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蓝藻群落组成和细菌-细菌相互作用促进了颗粒相关细菌的稳定发生。

Cyanobacterial Community Composition and Bacteria-Bacteria Interactions Promote the Stable Occurrence of Particle-Associated Bacteria.

作者信息

Woodhouse Jason N, Ziegler Jennifer, Grossart Hans-Peter, Neilan Brett A

机构信息

Department of Experimental Limnology, Leibniz-Institute of Freshwater Ecology and Inland Fisheries, Berlin, Germany.

School of Biotechnology and Biomolecular Sciences, University of New South Wales, Sydney, NSW, Australia.

出版信息

Front Microbiol. 2018 Apr 26;9:777. doi: 10.3389/fmicb.2018.00777. eCollection 2018.

Abstract

Within meso/eutrophic freshwater ecosystems the dominance of cyanobacterial blooms during summer months has substantial impacts on ecosystem function with the production of toxins and subsequent induction of hypoxia altering food web structures and biogeochemical cycles. Cyanobacterial aggregates are extensively colonized by heterotrophic bacteria that provide the cyanobacteria with key nutrients and contribute towards remineralisation of organic matter. Here we sampled from five sites within a shallow eutrophic pond over a 6 months period, relating changes in the abundance of particle-associated heterotrophic taxa to phytoplankton abundance, toxin gene copies and physiochemical properties. The abundance of a majority of particle-associated bacteria were stable, in that they persisted despite perturbation. Cyanobacterial species abundance more likely correlated with stable rather than unstable bacteria and unstable bacteria were associated with allochthonous (terrestrial) organic matter. The occurrence of the most stable bacteria was correlated with large numbers of other bacteria suggesting bacteria-bacteria interactions have implications for the stable occurrence of microorganisms on particles. Freshwater ecosystems are frequently inundated with fresh nutrients in the form of surface runoff and experience an increasing number of high temperature days. In addition to increasing the severity and longevity of cyanobacterial blooms, run-off changes the nature of the particle-associated community compromising stability. This disruption has the potential to drive changes in the carbon and nitrogen cycles and requires further attention.

摘要

在中营养/富营养淡水生态系统中,夏季蓝藻水华的优势地位对生态系统功能具有重大影响,毒素的产生以及随后的缺氧状况会改变食物网结构和生物地球化学循环。蓝藻聚集体被异养细菌广泛定殖,这些细菌为蓝藻提供关键营养物质,并有助于有机物的再矿化。在此,我们在6个月的时间里从一个浅水富营养池塘的五个地点进行采样,将与颗粒相关的异养类群丰度的变化与浮游植物丰度、毒素基因拷贝数和理化性质联系起来。大多数与颗粒相关的细菌丰度是稳定的,也就是说,尽管受到干扰它们仍能持续存在。蓝藻物种丰度更可能与稳定细菌而非不稳定细菌相关,并且不稳定细菌与外源(陆地)有机物有关。最稳定细菌的出现与大量其他细菌相关,这表明细菌间相互作用对颗粒上微生物的稳定存在具有影响。淡水生态系统经常受到地表径流形式的新鲜养分的淹没,并且经历越来越多的高温天气。除了增加蓝藻水华的严重程度和持续时间外,径流还改变了与颗粒相关群落的性质,损害了稳定性。这种破坏有可能推动碳和氮循环的变化,需要进一步关注。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5fd7/5932394/b4c1d70379ff/fmicb-09-00777-g001.jpg

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