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Metabolic diversity of heterotrophic bacterioplankton over winter and

机译:冬季和春季异养浮游植物的代谢多样性。

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摘要

Metabolic diversity of heterotrophic bacterioplankton was tracked from early winter through spring with Biolog Ecoplates under the seasonally ice covered arctic shelf in the Canadian Arctic (Franklin Bay, Beaufort Sea). Samples were taken every 6 days from December 2003 to May 2004 at the surface, the halocline where a temperature inversion occurs, and at 200 m, close to the bottom. Despite the low nutrient levels and low chlorophyll a, suggesting oligotrophy in the winter surface waters, the number of substrates used (NSU) was greater than in spring, when chlorophyll a concentrations increased. Denaturing gradient gel electrophorisis analysis also indicated that the winter and spring bacterial communities were phylogenetically distinct, with several new bands appearing in spring. In spring, the bacterial community would have access to the freshly produced organic carbon from the early phytoplankton bloom and the growth of rapidly growing specialist phenotypes would be favoured. In contrast, in winter bacterioplankton consumed more complex organic matter originated during the previous year's phytoplankton production. At the other depths we tested the NSU was similar to that for the winter surface, with no seasonal pattern. Instead, bacterioplankton metabolism seemed to be influenced by resuspension, advection, and sedimentation events that contributed organic matter that enhanced bacterial metabolism.
机译:在加拿大北极地区季节性冰雪覆盖的北极架子(富兰克林湾,波弗特海)下,利用Biolog Ecoplates追踪了从早冬到春季的异养浮游细菌的代谢多样性。从2003年12月到2004年5月,每6天从表面发生盐反转的盐湖地表附近200 m处取样。尽管养分含量低且叶绿素a低,表明冬季地表水处于低营养状态,但是当叶绿素a浓度增加时,使用的底物数量(NSU)大于春季。变性梯度凝胶电泳分析还表明,冬季和春季细菌群落在系统发育上是不同的,春季出现了几个新的条带。在春季,细菌群落将获得浮游植物早期开花产生的新鲜产生的有机碳,并且有利于快速生长的专业表型的生长。相反,在冬季,浮游植物消耗了上一年浮游植物生产过程中产生的更复杂的有机物质。在其他深度,我们测试了NSU与冬季表面相似,没有季节性模式。取而代之的是,浮游细菌的新陈代谢似乎受到重悬,平流和沉积事件的影响,这些事件促成了有机物的增加,从而增强了细菌的代谢。

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