 22) shows limited evidence of any spatfall on the bed. The cohort that settled in 2017 has now attained a size of 35mm+ on average. There was some limited evidence of settlement in 2018 on this bed with the oysters
Length Frequency Quigley's Pt Autumn2017
Spring 2018
Autumn 2018
30 25
Frequency (%)
20 15 10 5 0
Length Class Midpoint (mm)
Figure 22 Proportional Length Frequency Quigley's Point 2017-18
The cumulative frequency (Figure 23) again shows evidence of a limited spat settlement in the 20-30mm size class.
21
Cumulative Length Frequency Quigleys Point Autumn 2017
Spring 2018
Autumn 2018
120
Frequency
100 80 60 40 20 0 10-20
21-30
31-40
41-50
51-60
61-70
71-80
81-90
91-100
101+
Length Class (mm)
Figure 23 Cumulative Frequency: Quigley's point 2017-2018
Figure 24 shows the proportion of each length class on the bed. It is clear that smaller size classes are not very well represented on this bed with almost 75% of the stock above 60mm.
Length Classes Quigley's Point Autumn 2018 2.37 0.59 0.59 7.10
10.06 7.10
13.02
7.10
22.49
29.59
Figure 24 Percentage of length classes: Quigley’s Point 2018
22
10-20 21-30 31-40 41-50 51-60 61-70 71-80 81-90 91-100 101+
9.4 Middle Bed South Table 5 Summary Information: Middle Bed South
Bed Name
Middle Bed South
Area (h)
531
Total Biomass (t)
108.1
Biomass (t) >80mm
40.0
The south section of the Middle Bed covers an area of 531 hectares. There is an estimated total biomass of 108.1 tonnes on this bed and 40 tonnes of that figure is over 80mm which should be available to the 2018/19 fishery. The length frequency for the Middle Bed South (figure 25) shows that the majority of oysters on this bed are now over 50mm, indicating poor juvenile recruitment in 2015 and 2016. There was some limited evidence of a spatfall in 2018 with oyster spat in the 12.5-32.5mm size classes observed during the survey.
Length Frequency Middle Bed (S) Autumn 2017
Spring 2018
Autumn 2018
30
Frequency (%)
25 20 15 10 5 0
Length Class Midpoint (mm)
Figure 25 Proportional Length Frequency Middle bed 2017-18
The cumulative frequency (Figure 26) shows an increase in the proportion of larger length classes since the spring 2017 survey. This movement reflects the good growing conditions observed in 2017. The pie chart (Figure 27) shows evidence of a skew towards larger age classes once again with over 40% of the stock above the market size of 80mm.
23
Cumulative Length Frequency Middle Bed (S) Autumn 2017
Spring 2018
Autumn 2018
120
Frequency
100 80 60 40 20 0 10-20
21-30
31-40
41-50
51-60
61-70
71-80
81-90
91-100
101+
Length Class (mm)
Figure 26 Cumulative Frequency Middle Bed 2016-2018
Length Classes Middle Bed (S) Autumn 2018 11.02
2.04 5.71 0.82 3.67 2.45 4.49
18.37 20.41
31.02
Figure 27 Percentage of length classes Middle Bed 2018
24
10-20 21-30 31-40 41-50 51-60 61-70 71-80 81-90 91-100 101+
9.5 Southside North Table 6 Summary Information: Southside North
Bed Name
Southside North
Area (h)
312
Total Biomass (t)
43.2
Biomass (t) >80mm
12.1
The northern portion of the Southside bed covers an area of 312 hectares. The overall biomass on this bed is estimated to be 43.2 tonnes, 12.1 tonnes of this figure represents oysters over 80mm in length. The length frequency (figure 28) shows strong evidence of a late settlement in 2018 with a very large proportion of the stock less than 20mm. This widespread settlement on the bed should help sustain the stock in the future provided that survival is good over the next few seasons.
Length Frequency Southside (N) Autumn 2017
Spring 2018
Autumn 2018
25
Frequency (%)
20 15 10 5 0
Length class Midpoint (mm) Figure 28 Proportional Length Frequency Southside (N) 2017-18
25
Cumulative Length Frequency 2017-2018 Autumn 2017
Spring 2018
Autumn 2018
120
Frequency (%)
100 80 60 40 20 0 10-20
21-30
31-40
41-50
51-60
61-70
71-80
81-90
91-100
101+
Length Class (mm)
Figure 29 Cumulative Frequency Southside (N) 2016-2018 The cumulative length frequency is dominated by the large addition of newly settled spat in the 1020mm size class.
