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Variability of the microbial community in the western Antarctic Peninsula from late fall to spring during a low ice cover year

机译:在低冰盖年期间,南极半岛西部微生物群落从深秋到春季的变化

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摘要

Although winter conditions play a major role in determining the productivity of the western Antarctic Peninsula (WAP) waters for the following spring and summer, a few studies have dealt with the seasonal variability of microorganisms in the WAP in winter. Moreover, because of regional warming, sea-ice retreat is happening earlier in spring, at the onset of the production season. In this context, this study describes the dynamics of the marine microbial community in the Melchior Archipelago (WAP) from fall to spring 2006. Samples were collected monthly to biweekly at four depths from the surface to the aphotic layer. The abundance and carbon content of bacteria, phytoplankton and microzooplankton were analyzed using flow cytometry and inverted microscopy, and bacterial richness was examined by PCR-DGGE. As expected, due to the extreme environmental conditions, the microbial community abundance and biomass were low in fall andrnwinter. Bacterial abundance ranged from 1.2 to 2.8 × 10~5 cells ml~(-1) showing a slight increase in spring. Phytoplankton biomass was low and dominated by small cells (<2 μm) in fall and winter (average chlorophyll a concentration, Chl-a, of, respectively, 0.3 and 0.13 μg l~(-1)). Phytoplankton biomass increased in spring (Chl-a up to 1.13 μg l~(-1)), and, despite potentially adequate growth conditions, this rise was small and phytoplankton was still dominated by small cells (2-20 μm). In addition, the early disappearing of sea-ice in spring 2006 let the surface water exposed to ultraviolet B radiations (UVBR, 280-320 nm), which seemed to have a negative impact on the microbial community in surface waters.
机译:尽管冬季条件在决定接下来的春季和夏季的南极半岛西部(WAP)水的生产力方面起着重要作用,但是一些研究已经解决了冬季WAP中微生物的季节性变化。此外,由于区域变暖,在生产季节开始的春季早些时候发生了海冰退缩。在此背景下,本研究描述了从2006年秋季到春季,梅尔基奥尔群岛(WAP)海洋微生物群落的动态。每月从表面到无水层四个深度每月至每两周收集一次样品。使用流式细胞仪和倒置显微镜分析细菌,浮游植物和微浮游动物的丰度和碳含量,并通过PCR-DGGE检测细菌的丰富度。不出所料,由于极端的环境条件,秋冬季节的微生物群落丰度和生物量较低。细菌的丰度范围为1.2至2.8×10〜5个细胞ml〜(-1),在春季显示出轻微增加。浮游植物的生物量很低,在秋冬季节以小细胞为主(<2μm)(平均叶绿素a浓度Chl-a分别为0.3和0.13μgl〜(-1))。春季浮游植物的生物量增加(Chl-a高达1.13μgl〜(-1)),尽管潜在的生长条件适当,但这种增长很小,浮游植物仍以小细胞(2-20μm)为主。此外,2006年春季海冰的早日消失使地表水暴露于紫外线B辐射(UVBR,280-320 nm)下,这似乎对地表水中的微生物群落产生了负面影响。

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  • 来源
    《Polar biology》 |2010年第12期|p.1599-1614|共16页
  • 作者单位

    Institut des sciences de la mer de Rimouski (ISMER),Universite du Quebec a Rimouski, 310 allee des Ursulines,Rimouski, Quebec G5L 3A1, Canada;

    rnInstitut des sciences de la mer de Rimouski (ISMER),Universite du Quebec a Rimouski, 310 allee des Ursulines,Rimouski, Quebec G5L 3A1, Canada Instituto Antartico Argentino, Cerrito 1248 (1010),Buenos Aires, Argentina;

    rnInstitut des sciences de la mer de Rimouski (ISMER),Universite du Quebec a Rimouski, 310 allee des Ursulines,Rimouski, Quebec G5L 3A1, Canada;

    rnInstitut des sciences de la mer de Rimouski (ISMER),Universite du Quebec a Rimouski, 310 allee des Ursulines,Rimouski, Quebec G5L 3A1, Canada;

    rnInstitut des sciences de la mer de Rimouski (ISMER),Universite du Quebec a Rimouski, 310 allee des Ursulines,Rimouski, Quebec G5L 3A1, Canada;

    rnInstitut des sciences de la mer de Rimouski (ISMER),Universite du Quebec a Rimouski, 310 allee des Ursulines,Rimouski, Quebec G5L 3A1, Canada;

    rnLaboratoire Ecosystemes Lagunaires, UMR 5119 (Universite Montpellier 2, CNRS, IFREMER, IRD), Case 093,34095 Montpellier Cedex 05, France;

    rnInstitut des sciences de la mer de Rimouski (ISMER),Universite du Quebec a Rimouski, 310 allee des Ursulines,Rimouski, Quebec G5L 3A1, Canada;

    rnDepartment of Fisheries and Oceans, Institute of Ocean Sciences, 9860 West Saanich Road, Sidney, BC V8L 4B, Canada;

    rnInstitut des sciences de la mer de Rimouski (ISMER),Universite du Quebec a Rimouski, 310 allee des Ursulines,Rimouski, Quebec G5L 3A1, Canada;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    microbial food web; antarctica; sea-ice; ozone hole; UV radiations;

    机译:微生物食物网;南极洲;海冰;臭氧洞紫外线辐射;

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