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红树林沉积物微生物组:中国云霄红树林国家级自然保护区中适应微生物组合及其途径的生物地球化学过程。

Mangrove Sediment Microbiome: Adaptive Microbial Assemblages and Their Routed Biogeochemical Processes in Yunxiao Mangrove National Nature Reserve, China.

机构信息

Key Laboratory of the Ministry of Education for Coastal and Wetland Ecosystems, School of Life Sciences, Xiamen University, Xiamen, 361102, China.

State Key Laboratory of Marine Environmental Sciences, Xiamen University, Xiamen, 361102, China.

出版信息

Microb Ecol. 2019 Jul;78(1):57-69. doi: 10.1007/s00248-018-1261-6. Epub 2018 Oct 4.

Abstract

Microorganisms play important roles in mangrove ecosystems. However, we know little about the ecological implications of mangrove microbiomes for high productivity and the efficient circulation of elements in mangrove ecosystems. Here, we focused on mangrove sediments located at the Yunxiao National Mangrove Reserve in southeast China, uncovering the mangrove microbiome using the 16S rRNA gene and shotgun metagenome sequencing approaches. Physicochemical assays characterized the Yunxiao mangrove sediments as carbon (C)-rich, sulfur (S)-rich, and nitrogen (N)-limited environment. Then phylogenetic analysis profiling a distinctive microbiome with an unexpected high frequency of Chloroflexi and Nitrospirae appeared to be an adaptive characteristic of microbial structure in S-rich habitat. Metagenome sequencing analysis revealed that the metabolic pathways of N and S cycling at the community-level were routed through ammonification and dissimilatory nitrate reduction to ammonium for N conservation in this N-limited habitat, and dissimilatory sulfate reduction along with polysulfide formation for generating bioavailable S resource avoiding the biotoxicity of sulfide in mangrove sediments. In addition, methane metabolism acted as a bridge to connect C cycling to N and S cycling. Further identification of possible biogeochemical linkers suggested Syntrophobacter, Sulfurovum, Nitrospira, and Anaerolinea potentially drive the coupling of C, N, and S cycling. These results highlighting the adaptive routed metabolism flow, a previously undescribed property of mangrove sediment microbiome, appears to be a defining characteristic of this habitat and may significantly contribute to the high productivity of mangrove ecosystems, which could be used as indicators for the health and biodiversity of mangrove ecosystems.

摘要

微生物在红树林生态系统中发挥着重要作用。然而,我们对红树林微生物组对高生产力和红树林生态系统中元素有效循环的生态影响知之甚少。在这里,我们专注于位于中国东南云霄国家红树林保护区的红树林沉积物,使用 16S rRNA 基因和鸟枪法宏基因组测序方法揭示了红树林微生物组。理化分析表明,云霄红树林沉积物富含碳(C)、硫(S)和氮(N)限制。然后,系统发育分析表明,一个具有意想不到的高频率的绿弯菌门和硝化螺旋菌门的独特微生物组似乎是 S 丰富生境中微生物结构的适应性特征。宏基因组测序分析表明,在 N 限制生境中,通过氨化作用和异化硝酸盐还原为铵来保存 N 的社区水平的 N 和 S 循环代谢途径,以及通过异化硫酸盐还原和多硫化物形成来产生生物可利用的 S 资源,从而避免了红树林沉积物中硫化物的生物毒性。此外,甲烷代谢作为连接 C 循环与 N 和 S 循环的桥梁。进一步鉴定可能的生物地球化学连接体表明,互营菌属、硫杆菌属、硝化螺旋菌属和产甲烷菌属可能驱动 C、N 和 S 循环的耦合。这些结果突出了适应路由代谢流,这是红树林沉积物微生物组以前未描述的特性,似乎是这种生境的一个决定性特征,并可能对红树林生态系统的高生产力做出重大贡献,这可以作为红树林生态系统健康和生物多样性的指标。

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