Water Framework Directive Fish Stock Survey of Doo Lough, October 2012

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Water Framework Directive Fish Stock Survey of Doo Lough, October 2012 Fiona L. Kelly, Lynda Connor, Emma Morrissey, Ciara Wogerbauer, Ronan Matson, Rory Feeney and Kieran Rocks Inland Fisheries Ireland, Swords Business Campus, Swords, Co. Dublin CITATION: Kelly, F.L., Connor, L., Morrissey, E., Wogerbauer, C., Matson, R., Feeney, R. and Rocks, K. (2013) Water Framework Directive Fish Stock Survey of Doo Lough, October 2012. Inland Fisheries Ireland, Swords Business Campus, Swords, Co. Dublin, Ireland. Cover photo: Netting survey on Dromore Lough Inland Fisheries Ireland Inland Fisheries Ireland 2013 1

ACKNOWLEDGEMENTS The authors wish to gratefully acknowledge the help and co-operation of the regional director Dr. John Connelly and the staff from IFI, Galway. The authors would also like to gratefully acknowledge the help and cooperation of all their colleagues in IFI, Swords. Mr. Michael Wade from Delphi Fishery, County Mayo provided access to Doo Lough and his help is gratefully acknowledged. The authors would also like to acknowledge the funding provided for the project from the Department of Communications, Energy and Natural Resources for 2012. The report includes Ordnance Survey Ireland data reproduced under OSi Copyright Permit No. MP 007508. Unauthorised reproduction infringes Ordnance Survey Ireland and Government of Ireland copyright. Ordnance Survey Ireland, 2012. 2

1.1 Introduction Doo Lough (Plate 1.1, Fig. 1.1) is located approximately 6km north-west of Leenaun, Co. Mayo. It is one of four lakes situated in the Delphi fishery - Fin, Doo, Glencullin and Cunne. Glencullin Lough, located directly above Doo Lough, flows into Doo Lough via a short stream. Doo Lough in turn drains into Fin Lough which is connected to Killary Harbour via the Bundorragha River. The lake is approximately 3.5km in length and up to 750m wide. It has a surface area of 155ha, a maximum depth of 46m and an altitude of 30m a.s.l. The lake falls into typology class 4 (as designated by the EPA for the Water Framework Directive), i.e. deep (mean depth >4m), greater than 50ha and low alkalinity (<20mg/l CaCO 3 ). Doo Lough forms part of the Mweelrea/Sheefry/Erriff candidate Special Area of Conservation complex (NPWS, 2005). The site has been selected for containing active blanket bog, lagoons, machair, decalcified dunes and petrifying springs - all priority habitats on Annex I of the E.U. Habitats Directive. The site is also selected for containing the following species listed on Annex II of the same Directive - freshwater pearl mussel, Atlantic salmon, otter, the snails Vertigo angustior and V. geyeri, the plant slender naiad and the liverwort petalwort (NPWS, 2005). Doo Lough is an oligotrophic lake (NPWS, 2005) and was once famous for its sea trout fishery, which has been in decline since the late 1980s due to problems with sea lice. Doo Lough holds brown trout, sea trout, Arctic char and gets both a spring and grilse salmon run (O Reilly, 2007). The lake was also previously surveyed in October 2009 as part of the Water Framework Directive surveillance monitoring programme (Kelly et al., 2010). During this survey, brown trout were found to be the dominant species present in the lake. Arctic char, sea trout, three-spined stickleback, salmon and eels were also captured during the survey. 3

Plate 1.1. Doo Lough 4

Fig. 1.1. Location map of Doo Lough showing locations and depths of each net (outflow is indicated on map) 5

