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Seasonal variation in heavy metal levels in tissues of common guillemots, Uria aalge from Northwest Scotland

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Abstract

Mercury, cadmium, zinc, and copper concentrations were analyzed in three samples of common guillemot (in April, June, and November). Levels measured were uniformly low, and not enough to have any toxic effects. Adult guillemots had significantly more cadmium in their livers and kidneys than juveniles, with juvenile levels ranging from 25% to 89% of adult levels. Mercury concentrations in liver and kidney were also higher in adults. Juvenile levels represented from 80% to 94% of adults, but there were no age differences in feather and muscle mercury. Mercury levels declined throughout the year in internal tissues from April through June to November. There was a strong seasonal fluctuation in cadmium levels in liver and kidney, rising significantly between April and June and declining again from June to November. These changes were apparent in both adult and juvenile birds. The influences of seasonal processes (namely breeding and moult) and seasonal dietary differences as causative factors in the changes in metal burdens are discussed. These findings have implications for the use of seabirds as monitors of heavy metals in the marine environment.

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References

  • Barrett RT, Skarre JU, Norheim G, Vader W, Froslie A (1985) Persistent organochlorines and mercury in eggs of Norwegian seabirds 1983. Environ Pollut (A) 39:79–93

    Google Scholar 

  • Birkhead TR (1980). Timing of breeding of common guillemots Uria aalge at Skomer Island, Wales. Ornis Scand 11:142–145

    Google Scholar 

  • Birkhead TR, Taylor AM (1977) Moult of the guillemot, Uria aalge. Ibis 119:80–85

    Google Scholar 

  • Birkhead TR, Harris MP (1985) Ecological adaptations for breeding in the Atlantic Alcidae. In Nettleship DN, Birkhead TR (eds) The Atlantic alcidae. Academic Press, London, pp 205–231

    Google Scholar 

  • Blomquist S, Frank A, Petersson LR (1987) Metals in liver and kidney tissues of autumn migrating dunlin, Calidris alpina and curlew sandpiper Calidris ferruginea staging at the Baltic sea. Mar Ecol Prog Ser 35:1–13

    Google Scholar 

  • Braune BM (1987) Comparison of total mercury levels in relation to diet and molt for nine species of marine birds. Arch Environ Contam Toxicol 16:217–224

    Google Scholar 

  • Braune BM, Gaskin DE (1987) Mercury levels in Bonaparte's gulls Larus philadelphia during autumn molt in the Quoddy Region, New Brunswick, Canada. Arch Environ Contam Toxicol 16:539–549

    Google Scholar 

  • Burger J, Gochfeld M (1993) Heavy metal and selenium levels in feathers of young egrets and herons from Hong Kong and Szechuan, China. Arch Environ Contam Toxicol 25:322–327

    Google Scholar 

  • Cramp S, Simmons (1985) Cramp S (chief ed) A handbook of the birds of Europe, the Middle East and North Africa. Oxford University Press, Oxford, Vol 4, pp 168–170

    Google Scholar 

  • Fimreite N (1974) Mercury contamination of aquatic birds in northwestern Ontario. J Wildlife Manage 38:120–131

    Google Scholar 

  • Furness RW (1993) Birds as monitors of pollutants. In: Furness RW, Greenwood JJD (eds) Birds as monitors of environmental change. Chapman and Hall, London, pp 86–143

    Google Scholar 

  • Furness RW, Hutton M (1979) Pollutant levels in the great skua Catharacta skua. Environ Pollut 19:261–268

    Google Scholar 

  • Furness RW, Muirhead SJ, Woodburn M (1986) Using bird feathers to measure mercury in the environment: relationships between mercury content and moult. Mar Pollut Bull 17:27–30

    Google Scholar 

  • Furness RW, Thompson DR, Harrison N (1994) Biometrics and seasonal changes in body composition on common guillemots Uria aalge from northwest Scotland. Seabird 16:22–29

    Google Scholar 

  • Furness RW, Thompson DR, Stewart FM, Barrett RT (in press) Heavy metals in Icelandic seabirds as indicators of pollution. Munchener Geogr. Abhandl.