Length Classes for Southside (N) 1.57
8.66
10-20 21-30
33.86
31-40 41-50
18.50
51-60 61-70 71-80 81-90 1.97 14.57 1.97
9.84
5.91 3.15
91-100 101+
Figure 30 Percentage of length classes: Southside (N) 2018 33% of the stock on this bed is in the 10-20mm size class showing just how strong the spat settlement has been in 2018.
26
9.6 Southside South Bed Name
Southside South
Area (h)
297
Total Biomass (t)
113.1
Biomass (t) >80mm
40.7
The south section of the Southside bed covers 319.0 hectares in total. The overall biomass of oysters calculated during the autumn 2018 survey is 113.1 tonnes and 40.7 tonnes of this figure is currently above 80mm therefore is available to the fishery for the 2018/19 season. Again, like the length frequency for the northern section of the Southside there was widespread evidence of spat (<20mm) recorded during this survey. The stock on this bed is skewed towards the larger or smaller size classes with the majority above 70mm or less than 20mm in length.
Length Frequency Southside (S) 2017-2018 25
Autumn 2017
Spring 2018
Autumn 2018
Frequency (%)
20
15
10
5
0
Length Class Midpoint (mm)
Figure 31 Length Frequency Southside (S) 2017-18
27
Cumulative Length Frequency 2017-2018 Autumn 2017
120
Spring 2018
Autumn 2018
Frequency
100 80 60 40 20 0 10-20
21-30
31-40
41-50
51-60
61-70
71-80
81-90
91-100
101+
Length Class (mm)
Figure 32 Cumulative Length Frequency Southside (S) 2016-2018
The cumulative length frequency shows a small increase in the proportion of the stock in the smaller size classes thanks to the spatfall on this bed.
Length Classes Southside (S) Autumn 2018 0.78
12.40
6.98
0.00 4.65 0.00 5.43 28.68
12.40
28.68
Figure 33 Percentage of length classes: Southside (S) 2018
28
10-20 21-30 31-40 41-50 51-60 61-70 71-80 81-90 91-100 101+
9.7 Great Bank Bed Name
Great Bank
Area (h)
824
Total Biomass (t)
101.1
Biomass (t) >80mm
43.5
The Great Bank Bed has an area of 824 hectares. The overall biomass of oysters calculated during the survey is 101.1 tonnes and 43.5 tonnes of this figure is currently above 80mm and therefore should be available to the fishery for the 2018/19 season. There was a widespread spatfall on this bed and the length frequency data shows that once again these were most less than 20mm in size. The stock on this bed is skewed towards the larger and smaller size classes with the majority above 75mm or less than 20mm in length.
Length Frequency Great Bank 30
Autumn 2017
Spring 2018
Autumn 2018
Frequency (%)
25 20 15 10 5 0
Length Class Midpoint (mm)
Figure 34 Length Frequency Great Bank 2017-18
29
Cumulative Length Frequency Great Bank Autumn 2017
Spring 2018
Autumn 2018
120
Frequency
100 80 60 40 20 0 10-20
21-30
31-40
41-50
51-60
61-70
71-80
81-90
91-100
101+
Length Class (mm)
Figure 35 Cumulative Length Frequency Great Bank 2016-2018
Cumulative length frequency for the great bank shows evidence of the spatfall with a large increase in the 10-20mm size class.
Length Classes Great Bank Autumn 2018 7.94
10-20 21-30
11.64 0.53
31-40 41-50
1.06
51-60
2.65
61-70
6.88
24.34
71-80 81-90 91-100
21.69
Figure 36 Percentage of length classes: Great Bank 2018
30
101+
10. Conclusions The total biomass estimated for the stock is an increase on the autumn 2017 figure. There has been evidence of a widespread spatfall in 2018 and this is positive for the fishery with the likelihood that this spat will add to the broodstock biomass and recruit into the fishery from 2021 onwards. The biomass above the minimum landing size of 80mm is estimated to be 269 tonnes. There has been a large carry over (>100t) of fishable stock from the 2017/18 season to help to sustain an effective spawning stock biomass. It is likely that this stock made a substantial contribution to the spawning activity and consequent spatfall observed during the summer. This validates the management approach adopted in the past 4 years which has seen partial removal of the total market sized stock.