1.2 Methods Doo Lough was surveyed over two nights between the 2 nd and the 4 th of October 2012. A total of two sets of Dutch fyke nets, 21 benthic monofilament multi-mesh (12 panel, 5-55mm mesh size) CEN standard survey gill nets (4 @ 0-2.9m, 4 @ 3-5.9m, 4 @ 6-11.9m, 4 @ 12-19.9m, 3 @ 20-34.9m and 2 @ 35-49.9m) and three surface monofilament multi-mesh (12 panel, 5-55mm mesh size) CEN standard survey gill nets were deployed randomly in the lake (three sites). Nets were deployed in the same locations as were randomly selected in the previous survey in 2009. A handheld GPS was used to mark the precise location of each net. The angle of each gill net in relation to the shoreline was randomised. All fish were measured and weighed on site and scales were removed from all trout, Arctic char and salmon. Live fish were returned to the water whenever possible (i.e. when the likelihood of their survival was considered to be good). Samples of fish were returned to the laboratory for further analysis. 1.3 Results 1.3.1 Species Richness A total of five fish species (sea trout are included as a separate variety of trout) were recorded in Doo Lough in October 2012, with 146 fish being captured. The number of each species captured by each gear type is shown in Table 1.1. Brown trout was the most abundant fish species recorded, followed by Arctic char, sea trout, salmon, eels and three-spined stickleback. A similar species composition was recorded during the previous survey in 2009. For information regarding the previous 2009 survey refer to Kelly et al., 2010. Table 1.1. Number of each fish species captured by each gear type during the survey on Doo Lough, October 2012 Scientific name Common name Number of fish captured Benthic Surface mono mono multimesh gill multimesh nets gill nets Salmo trutta Brown trout 99 3 8 110 Sea trout 9 0 1 10 Salmo salar Salmon 3 0 0 3 Salvelinus alpinus Arctic char 16 0 0 16 Gasterosteus aculeatus Three-spined stickleback 1 0 0 1 Anguilla anguilla European eel 1 5 0 6 Fyke nets Total 6

1.3.2 Fish abundance Fish abundance (mean CPUE) and biomass (mean BPUE) were calculated as the mean number/weight of fish caught per metre of net. For all fish species except eel, CPUE/BPUE is based on all nets, whereas eel CPUE/BPUE is based on fyke nets only. Mean CPUE and BPUE for all fish species captured in 2009 and 2012 are summarised in Table 1.2. Mean CPUE and BPUE for all fish species is illustrated in Figures 1.2 and 1.3. Although the mean brown trout CPUE appeared higher in 2012 than in 2009, this difference was not statistically significant (Fig. 1.2). The mean brown trout BPUE was significantly higher in 2012 than in 2009, (Mann-Whitney, P<0.05) (Fig. 1.3). The differences in the mean brown trout CPUE and BPUE between Doo Lough and two similar lakes was assessed, with overall significant differences being found (Kruskal-Wallis P<0.05) (Fig. 1.4 and Fig. 1.5). Independent-Samples Mann-Whitney U tests between each lake showed that Doo Lough had a significantly lower mean brown trout CPUE and BPUE than Lough Anure (P<0.05) and Lough Dan (P<0.05). Although the mean Arctic char CPUE and BPUE appeared slightly different in 2012 than in 2009, these differences were not statistically significant (Fig. 1.2 and Fig.1.3). The differences in the mean Arctic char CPUE and BPUE between Doo Lough and three similar lakes was assessed, with overall significant differences being found (Kruskal-Wallis P<0.05) (Fig. 1.6 and Fig. 1.7). Independent-Samples Mann-Whitney U tests between each lake showed that Doo Lough had a significantly higher mean Arctic char CPUE and BPUE than Kindrum Lough (P<0.05) and Lough Mask (z = 3.07, P<0.05 and z = 3.03, P<0.05). 7

