首页> 外文期刊>Ecology: A Publication of the Ecological Society of America >Bacterial community response to changes in a tri-trophic cascade during a whole-lake fish manipulation
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Bacterial community response to changes in a tri-trophic cascade during a whole-lake fish manipulation

机译:全湖鱼类操作过程中细菌群落对三营养级联反应变化的响应

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摘要

Microbial communities play a key role in biogeochemical processes by degrading organic material and recycling nutrients, but can also be important food sources for upper trophic levels. Trophic cascades might modify microbial communities either directly via grazing or indirectly by inducing changes in other biotic or in abiotic factors (e.g., nutrients). We studied the effects of a tri-trophic cascade on microbial communities during a whole-lake manipulation in which European perch (Perca fluviatilis) were added to a naturally fishless lake divided experimentally into two basins. We measured environmental parameters (oxygen, temperature, and nutrients) and zooplankton biomass and studied the changes in the bacterial community using next generation sequencing of 16S rRNA genes and cell counting. Introduction of fish reduced the biomass of zooplankton, mainly Daphnia, which partly altered the bacterial community composition and affected the bacterial cell abundances. However, the microbial community composition was mainly governed by stratification patterns and associated vertical oxygen concentration. Slowly growing green sulfur bacteria (Chlorobium) dominated the anoxic water layers together with bacteria of the candidate division OD1. We conclude that alterations in trophic interactions can affect microbial abundance, but that abiotic factors seem to be more significant controls of microbial community composition in sheltered boreal lakes.
机译:微生物群落通过降解有机物质和循环利用养分在生物地球化学过程中发挥关键作用,但也可以成为营养水平较高的重要食物来源。营养级联可能直接通过放牧或通过诱导其他生物或非生物因素(例如营养素)的变化而间接改变微生物群落。我们研究了全营养处理期间三营养级联对微生物群落的影响,其中将欧洲鲈鱼(Perca fluviatilis)添加到实验中分为两个盆地的天然无鱼湖中。我们测量了环境参数(氧气,温度和养分)和浮游动物的生物量,并使用下一代16S rRNA基因测序和细胞计数研究了细菌群落的变化。鱼类的引入减少了浮游动物(主要是水蚤)的生物量,这部分改变了细菌群落组成并影响了细菌细胞的丰度。但是,微生物群落组成主要受分层模式和相关的垂直氧浓度控制。缓慢生长的绿色硫细菌(Chlorobium)与候选分区OD1的细菌一起主导了缺氧水层。我们得出结论,营养相互作用的改变会影响微生物的丰度,但非生物因素似乎是庇护的北方湖泊中微生物群落组成更重要的控制因素。

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