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长江中下游河心洲细菌群落组装过程的不同驱动因素

Distinct drivers of bacterial community assembly processes in riverine islands in the middle and lower reaches of the Yangtze River.

作者信息

Yao Lu, Wu Junmei, Liu Shouzhuang, Xing Hao, Wang Pei, Gao Wenjuan, Wu Zhenbin, Zhou Qiaohong

机构信息

Key Laboratory of Lake and Watershed Science for Water Security, Institute of Hydrobiology, Chinese Academy of Sciences, Wuhan, China.

Australian Rivers Institute, Griffith University, Nathan, Queensland, Australia.

出版信息

Microbiol Spectr. 2024 Aug 6;12(8):e0081824. doi: 10.1128/spectrum.00818-24. Epub 2024 Jun 13.

Abstract

Riverine islands are widespread alluvium wetlands developed in large rivers, and bacterial communities are crucial to their ecological function, yet their assembly processes are rarely addressed. The ecosystem services provided by the middle and the lower Yangtze are primarily threatened by pollution discharge from agricultural land use, and resource overutilization (e.g., embankments), respectively. Here, we assessed bacterial community assembly processes and their drivers within riverine islands in the middle Yangtze River (MR islands) and those in the lower reach (LR islands). A significant distance-decay relationship was observed, although the turnover rate was lower than that of the terrestrial ecosystem with less connectivity. Deterministic and stochastic processes jointly shaped community patterns, and the influence of stochastic increased from 26% in MR islands to 59% for those in LR islands. Meanwhile, the bacterial community in MR islands was controlled more by inorganic nitrogen availability, whereas those in LR islands were governed by pH and EC, although those factors explained a limited fraction of variation in the bacterial community. Potential indicator taxa (affiliated with and ) characterized the waterway transport pollution. Overall, our study demonstrated that bacterial community dissimilarity and the importance of dispersal limitation increased concurrently along the flow direction, while distinct local factors further determined bacterial community compositions by selecting habitat-specificity taxa and particularly metabolism function. These findings enhanced our understanding of the mechanisms driving changes in bacterial communities of riverine islands subject to increased anthropogenic impacts.IMPORTANCERivers are among the most threatened ecosystems globally and face multiple stressors related to human activity. However, linkages between microbial diversity patterns and assembly processes in rivers remain unclear, especially in riverine islands developed in large rivers. Our findings reveal that distinct factors result in divergent bacterial community compositions and functional profiles in the riverine islands in the middle Yangtze and those in the lower Yangtze, with substantial differentiation in deterministic and stochastic processes that jointly contribute to bacterial community assemblages. Additionally, keystone species may play important metabolic roles in coping with human-related disturbances. This study provides an improved understanding of relationships between microbial diversity patterns and ecosystem functions under environmental changes in large river ecosystems.

摘要

江心洲是在大型河流中发育的广泛分布的冲积湿地,细菌群落对其生态功能至关重要,但其组装过程却很少被提及。长江中下游提供的生态系统服务分别主要受到农业土地利用污染排放和资源过度利用(如筑堤)的威胁。在此,我们评估了长江中游江心洲(中游岛屿)和下游江心洲(下游岛屿)内细菌群落的组装过程及其驱动因素。尽管周转率低于连通性较差的陆地生态系统,但仍观察到显著的距离衰减关系。确定性和随机性过程共同塑造了群落格局,随机性的影响从中游岛屿的26%增加到下游岛屿的59%。同时,中游岛屿的细菌群落更多地受无机氮可用性的控制,而下游岛屿的细菌群落则受pH值和电导率的影响,尽管这些因素只能解释细菌群落变异的有限部分。潜在的指示分类群(隶属于 和 )表征了水路运输污染。总体而言,我们的研究表明,细菌群落的差异和扩散限制的重要性沿水流方向同时增加,而不同的局部因素通过选择特定栖息地的分类群,特别是代谢功能,进一步决定了细菌群落的组成。这些发现加深了我们对人为影响增加的情况下江心洲细菌群落变化驱动机制的理解。

重要性

河流是全球受威胁最严重的生态系统之一,面临着与人类活动相关的多种压力源。然而,河流中微生物多样性模式与组装过程之间的联系仍不清楚,尤其是在大型河流中发育的江心洲。我们的研究结果表明,不同的因素导致长江中游和下游江心洲的细菌群落组成和功能特征存在差异,在共同促成细菌群落组装的确定性和随机性过程中存在显著差异。此外,关键物种可能在应对与人类相关的干扰方面发挥重要的代谢作用。本研究增进了我们对大型河流生态系统环境变化下微生物多样性模式与生态系统功能之间关系的理解。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/bbdb/11302259/62ecda2a3d0c/spectrum.00818-24.f001.jpg

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