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Thermal discharge-created increasing temperatures alter the bacterioplankton composition and functional redundancy

机译:热放电造成的温度升高会改变浮游细菌的组成和功能冗余

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摘要

Elevated seawater temperature has altered the coupling between coastal primary production and heterotrophic bacterioplankton respiration. This shift, in turn, could influence the feedback of ocean ecosystem to climate warming. However, little is known about how natural bacterioplankton community responds to increasing seawater temperature. To investigate warming effects on the bacterioplankton community, we collected water samples from temperature gradients (ranged from 15.0 to 18.6 °C) created by a thermal flume of a coal power plant. The results showed that increasing temperatures significantly stimulated bacterial abundance, grazing rate, and altered bacterioplankton community compositions (BCCs). The spatial distribution of bacterioplankton community followed a distance similarity decay relationship, with a turnover of 0.005. A variance partitioning analysis showed that temperature directly constrained 2.01 % variation in BCCs, while temperature-induced changes in water geochemical and grazing rate indirectly accounted for 4.03 and 12.8 % of the community variance, respectively. Furthermore, the relative abundances of 24 bacterial families were linearly increased or decreased (P < 0.05 in all cases) with increasing temperatures. Notably, the change pattern for a given bacterial family was in concert with its known functions. In addition, community functional redundancy consistently decreased along the temperature gradient. This study demonstrates that elevated temperature, combined with substrate supply and trophic interactions, dramatically alters BCCs, concomitant with decreases in functional redundancy. The responses of sensitive assemblages are temperature dependent, which could indicate temperature departures.Electronic supplementary materialThe online version of this article (doi:10.1186/s13568-016-0238-4) contains supplementary material, which is available to authorized users.
机译:海水温度升高已经改变了沿海初级生产与异养浮游细菌呼吸之间的耦合。反过来,这种转变可能会影响海洋生态系统对气候变暖的反馈。但是,关于天然浮游生物群落如何对海水温度升高做出反应知之甚少。为了研究变暖对浮游细菌群落的影响,我们从燃煤电厂的热水槽产生的温度梯度(范围为15.0至18.6°C)中收集了水样本。结果表明,温度升高显着刺激了细菌的丰度,放牧速度,并改变了浮游细菌群落组成(BCC)。浮游细菌群落的空间分布遵循距离相似性衰减关系,周转率为0.005。方差划分分析表明,温度直接限制了BCC的2.01%的变化,而温度引起的水地球化学和放牧率的变化分别间接地占了社区方差的4.03%和12.8%。此外,随着温度的升高,24个细菌家族的相对丰度线性增加或减少(在所有情况下P均<0.05)。值得注意的是,给定细菌家族的变化模式与其已知功能一致。此外,社区功能冗余一直沿温度梯度下降。这项研究表明,升高的温度,加上底物供应和营养相互作用,会显着改变BCC,并伴随功能冗余的降低。敏感组件的响应取决于温度,这可能表示温度变化。电子补充材料本文的在线版本(doi:10.1186 / s13568-016-0238-4)包含补充材料,授权用户可以使用。

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