11.Recommendations Consider partial removal of the harvestable stock biomass to help alleviate pressure on the stock from fishing activity and help sustain an effective spawning broodstock and a viable fishable stock for 2019/20.
31
Appendix I. Raw data from interpolated density data and biomass estimates Bed name
Class Range
N
Polygon Area (m2)
Mean Weight (g)
No. of Oysters
Total Biomass (tonnes)
Barneys
0 - 0.01000
13
1982087
85
1982
0.17
Barneys
0.01001 - 0.05000
1
19993
85
200
0.02
Barneys
0.05001 - 0.10000
0
0
85
0
0.00
Barneys
0.10001 - 0.50000
0
0
85
0
0.00
Barneys
0.50001 - 1.00000
0
0
85
0
0.00
Barneys
1.00001 - 2.50000
0
0
85
0
0.00
Barneys
2.50001 - 5.00000
0
0
85
0
0.00
Drumskellan
0 - 0.01000
7
164951
58
165
0.01
Drumskellan
0.01001 - 0.05000
2
346304
58
11202
0.65
Drumskellan
0.05001 - 0.10000
1
174649
58
8732
0.51
Drumskellan
0.10001 - 0.50000
4
218874
58
55370
3.21
Drumskellan
0.50001 - 1.00000
0
0
58
0
0.00
Drumskellan
1.00001 - 2.50000
0
0
58
0
0.00
Drumskellan
2.50001 - 5.00000
0
0
58
0
0.00
Flat Ground
0 - 0.01000
15
1044749
68
1045
0.07
Flat Ground
0.01001 - 0.05000
18
1320744
68
37212
2.53
Flat Ground
0.05001 - 0.10000
14
1154935
68
75076
5.11
Flat Ground
0.10001 - 0.50000
31
3756927
68
994525
67.63
Flat Ground
0.50001 - 1.00000
9
1456676
68
1043828
70.98
Flat Ground
1.00001 - 2.50000
11
959525
68
1354072
92.08
Flat Ground
2.50001 - 5.00000
0
0
68
0
0
Black Ghee
0 - 0.01000
0
0
65
0
0
Black Ghee
0.01001 - 0.05000
0
0
65
0
0
Black Ghee
0.05001 - 0.10000
0
0
65
0
0
Black Ghee
0.10001 - 0.50000
0
0
65
0
0
Black Ghee
0.50001 - 1.00000
0
0
65
0
0
Black Ghee
1.00001 - 2.50000
0
0
65
0
0
Black Ghee
2.50001 - 5.00000
0
0
65
0
0
Great Bank
0 - 0.01000
6
741929
71
742
0.05
Great Bank
0.01001 - 0.05000
4
1270254
71
29319
2.08
Great Bank
0.05001 - 0.10000
4
1364072
71
98674
7.01
Great Bank
0.10001 - 0.50000
18
4865734
71
1296031
92.02
Great Bank
0.50001 - 1.00000
0
0
71
0
0
Great Bank
1.00001 - 2.50000
0
0
71
0
0
Great Bank
2.50001 - 5.00000
0
0
71
0
0
32
Middle (north)
0 - 0.01000
11
613613
70
614
0.04
Middle (north)
0.01001 - 0.05000
5
795037
70
19171
1.34
Middle (north)
0.05001 - 0.10000
4
467495
70
34837
2.44
Middle (north)
0.10001 - 0.50000
5
399715
70
64994
4.55
Middle (north)
0.50001 - 1.00000
0
0
70
0
0
Middle (north)
1.00001 - 2.50000
0
0
70
0
0
Middle (north)
2.50001 - 5.00000
0
0
70
0
0
Middle (south)
0 - 0.01000
20
860342
62
860
0.05
Middle (south)
0.01001 - 0.05000
8
850983
62
21573
1.34
Middle (south)
0.05001 - 0.10000
2
496582
62
35017
2.17
Middle (south)
0.10001 - 0.50000
15
1722826
62
558504
34.63
Middle (south)
0.50001 - 1.00000
13
1220187
62
926236
57.43
Middle (south)
1.00001 - 2.50000
4
145037
62
202168
12.53
Middle (south)
2.50001 - 5.00000
0
0
62
0
0.00
Moville
0 - 0.01000
10
1594642
55
1595
0.09
Moville
0.01001 - 0.05000
4
587932
55
10892
0.60
Moville
0.05001 - 0.10000
2
294427
55
21956
1.21
Moville
0.10001 - 0.50000
1
13995
55
1845
0.10
Moville
0.50001 - 1.00000
0
0
55
0
0.00
Moville
1.00001 - 2.50000
0
0
55
0
0.00
Moville
2.50001 - 5.00000
0
0
55
0
0.00
Peak
0 - 0.01000
2
156189
75
156
0.01
Peak
0.01001 - 0.05000
2
431891
75
17115
1.28
Peak
0.05001 - 0.10000
0
258402
75
12923
0.97
Peak
0.10001 - 0.50000
4
612368
75
177449
13.31
Peak
0.50001 - 1.00000
0
0
75
0
0.00
Peak
1.00001 - 2.50000
0
0
75
0
0.00
Peak
2.50001 - 5.00000
0
0
75
0
0.00
Perch
0 - 0.01000
6
119032
66
119
0.01
Perch
0.01001 - 0.05000
4
663331
66
22558
1.49
Perch
0.05001 - 0.10000
3
356811
66
23688
1.56
Perch
