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20世纪南极菲尔德斯半岛毛皮海豹食谱比例变化的同位素混合模型比较分析

黄涛 张灿 蔡思盈

黄涛, 张灿, 蔡思盈. 20世纪南极菲尔德斯半岛毛皮海豹食谱比例变化的同位素混合模型比较分析[J]. 海洋学报, 2015, 37(8): 117-125. doi: 10.3969/j.issn.0253-4193.2015.08.011
引用本文: 黄涛, 张灿, 蔡思盈. 20世纪南极菲尔德斯半岛毛皮海豹食谱比例变化的同位素混合模型比较分析[J]. 海洋学报, 2015, 37(8): 117-125. doi: 10.3969/j.issn.0253-4193.2015.08.011
Huang Tao, Zhang Can, Cai Siying. Stable isotope mixing models in analyses of dietary changes of Antarctic fur seal in Fildes Peninsula,Antarctica over the 20th century[J]. Haiyang Xuebao, 2015, 37(8): 117-125. doi: 10.3969/j.issn.0253-4193.2015.08.011
Citation: Huang Tao, Zhang Can, Cai Siying. Stable isotope mixing models in analyses of dietary changes of Antarctic fur seal in Fildes Peninsula,Antarctica over the 20th century[J]. Haiyang Xuebao, 2015, 37(8): 117-125. doi: 10.3969/j.issn.0253-4193.2015.08.011

20世纪南极菲尔德斯半岛毛皮海豹食谱比例变化的同位素混合模型比较分析

doi: 10.3969/j.issn.0253-4193.2015.08.011
基金项目: 国家自然科学基金(41476165);安徽省自然科学基金(1308085MD56);国家极地专项(CHINARE2015-04-01);国家海洋局极地科学重点实验室开放基金(KP201207)。

Stable isotope mixing models in analyses of dietary changes of Antarctic fur seal in Fildes Peninsula,Antarctica over the 20th century