CPUE (No. fish/m net) Table 1.2. Mean (S.E.) CPUE and BPUE for all fish species captured on Doo Lough, 2009 and 2012 Scientific name Common name 2009 2012 Mean CPUE Salmo trutta Brown trout 0.057 (0.018) 0.136 (0.034) Sea trout 0.011 (0.004) 0.012 (0.004) Salmo salar Salmon 0.001 (0.001) 0.003 (0.002) Salvelinus alpinus Arctic char 0.023 (0.005) 0.021 (0.005) Gasterosteus aculeatus Three-spined stickleback 0.006 (0.003) 0.001 (0.001) Anguilla anguilla European eel 0.016 (0.016) 0.041 (0.025) Mean BPUE Salmo trutta Brown trout 3.437 (1.242) 7.072 (1.987) Sea trout 4.824 (1.839) 5.404 (2.292) Salmo salar Salmon 0.007 (0.007) 4.671 (3.229) Salvelinus alpinus Arctic char 1.135 (0.769) 1.342 (0.395) Gasterosteus aculeatus Three-spined stickleback 0.025 (0.012) 0.001 (0.001) Anguilla anguilla European eel 3.966 (3.966) 6.158 (4.675) * On the rare occasion where biomass data was unavailable for an individual fish, this was determined from a length/weight regression for that species. 0.18 2009 2012 0.16 0.14 0.12 0.1 0.08 0.06 0.04 0.02 0 Brown trout Sea trout Salmon Arctic char Three-spined stickleback Eel Fig. 1.2. Mean (±S.E.) CPUE for all fish species captured in Doo Lough (Eel CPUE based on fyke nets only), 2009 and 2012 8

Mean CPUE (Mean no. fish / m of net) BPUE (Mean biomass (g) of fish/m net) 12 2009 2012 10 8 6 4 2 0 Brown trout Sea trout Salmon Arctic char Three-spined stickleback Eel Fig. 1.3. Mean (±S.E.) BPUE for all fish species captured in Doo Lough (Eel BPUE based on fyke nets only), 2009 and 2012 0.50 0.45 0.40 0.35 0.30 0.25 0.20 0.15 0.10 0.05 0.00 Dan Anure Doo Lake Fig. 1.4. Mean (±S.E.) brown trout CPUE in three lakes surveyed during 2012 9

Mean CPUE (Mean no. fish / m of net) Mean BPUE (Mean biomass (g) of fish / m of net) 60.0 50.0 40.0 30.0 20.0 10.0 0.0 Dan Anure Doo Lake Fig. 1.5. Mean (±S.E.) brown trout BPUE in three lakes surveyed during 2012 0.04 0.03 0.03 0.02 0.02 0.01 0.01 0.00 Doo Sessiagh Kindrum Mask Lake Fig. 1.6. Mean (±S.E.) Arctic char CPUE in four lakes surveyed during 2012 10

Mean BPUE (Mean biomass (g) of fish / m of net) 5.0 4.5 4.0 3.5 3.0 2.5 2.0 1.5 1.0 0.5 0.0 Sessiagh Doo Kindrum Mask Lake Fig. 1.7. Mean (±S.E.) Arctic char BPUE in four lakes surveyed during 2012 1.3.3 Length frequency distributions Brown trout captured during the 2012 survey ranged in length from 7.2cm to 45.4cm (mean = 15.9cm) (Fig. 1.6). Brown trout captured during the 2009 survey ranged in length from 7.7cm to 26.5m (Fig. 1.6). Arctic char captured during the 2012 survey ranged in length from 10.0cm to 20.7cm (mean = 17.1cm) (Fig. 1.7). Arctic char captured during the 2009 survey ranged in length from 12.0cm to 20.5m (Fig. 1.7). Eels captured during the 2012 survey ranged in length from 37.5cm to 54.7cm, salmon ranged in length from 9.0cm to 56.5cm, sea trout ranged in length from 25.9cm to 42.6cm and one three-spined stickleback was recorded at 5.0cm. 11

Number of fish Number of fish 20 2009 2012 15 10 5 0 0 2 4 6 8 10 12 14 16 18 20 22 24 26 28 30 32 34 36 38 40 42 44 46 48 50 Length (cm) Fig. 1.6. Length frequency of brown trout captured on Doo Lough, 2009 and 2012 5 2009 2012 4 3 2 1 0 0 2 4 6 8 10 12 14 16 18 20 22 24 26 28 30 Length (cm) Fig. 1.7. Length frequency of Arctic char captured on Doo Lough, 2009 and 2012 12