0.10001 - 0.50000
14
1596533
66
398767
26.32
Perch
0.50001 - 1.00000
4
92416
66
56757
3.75
Perch
1.00001 - 2.50000
0
0
66
0
0.00
Perch
2.50001 - 5.00000
0
0
66
0
0.00
Quigley'sPt
0 - 0.01000
9
20751
58
21
0.00
Quigley'sPt
0.01001 - 0.05000
3
71364
58
1795
0.10
Quigley'sPt
0.05001 - 0.10000
1
208786
58
15432
0.90
Quigley'sPt
0.10001 - 0.50000
12
950463
58
321632
18.65
Quigley'sPt
0.50001 - 1.00000
4
139586
58
113003
6.55
Quigley'sPt
1.00001 - 2.50000
0
0
58
0
0.00
Quigley'sPt
2.50001 - 5.00000
0
0
58
0
0.00
Redcastle
0 - 0.01000
9
765753
55
766
0.04
Redcastle
0.01001 - 0.05000
2
281712
55
10098
0.56
33
Redcastle
0.05001 - 0.10000
2
298806
55
22523
1.24
Redcastle
0.10001 - 0.50000
2
276460
55
60151
3.31
Redcastle
0.50001 - 1.00000
0
0
55
0
0
Redcastle
1.00001 - 2.50000
0
0
55
0
0
Redcastle
2.50001 - 5.00000
0
0
55
0
0
Sandy Ridge
0 - 0.01000
25
3452392
55
3452
0.19
Sandy Ridge
0.01001 - 0.05000
7
735879
55
12955
0.71
Sandy Ridge
0.05001 - 0.10000
2
460532
55
41624
2.29
Sandy Ridge
0.10001 - 0.50000
3
88332
55
11209
0.62
Sandy Ridge
0.50001 - 1.00000
0
0
55
0
0.00
Sandy Ridge
1.00001 - 2.50000
0
0
55
0
0.00
Sandy Ridge
2.50001 - 5.00000
0
0
55
0
0.00
Southside North
0 - 0.01000
6
345748
69
346
0.02
Southside North
0.01001 - 0.05000
13
761600
69
18586
1.28
Southside North
0.05001 - 0.10000
3
549240
69
43172
2.98
Southside North
0.10001 - 0.50000
13
1147205
69
348666
24.06
Southside North
0.50001 - 1.00000
6
284712
69
183099
12.63
Southside North
1.00001 - 2.50000
1
29414
69
33490
2.31
Southside North
2.50001 - 5.00000
0
0
69
0
0.00
Southside South
0 - 0.01000
1
16668
66
17
0.00
Southside South
0.01001 - 0.05000
4
134700
66
3435
0.23
Southside South
0.05001 - 0.10000
1
312874
66
27691
1.83
Southside South
0.10001 - 0.50000
3
1739933
66
586587
38.71
Southside South
0.50001 - 1.00000
3
1002769
66
799491
52.77
Southside South
1.00001 - 2.50000
6
203164
66
297595
19.64
Southside South
2.50001 - 5.00000
0
0
66
0
0
34
Appendix II Oyster Landings Data 2017/18 Review of the 2017-2018 Native Oyster Fishing Season
Introduction The 2017-2018 native oyster fishing season started on the 3rd of October 2017. The start of the fishery was delayed from the statutory commencement date of the 19th of September to help encourage survival of oyster spat. The Foyle oyster population would generally have ceased spawning before the start of the fishing season, however on this occasion spawning is still occurring up to the end of September. The period immediately post spawning is a sensitive time when oysters are reconditioning and may still be susceptible to mortality if disturbed, therefore, in order to protect the brood stock/juvenile oysters and thus safeguard the future fishery opening was delayed until the 3rd October 2017. The Loughs Agency also restricted fishing activity to the hours between 6am and 6pm. Fishing vessels are licensed by the Agency following payment of a license fee and provided the vessels have appropriate safety certificates and sea fishing licenses. Fishing vessels must adhere to the restrictions as laid down in The Foyle Area (Control of Oyster Fishing) Regulations 2008. Previous stock surveys have identified poor recruitment into the fishery in 2015, 2016 and 2017 and show a population skewed towards older age classes. Landings data for the period of 20122017, submitted to the agency by licence holders, demonstrates a similar trend from year to year with 80% of the total landings being removed from the fishery within the first 