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Dredging mitigates cyanobacterial bloom in eutrophic Lake Nanhu: Shifts in associations between the bacterioplankton community and sediment biogeochemistry

机译:疏浚减轻富养殖湖南湖的蓝藻绽放:菌株群落和泥沙生物地球化学之间的关联转变

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摘要

Cyanobacterial blooms are a worldwide environmental problem, which is partly attributed to their access to excessive nitrogen (N) and phosphorus (P). Preventing the blooms by reducing N and P from internal inputs is viewed as a challenge. To evaluate the effects of dredging on cyanobacterial abundances and bacterioplankton communities, water and sediment samples were collected from eutrophic Lake Nanhu (Wuhan, China) before dredging (2017) and after dredging (2018). After dredging, significant decreases were observed for sediment nutrients (e.g., C, N, and P sources); C-, N-, P-, and S-cycling-related enzyme activity; N- and P-cycling-related gene abundance; microbial abundance; and dramatic changes were observed in the composition of the sediment microbial community. The release rates of nutrient including nitrogen, phosphorus, and organic matter decreased after dredging, and sediment biogeochemistry was closely correlated to nutrient release rates. Additionally, our observations and analyses indicated that the abundance and diversity of the bacterioplankton community decreased significantly, the composition and interaction of the bacterioplankton community dramatically changed, and the bacterioplankton community function (e.g., N, P-cycling-related enzymes and proteins) down regulated after dredging. Water and sediment physicochemical factors explained 72.28% variation in bacterioplankton community composition, and these physicochemical factors were significantly correlated with diversity, composition, and function of bacterioplankton community. Our findings emphasized that cyanobacterial blooms in freshwater ecosystems were closely correlated with noncyanobacterial bacterioplankton that were largely conserved at the phylum level, with Proteobacteria, Actinobacteria, and Bacteroidetes as the main taxa. To our knowledge, this is the first report clarifying the mechanism of cyanobacterial blooms mitigation by dredging, via changing the association between the bacterioplankton community and sediment biogeochemistry. Our findings are of significance and indicate that dredging is effective for mitigating cyanobacterial blooms.
机译:蓝藻绽放是一个全球环境问题,部分是归因于他们对过量的氮气(n)和磷(p)的进入。通过从内部输入中减少N和P来防止绽放被视为挑战。为了评估疏浚对蓝藻丰富和菌株的影响,从疏浚(2017年)和疏浚后,从Eutrophic Lake Nanhu(武汉)和疏浚之后收集水和沉积物样品。疏浚后,针对沉积物营养物(例如,C,N和P源)观察到显着降低; C-,N-,P-和S-循环相关的酶活性; N-和p循环相关的基因丰富;微生物丰富;在沉积物微生物群落的组成中观察到剧烈的变化。在疏浚后,包括氮,磷和有机物质的营养素的释放速率降低,沉积物生物地球化学与营养释放速率密切相关。此外,我们的观察和分析表明,菌株群落的丰富和多样性显着下降,菌均噬菌体群落的组成和相互作用显着变化,并且菌株群体功能(例如,N,P循环相关酶和蛋白质)下降疏浚后受到调节。水和沉积物物理化学因素解释了菌株群落组成的72.28%,这些物理化学因素与细菌群落的多样性,组成和功能显着相关。我们的研究结果强调,淡水生态系统中的蓝细菌绽放与非胞间菌细菌菌群密切相关,这些细菌菌群在基本上在门诊水平上,具有促菌,抗菌剂和菌株作为主要分类群。据我们所知,这是第一份报告通过疏浚细菌群落和泥沙生物地球化学之间的关联来阐明逐渐减缓的蓝藻绽放机制。我们的研究结果具有重要性,表明疏浚是减轻蓝藻绽放的有效性。

著录项

  • 来源
    《Environmental research》 |2020年第9期|109799.1-109799.11|共11页
  • 作者单位

    College of Life Science South-Central University for Nationalities Wuhan 430070 PR China State Key Laboratory of Agricultural Microbiology Huazhong Agricultural University Wuhan 430070 PR China;

    College of Life Science South-Central University for Nationalities Wuhan 430070 PR China;

    College of Life Science South-Central University for Nationalities Wuhan 430070 PR China;

    College of Life Science South-Central University for Nationalities Wuhan 430070 PR China;

    College of Life Science South-Central University for Nationalities Wuhan 430070 PR China;

    College of Life Science South-Central University for Nationalities Wuhan 430070 PR China;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Bacterioplankton community; Cyanobacterial bloom; Dredging; Nutrient deficiency; Sediment biogeochemistry;

    机译:细菌血统社区;蓝藻绽放;疏浚;营养缺乏;沉积物生物园艺;

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