  • 摘要: 稳定同位素比值分析已成功用于示踪动物的食物来源研究,近年来已发展了多个同位素混合模型用于计算混合物中多来源物质的组成比例。本文以过去百年来南极菲尔德斯半岛南极毛皮海豹 (Arctocephalus gazella) 毛发的C、N同位素数据为基础,运用同位素混合模型中的欧几里得距离法、线性模型和贝叶斯模型进行计算、分析和比较,得到毛皮海豹食谱中南极磷虾 (Euphausia superb)、南极电灯鱼 (Electrona antarctica)和尼氏裸灯鱼 (Gymnoscopelus nicholsi)所占比例随时间的变化趋势。各模型计算得出的结果可分为两组,分别是欧几里得距离法公式(1)和(2)的结果,表现为近百年来毛皮海豹食谱中Euphausia superb比例与其毛发稳定N同位素比值呈同步上升的趋势;第二组为欧几里得距离法公式(3)、线性模型和贝叶斯模型的结果,Euphausia superb比例与毛皮海豹毛稳定N同位素比值呈反相关关系。综 合对比研究区域气候、海冰环境变化背景和已有的南极磷虾种群密度调查资料分析,第二组模型结果与实际情况较为相符,可用于讨论食物比例的时间变化趋势。近百年来,菲尔德斯半岛毛皮海豹食谱中Euphausia superb的比例显著下降,很可能是由于区域气候快速变暖和海冰的消退造成的。本文的计算结果指示西南极半岛气候变暖已显著影响到区域海洋食物链变化。
  • Arrigo K R. Sea ice ecosystems[J]. Annual Review of Marine Science,2013,6: 439-467.
    Agnew D J. Review——the CCAMLR Ecosystem monitoring programme[J]. Antarctic Science,1997,9(3): 235-242.
    Sun L G,Emslie S D,Huang T,et al. Vertebrate records in polar sediments: biological responses to past climate change and human activities[J]. Earth-Science Reviews,2013,126: 147-155.
    Huang Tao,Sun Liguang,Wang Yuhong,et al. Paleodietary changes by penguins and seals in association with Antarctic climate and sea ice extent[J]. Chinese Science Bulletin,2014,59(33): 4456-4464.
    Hobson K A,Piatt J F,Pitocchelli J. Using stable isotopes to determine seabird trophic relationships[J]. Journal of Animal Ecology,1994,63(4): 786-798.
    Newsome S D,Clementz M T,Koch P L. Using stable isotope biogeochemistry to study marine mammal ecology[J]. Marine Mammal Science,2010,26(3): 509-572.
    Ramos R,González-Solís J. Trace me if you can: the use of intrinsic biogeochemical markers in marine top predators[J]. Frontiers in Ecology and the Environment,2012,10: 258-266.
    Huang Tao,Sun Liguang,Long Nanye,et al. Penguin tissue as a proxy for relative krill abundance in East Antarctica during the Holocene[J]. Scientific Reports,2013,3: 2807-2807.
    Xu Liqiang,Liu Xiaodong,Jiang Shan. Late-Holocene seabird palaeodietary record from Ganquan Island,South China Sea[J]. Quaternary International,2014,333: 139-145.
    Deniro M J,Epstein S. Influence of diet on the distribution of carbon isotopes in animals[J]. Geochim Cosmochim Acta,1978,42(5): 495-506.
    Deniro M J,Epstein S. Influence of diet on the distribution of nitrogen isotopes in animals[J]. Geochim Cosmochim Acta,1981,45(3): 341-351.
    Kline T C Jr,Goering J J,Mathisen O A,et al. Recycling of elements transported upstream by runs of Pacific salmon. Ⅱ. δ15N and δ13C evidence in the Kvichak River watershed,Bristol Bay,southwestern Alaska[J]. Can J Fish Aquat Sci,1993,50(11): 2350-2365.
    Whitledge G W,Rabeni C F. Energy sources and ecological role of crayfishes in an Ozark stream: insights from stable isotopes and gut analysis[J]. Can J Fish Aquat Sci,1997,54(11): 2555-2563.
    Szepanski M M,Ben-David M,Van Ballenberghe V. Assessment of anadromous salmon resources in the diet of the Alexander Archipelago wolf using stable isotope analysis[J]. Oecologia,1999,120(3): 327-335.
    Phillips D L. Mixing models in analysis of diet using multiple stable isotopes: a critique[J]. Oecologia,2001,127(2): 166-170.
    Phillips D L,Koch P L. Incorporating concentration dependence in stable isotope mixing models[J]. Oecologia,2002,130(1): 114-125.
    Phillips D L,Gregg J W. Uncertainty in source partitioning using stable isotopes[J]. Oecologia,2001,127(2): 171-179.
    Phillips D L,Gregg J W. Source partitioning using stable isotopes: coping with too many sources[J]. Oecologia,2003,136(2): 261-269.
    Moore J W,Semmens B X. Inc獯?桰慯牲癡整獩瑮楧渠杵?慣湥摲?捡汩楮浴慹琠敡?睤愠牰浲楩湯杲?瑩潮?灯敲湭条畴楩湯?瀠潩灮畴汯愠瑳楴潡湢?捥栠慩湳杯整獯?楥渠??湸瑩慮牧挠瑭楯捤慥孬?嵛??倮爠潅捣敯敬摯楧湹朠獌?潴晴?瑲桳攬′丰愰琸椬漱渱愨氵??挠愴搷攰洭礴?漰昮?卢捲椾敛渲挰敝猠?潡晲?瑥桬敬?啁渠楃琬敉摮?卥瑲愠瑒攬獂?潡晲??浰攠牓椬捥慴??ぬ?ㄠ??ふ??????????????????扳物?孧??嵴??潬牥挠慩摳慯????潳昺映浣慯湰???????汨椠浴慯瑯攠?捵档慨渠杶敡?獩敡汴敩捯瑮獛?晝漮爠?桌敯瑓攠牏潮穥礬朲漰猱椰琬礵?椳温?愠?搹收挷氲椮渼楢湲朾?昲由牝?獒攠慄汥?灥潬灯異汭慥瑮楴漠湃孯?嵥??乥慡瑭甮爠敒?㈠ぁㄠ????????ㄠち???????????ent for Statistical Computing[S]. Vienna,Austria: the R Foundation for Statistical Computing,ISBN 3-900051-07-0,2012,URL http://www.R-project.org/.
    Yang Qichao,Sun Liguang,Kong Deming,et al. Variation of Antarctic seal population in response to human activities in 20th century[J]. Chinese Science Bulletin,2010,55(11): 1084-1087.
    Huang J,Sun Liguang,Wang Xinming,et al. Ecosystem evolution of seal colony and the influencing factors in the 20th century on Fildes Peninsula,West Antarctica[J]. Journal of Environmental Sciences,2011,23(9): 1431-1436.
    Huang Tao,Sun Liguang,Stark J,et al. Relative changes in krill abundance inferred from Antarctic fur seal[J]. PLoS One,2011,6(11): e27331.
    Casaux R,Baroni A,Carlini A. The diet of the Antarctic fur seal Arctocephalus gazella at Harmony Point,Nelson Island,South Shetland Islands[J]. Polar Biology,1998,20(6): 424-428.
    Stowasser G A,Atkinson A,McGill R A R,et al. Food web dynamics in the Scotia Sea in summer: a stable isotope study[J]. Deep-Sea Research Part Ⅱ: Topical Studies in Oceanography,2012,59(59/60): 208-221.
    Inger R,Ruxton G D,Newton J,et al. Temporal and intrapopulation variation in prey choice of wintering geese determined by stable isotope analysis[J]. Journal of Animal Ecology,2006,75(5): 1190-1200.
    Loeb V,Siegel V,Holm-Hansen O,et al. Effects of sea-ice extent and krill or salp dominance on the Antarctic food web[J]. Nature,1997,387(6636): 897-900.
    Atkinson A,Siegel V,Pakhomov E,et al. Long-term decline in krill stock and increase in salps within the Southern Ocean[J]. Nature,2004,432(7013): 100-103.
    Trivelpiece W Z,Hinke J T,Miller A K,et al. Variability in krill biomass link
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出版历程
  • 收稿日期:  2014-12-20
  • 修回日期:  2015-03-12

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