8 weeks. Fishing related stress levels in the oyster population is thought to be linked to fishing effort. This has been found to be highest during the first 8 weeks of the season. Therefore, a reduction in fishing effort may go some way to reducing the potential impact of Bonamiosis in the native oyster population. To address the issue of stress, and spawning stock protection, fishing effort was reduced to 2 days per week for a 3 week period from 3rd October to the 18th October at which time it reverted to a 3 day week for 1 week. As a review of the landings to date resulted in a further reduction of effort back to a 2 day week from the 31st October to the 22nd of November. The fishery was suspended for the period from the 22nd November 2017 to 28th January 2018 pending a review of the fishery landings and a post fishery stock assessment. A
35
further suspension took place from 1st February – 31st March following the outcome of this post fishery review.
Fishing Activity Figure 1 illustrates the number of vessels fishing per week during the last 3 seasons. The trend are similar with greatest effort at the beginning of the season. There was a greater number of vessels involved in the fishery during 2017/18 than ever before. The increase in landings from the fishery over the past few seasons appears to have attracted new entrants to the fishery and those vessels operating within the fishery are sustaining a more consistent effort during the season (figure 2).
Total number of Vessels 2015-2018 60
2017/18
2016/17
2015/16
Number of Boats
50 40 30 20 10 0 1
2
3
4
5
6
7
8
9
10
11
12
13
Week Number Figure 37 Number of vessels fishing during fishing season 2015-2018
Total Hours Per Week 2015-2018 1600
Hours 2017/18
Hours 2016/17
Hours 2015/16
1400
Hours
1200 1000 800 600 400 200 0 Week 3 Week 4 Week 5 Week 6 Week 7 Week 8 Week 9 Week 10 Week 11 Week 12 Week 13
Week Number Figure 2 Number of hours fished per week 2015-2018
36
Landings by Oyster Bed The log books completed and submitted to the Agency have allowed an assessment of the quantities of oysters removed from each oyster bed to be made. Table 1 gives a breakdown of the quantities and the percentage of the total landings represented by each bed. There are some records without positional information and these have been included in this assessment as ‘other’. Table 7 Landings per bed for the 2017/2018 season
Bed Redcastle Barneys Drum Shooting range Black Ghee Longfield Peak roof Isles Sandy Ridge Moville Mcghee Other Quigley's Point Perch Great Bank Middle Bed Flatground Southside Total
Total Fished (kg)
Total Fished (t)
% of total
0 0 450 1650 1742 1840 2238 2836 3052 5700 7285 8850 10970 11964 14220 25719 48619 58234 205369
0 0 0.45 1.65 1.742 1.84 2.238 2.836 3.052 5.7 7.285 8.85 10.97 11.964 14.22 25.719 48.619 58.234 205.369
0 0 0.22 0.80 0.85 0.90 1.09 1.38 1.49 2.78 3.55 4.31 5.34 5.83 6.92 12.52 23.67 28.36 100
Table 1 and figure 3 shows that 71% of the total landings for the season was removed from 4 main beds. The highest percentage of landings was from The Southside (28.36%) showing an improvement in the contribution of this bed to the landings following a reduction in biomass after the mortality event in 2010/11. This was followed by the Flat Ground (23.67%), Middle Bed (12.52%) and the Great Bank (6.92%). 11.17% of the overall landings were removed from Quigley’s Point and the Perch Bed. The remaining 17% of landings was removed from the remaining oyster beds.