  • Ginn HB, Melville DS (1983) Moult in birds. BTO guide no. 19. British Trust for Ornithology, Tring, Hertfordshire, UK

    Google Scholar 

  • Goede AA, Nygard T, De Bruin M, Steinnes E (1987) Selenium, mercury, arsenic, and cadmium in the life cycle of the dunlin Calidris alpina, a migrant wader. Sci Tot Environ 78:205–218

    Google Scholar 

  • Halley DJ, Harrison N, Webb A, Thompson DR (in press). Seasonal and geographical variations in the feeding ecology of guillemots (Uria aalge) off western Scotland. Seabird

  • Harris MP, Wanless S (1985) Fish fed to young guillemots, Uria aalge, and used in display on the Isle of May, Scotland. J Zool Lond 207:441–458

    Google Scholar 

  • —, — (1990) Moult and autumn colony attendance of auks. Br Birds 83:55–66

    Google Scholar 

  • Honda K, Nasu T, Tatsukawa R (1986a) Seasonal changes in mercury accumulation in the black-eared kite, Milvus migrans lineatus. Environ Pollut (A) 42:325–324

    Google Scholar 

  • Honda K, Yamamoto Y, Hidaka H, Tatsukawa R (1986b) Heavy metal accumulations in Adelie penguin, Pygoscelis adeliae, and their variations with the reproductive process. Mem Natl Inst Polar Res, Spec Issue 40:443–453

    Google Scholar 

  • Honda K, Min BY, Tatsukawa R (1986c) Distribution of heavy metals and their age related changes in the eastern great white egret Egretta alba modesta, in Korea. Arch Environ Contam Toxicol 15:185–187

    Google Scholar 

  • Honda K, Marcovecchio JE, Kan S, Tatsukawa R, Ogi H (1990) Metal concentrations in pelagic seabirds from the North Pacific Ocean. Arch Environ Contam Toxicol 19:704–711

    Google Scholar 

  • Hutton M (1981) Accumulation of heavy metals and selenium in three seabird species from the United Kingdom. Environ Pollut (A) 26:129–145

    Google Scholar 

  • Jensen S, Johnels AG, Olsson M, Westermark T (1972) The avifauna of Sweden as indicators of environmental contamination with mercury and chlorinated hydrocarbons. In: Proc XVth int ornith congr, Leiden, pp 455–465

  • Lewis SA, Becker PH, Furness RW (1993) Mercury levels in eggs, tissues, and feathers of herring gulls Larus argentatus from the German Wadden sea coast. Environ Pollut 80:293–299

    Google Scholar 

  • Lofts B, Murton RK (1973) Reproduction in birds. In: Farner DS, King JR (eds) Avian biology. Academic Press, London, Vol. 3, pp 1–107

    Google Scholar 

  • Maegden JL, Hacker CS, Schroder GD, Weir FW (1982) Accumulation of lead and cadmium in the royal tern and sandwich tern. Arch Environ Contam Toxicol 11:99–102

    Google Scholar 

  • Muirhead SJ (1986) Accumulation, storage and elimination of pollutants by great skuas Catharacta skua and concentrations of metals in pelagic Atlantic seabirds. PhD thesis. University of Glasgow, Scotland (unpubl)

    Google Scholar 

  • Muirhead SJ, Furness RW (1988) Heavy metal concentrations in the tissues of seabirds from Gough island, South Atlantis ocean. Mar Pollut Bull 19:278–283

    Google Scholar 

  • Nicholson JK (1981) The comparative distribution of zinc, cadmium, and mercury in selected tissues of the herring gull Larus argentatus. Comp Biochem Physiol 68C:91–94

    Google Scholar 

  • Norheim G (1987) Levels and interactions of heavy metals in seabirds from Svalbard and the Antarctic. Environ Pollut 47:83–94

