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升温与养分富集相结合会增加淡水围隔中浮游细菌群落的随机性和β多样性。

Warming and nutrient enrichment in combination increase stochasticity and beta diversity of bacterioplankton assemblages across freshwater mesocosms.

作者信息

Ren Lijuan, He Dan, Chen Zhen, Jeppesen Erik, Lauridsen Torben L, Søndergaard Martin, Liu Zhengwen, Wu Qinglong L

机构信息

State Key Laboratory of Lake Science and Environment, Nanjing Institute of Geography and Limnology, Chinese Academy of Sciences, Nanjing, China.

Key Laboratory of Tropical Marine Bio-resources and Ecology (LMB), South China Sea Institute of Oceanology, Chinese Academy of Sciences, Guangzhou, China.

出版信息

ISME J. 2017 Mar;11(3):613-625. doi: 10.1038/ismej.2016.159. Epub 2016 Dec 9.

Abstract

The current climate warming and eutrophication are known to interactively threaten freshwater biodiversity; however, the interactive effects on lacustrine bacterioplankton diversity remain to be determined. Here, we analyzed the spring bacterioplankton community composition (BCC) in 24 outdoor, flow-through mesocosms (mimicking shallow lake environments) under 3 temperature scenarios and 2 nutrient regimes. Our results revealed that neither long-term warming (8.5 years) nor nutrient enrichment had significant effects on bacterioplankton alpha diversity, whereas long-term enhanced warming (elevated 50% above the IPCC A2 climate scenario) and nutrient enrichment in combination increased bacterioplankton beta diversity. We also found that BCC shifted significantly under enhanced warming and nutrient-enriched conditions towards decreased relative abundances of Actinobacteria, Bacteroidetes and Betaproteobacteria, whereas the percentages of Cyanobacteria, total rare phyla and unclassified phyla significantly increased. Null-model tests indicated that deterministic processes played a more important role than stochastic processes in determining BCC. However, the relative importance of stochasticity, primarily ecological drift, was enhanced and contributed to the increased beta diversity of BCC under enhanced warming and nutrient-enriched conditions. Overall, our study suggests that the synergetic effects of warming and nutrient enrichment may result in high variability in the composition of bacterioplankton communities in lacustrine water bodies.

摘要

当前的气候变暖和富营养化相互作用,对淡水生物多样性构成威胁;然而,其对湖泊浮游细菌多样性的交互影响仍有待确定。在此,我们分析了24个室外、流水式中宇宙(模拟浅水湖泊环境)在3种温度情景和2种营养状态下春季浮游细菌群落组成(BCC)。我们的结果显示,长期变暖(8.5年)和营养物质富集对浮游细菌的α多样性均无显著影响,而长期强化变暖(比政府间气候变化专门委员会A2气候情景升高50%)与营养物质富集共同作用增加了浮游细菌的β多样性。我们还发现,在强化变暖和营养物质富集条件下,BCC发生了显著变化,放线菌、拟杆菌和β-变形菌的相对丰度降低,而蓝细菌、总稀有门类和未分类门类的百分比显著增加。空模型检验表明,在决定BCC时,确定性过程比随机过程发挥了更重要的作用。然而,在强化变暖和营养物质富集条件下,随机性(主要是生态漂变)的相对重要性增强,并导致了BCC的β多样性增加。总体而言,我们的研究表明,变暖和营养物质富集的协同效应可能导致湖泊水体中浮游细菌群落组成的高度变异性。

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