37
Catch Distribution for each bed for 2017/18 1.5 2.8
1.1 0.9 0.8 0.8 0.2 1.4 0.0 Southside
3.5
Flatground 28.4
4.3
Middle Bed Great Bank Perch
5.3
Quigley's Other 5.8 McGhee Moville Sandy Ridge
6.9
Roof isles Peak 23.7
12.5
Longfield Black ghee Shooting Range Drumskellan Redcastle
Figure 38 Landings per oyster bed 2017/18 season
Trends are similar to previous years with the highest landings coming from the six beds with the highest density, Middle Bed, Flat Ground, Southside and the Great Bank followed by Quigley’s Point and the Perch. Highest landings were made from the Southside Bed at 58 tonnes, 48 tonnes landed from the Flat Ground, 25 tonnes landed from the Middle Bed and 14 tonnes from the Great Bank (Figure 4).
38
Catch (t) per bed for season 2017/18 70.000 60.000
Catch (t)
50.000 40.000 30.000 20.000 10.000 0.000
Beds
Figure 4 Total oysters fished (t) across all Lough Foyle Oyster beds 2016/17 Season
The trend in cumulative catch curves since 2012 (figure 5) shows that almost 80% of the landings were historically removed before week 15 (Christmas). This fact lead to a reduction in the season length and fishing has taken place for between 8-11 weeks from the beginning of October to mid-December since the 2015/16 season.
Cumulative catch 2012-2018
Cumulative Catch (kg)
250000
2017/18
2016/17
5
10
2015/16
2014/15
15
20
2013/14
2012/13
200000 150000 100000 50000 0 0
week
Figure 5 Cumulative catch (kg) per week in Lough Foyle 2012-2018
39
25
30
35
CPUE (Catch per Unit Effort) The Catch per Unit Effort (CPUE) has been derived from log sheet records kept by the oyster fishermen per boat per week and also using the hours fished and the quantities landed. The CPUE is generally higher at the beginning of the season due to the availability of the marketable size oysters. Figure 6 illustrates the trends for CPUE from 2012/13- 2017/18 season. As seen by the chart, the trend is the same each year with the CPUE highest at the beginning of the season and then declining as the season progresses. There was a notable increase in CPUE during the last 2 seasons compared to previous seasons.
It is thought that this is linked to higher water
temperatures during the fishing season and a strong cohort of market sized stocks resulting from the heavy spatfall in 2014 and good survival and retention of this age class in the fishery as a result of the restriction in fishing effort over the past 4 seasons. The apparent increase in the CPUE was noted during the pre-season stock assessment conducted in autumn 2017 and it is interesting to note that it was reflected in the catches when the season began.
CPUE Lough Foyle (kg per hour) 2012-2018 2017/18
45
2016/17
2015/16
2014/15
2013/14
2012/13
40 35
KG /hours
30 25 20 15 10 5 0 1
2
3
4
5
6
7
8
9 10 11 12 13 14 15 16 17 18 19 20 21 22 23 24 25 26 27 28 29
Week Figure 6 Catch Per Unit Effort (kg/hour) from 2012-2018
40
CPUE Lough Foyle Oysters 2018 (kg per hour) 45 40 35
Kg /hour
30 25 20 15 10 5 0 1
2
3
4
5
6
Week Number Figure 39 Oyster Catch Per Unit Effort (kg/hour) 2017/18 season
41
7
8
9
10