    Google Scholar 

  • Norusis MJ (1986) SPSS/PC+. SPSS Inc, Chicago, IL

    Google Scholar 

  • — (1988) SPSS/PC+ advanced statistics V2.0. SPSS Inc, Chicago, IL

    Google Scholar 

  • Ohlendorf MM, Anderson DW, Boellstorff DE, Mulhern BM (1985) Tissue distribution of trace elements and DDE in brown pelicans. Bull Environ Contam Toxicol 35:183–192

    Google Scholar 

  • Osborn D (1979a) The significance of metal residues in wild animals. In: Proc int conf management and control of heavy metals in the environment. CEP Consultants, Edinburgh

    Google Scholar 

  • — (1979b) Seasonal changes in the fat, protein and metal content of the starling Sturnis vulgaris. Environ Pollut 19:145–155

    Google Scholar 

  • Parslow JLF, Jefferies DJ (1975) Geographical variation in pollutants in guillemot eggs. Ann Rep Inst Terr Ecol 1974:28–31

    Google Scholar 

  • Phillips (1990) Use of macroalge and invertebrates as monitors of metal levels in estuaries and coastal waters. In: Furness RW, Rainbow PS (eds) Heavy metals in the marine environment. CRC Press, Boca Raton, FL, pp 81–99

    Google Scholar 

  • Ratcliffe DA (1970) Changes attributable to pesticides in egg breakage frequency and eggshell thickness in some British birds. J Appl Ecol 7:67–107

    Google Scholar 

  • Reid M, Hacker CS (1982) Spacial and temporal variation in lead and cadmium in the laughing gull, Larus atricilla. Mar Poll Bull 13(11):387–389

    Google Scholar 

  • Scheuhammer AM (1987) The chronic toxicity of aluminum, cadmium, mercury and lead in birds: A review. Environ Pollut 46:263–295

    Google Scholar 

  • Stock M, Herber RFM, Geron HMA (1989) Cadmium levels in oystercatcher Haematopus ostralegus from the German Wadden sea. Mar Ecol Prog Ser 53:227–234

    Google Scholar 

  • Tasker ML, Becker PH (1992) Influences of human activities on seabird populations in the North Sea. Neth J Aquat Ecol 26:59–73

    Google Scholar 

  • Thompson DR (1990) Metal levels in marine vertebrates. In: Furness RW, Rainbow PS (eds) Heavy metals in the marine environment. CRC Press, Boca Raton, FL, pp 143–182

    Google Scholar 

  • Thompson DR, Furness RW (1989) The chemical form of mercury stored in south Atlantic seabirds. Environ Pollut 60:305–317

    Google Scholar 

  • Thompson DR, Hamer KC, Furness RW (1991) Mercury accumulation in great skuas Catharacta skua of known age and sex, and its effect upon breeding and survival. J Appl Ecol 28:672–684

    Google Scholar 

  • Thompson DR, Furness RW, Barrett RT (1992) Mercury concentrations in seabirds from colonies in the Northeast Atlantic. Arch Environ Contam Toxicol 23:383–389

    Google Scholar 

  • Thompson DR, Furness RW, Walsh PM (1992) Historical changes in mercury concentrations in the marine ecosystem of the north and north-east Atlantic ocean as indicated by seabird feathers. J Appl Ecol 29:79–84

    Google Scholar 

  • Uthe JF, Solomon J, Grift B (1972) Rapid semimicro method for the determination on methyl mercury in fish tissue. J Assoc Off Anal Chem 55:583–589

    Google Scholar 

  • Walsh P (1990) The use of seabirds as monitors of heavy metals in the marine environment. In: Furness RW, Rainbow PS (eds) Heavy metals in the marine environment. CRC Press, Boca Raton, FL, pp 183–204

    Google Scholar 

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Stewart, F.M., Thompson, D.R., Furness, R.W. et al. Seasonal variation in heavy metal levels in tissues of common guillemots, Uria aalge from Northwest Scotland. Arch. Environ. Contam. Toxicol. 27, 168–175 (1994). https://doi.org/10.1007/BF00214259

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  • DOI: https://doi.org/10.1007/BF00214259

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