1.3.4 Fish age and growth Five age classes of brown trout were present, ranging from 0+ to 4+, with a mean L1 of 5.9cm (Table 1.3). In the 2009 survey, brown trout ranged from 0+ to 3+ with a mean L1 of 6.8cm. Mean brown trout L4 in 2011 was 24.7cm indicating a very slow rate of growth for brown trout in this lake according to the classification scheme of Kennedy and Fitzmaurice (1971). Four age classes of Arctic char were present, ranging from 1+ to 4+. In the 2009 survey, Arctic char ranged from 2+ to 4+. Table 1.3. Mean (±SE) brown trout length (cm) at age for Doo Lough, October 2012 L 1 L 2 L 3 L 4 Mean 5.9 (0.2) 11.9 (0.4) 19.5 (0.2) 24.7 (0.9) N 53 39 9 2 Range 3.7-10.2 7.6-18.7 13.2-33.7 23.8-25.6 1.4 Summary Brown trout was the dominant species in terms of abundance (CPUE) and biomass (BPUE) captured in the survey gill nets. Although the mean brown trout CPUE appeared higher in 2012 than in 2009, these differences were not statistically significant. However, the mean brown trout BPUE was significantly higher in 2012 than in the 2009 survey. The mean brown trout CPUE and BPUE in Doo Lough was significantly lower than Lough Anure and Lough Dan, other similar lakes surveyed. Brown trout ranged in age from 0+ to 4+, indicating reproductive success in the previous five years. Length at age analyses revealed that brown trout in the lake exhibit a very slow rate of growth according to the classification scheme of Kennedy and Fitzmaurice (1971). Although the mean Arctic char CPUE and BPUE in Doo Lough appeared slightly different in 2012 than in the 2009 survey, these differences were not statistically significant. The mean Arctic char CPUE and BPUE in Doo Lough was significantly higher than Kindrum Lough and Lough Mask, other similar lakes surveyed. Arctic char ranged in age from 1+ to 4+, indicating reproductive success in four of the previous five years. Classification and assigning lakes with an ecological status is a critical part of the WFD monitoring programme. It allows River Basin District managers to identify and prioritise lakes that currently fall 13

short of the minimum Good Ecological Status that is required by 2015 if Ireland is not to incur penalties. A multimetric fish ecological classification tool (Fish in Lakes FIL ) was developed for the island of Ireland (Ecoregion 17) using IFI and Agri-Food and Biosciences Institute Northern Ireland (AFBINI) data generated during the NSSHARE Fish in Lakes project (Kelly et al., 2008). This tool was further developed during 2010 (FIL2) in order to make it fully WFD compliant, including producing EQR values for each lake and associated confidence in classification (Kelly et al., 2012). Using the FIL2 classification tool, Lough Doo has been assigned an ecological status of High based on the fish populations present in 2012. The ecological status assigned to the lake based on the 2009 survey data was also High. In the 2007 to 2009 surveillance monitoring reporting period, the EPA assigned Lough Doo an overall ecological status of Good, based on all monitored physico-chemical and biological elements, including fish. This status classification will be revised at the end of 2012. 1.5 References Kelly, F.L., Harrison, A., Connor, L., Allen, M., Rosell, R. and Champ, T. (2008) FISH IN LAKES Task 6.9: Classification tool for Fish in Lakes. FINAL REPORT. Central Fisheries Board, NS Share project. Kelly, F., Harrison A., Connor, L., Matson, R., Morrissey, E., O Callaghan, R., Wogerbauer, C., Feeney, R., Hanna, G. and Rocks, K. (2010) Sampling Fish for the Water Framework Directive Summary Report 2009. The Central and Regional Fisheries Boards. Kelly, F.L., Harrison, A.J., Allen, M., Connor, L. and Rosell, R. (2012) Development and application of an ecological classification tool for fish in lakes in Ireland. Ecological Indicators, 18, 608-619. Kennedy, M. and Fitzmaurice, P. (1971) Growth and Food of Brown Trout Salmo Trutta (L.) in Irish Waters. Proceedings of the Royal Irish Academy, 71 (B) (18), 269-352. NPWS (2005) Site synopsis: Mweelrea/Sheeffry/Erriff Complex. Site code: 001932. Site Synopsis report, National Parks and Wildlife Service. O Reilly P (2007) Loughs of Ireland. A Flyfisher s Guide. 4 th edition. Merlin Unwin Books. 14

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