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Functional and compositional succession of bacterioplankton in response to a gradient in bioavailable dissolved organic carbon

机译:浮游生物的功能和组成演替,响应生物可利用的溶解有机碳中的梯度

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摘要

Studies indicate that bacterial taxa utilize different fractions of the dissolved organic carbon (DOC) pool, while others suggest functional redundancy among constituents of bacterioplankton, implying only a weak coupling between community structure and function. We examined bacterial compositional and functional [ectoenzymatic activities and growth efficiency; bacterial growth efficiency (BGE)] responses to a gradient in bioavailable DOC (bDOC). This was achieved over 10 days in DOC utilization assays containing Baltic Sea water with variable amounts of natural bDOC. Measurements of bacterial growth, O_2 and DOC consumption in the assays using non-invasive sampling showed that BGE changed over time and that the bDOC utilized accounted for 4-13% of the DOC pool. Pyrosequencing of 16S rRNA genes demonstrated minor differences at the phylum level between samples, whereas larger successional differences were discernible at lower phylogenetic levels. Our study suggests that changes in concentrations of bDOC affect bacterioplankton BGE and community structure by selecting for some taxa while the relative abundance of most taxa remained unaffected. Ectoenzymes activities suggested preferential degradation of protein-rich compounds by bacteria, switching to carbohydrate-rich DOC when proteins were depleted. Hence, there was a fairly weak linkage between bacterial community composition and DOC utilization suggesting that overall bacterioplankton community structure only to some extent has predictive power for processing of the DOC pool.
机译:研究表明,细菌类群利用溶解有机碳(DOC)库的不同部分,而另一些则表明浮游植物各组成部分之间的功能冗余,这意味着群落结构与功能之间的耦合较弱。我们研究了细菌的组成和功能[外酶活性和生长效率;细菌生长效率(BGE)]对生物利用度DOC(bDOC)中的梯度的响应。这是在含波罗的海海水和不同量的天然bDOC的DOC利用试验中进行了10天以上。在使用无创采样的测定中,细菌生长,O_2和DOC消耗的测量结果表明BGE随着时间的推移而变化,并且所使用的bDOC占DOC池的4-13%。 16S rRNA基因的焦磷酸测序在样品之间的门廊水平上显示出较小的差异,而在较低的系统发生水平上则可以看出较大的连续差异。我们的研究表明,bDOC浓度的变化通过选择一些分类单元而影响了浮游细菌的BGE和群落结构,而大多数分类单元的相对丰度却未受影响。电子酶活性表明细菌会优先降解富含蛋白质的化合物,当蛋白质耗尽时会转变为富含碳水化合物的DOC。因此,细菌群落组成与DOC利用之间的联系相对较弱,这表明整个浮游细菌群落结构仅在某种程度上对DOC池的处理具有预测能力。

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