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首页> 外文期刊>Applied and Environmental Microbiology >Seagrass (Zostera marina) Colonization Promotes the Accumulation of Diazotrophic Bacteria and Alters the Relative Abundances of Specific Bacterial Lineages Involved in Benthic Carbon and Sulfur Cycling
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Seagrass (Zostera marina) Colonization Promotes the Accumulation of Diazotrophic Bacteria and Alters the Relative Abundances of Specific Bacterial Lineages Involved in Benthic Carbon and Sulfur Cycling

机译:海草(Zostera marina)的定殖促进重氮细菌的积累并改变涉及底碳和硫循环的特定细菌谱系的相对丰度

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Seagrass colonization changes the chemistry and biogeochemical cycles mediated by microbes in coastal sediments. In this study, we molecularly characterized the diazotrophic assemblages and entire bacterial community in surface sediments of a Zostera marina-colonized coastal lagoon in northern China. Higher nitrogenase gene (nifH) copy numbers were detected in the sediments from the vegetated region than in the sediments from the unvegetated region nearby. The nifH phylotypes detected were mostly affiliated with the Geobacteraceae, Desulfobulbus, Desulfocapsa, and Pseudomonas. Redundancy analysis based on terminal restriction fragment length polymorphism analysis showed that the distribution of nifH genotypes was mostly shaped by the ratio of total organic carbon to total organic nitrogen, the concentration of cadmium in the sediments, and the pH of the overlying water. High-throughput sequencing and phylogenetic analyses of bacterial 16S rRNA genes also indicated the presence of Geobacteraceae and Desulfobulbaceae phylotypes in these samples. A comparison of these results with those of previous studies suggests the prevalence and predominance of iron(III)-reducing Geobacteraceae and sulfate-reducing Desulfobulbaceae diazotrophs in coastal sedimentary environments. Although the entire bacterial community structure was not significantly different between these two niches, Desulfococcus (Deltaproteobacteria) and Anaerolineae (Chloroflexi) presented with much higher proportions in the vegetated sediments, and Flavobacteriaceae (Bacteroidetes) occurred more frequently in the bare sediments. These data suggest that the high bioavailability of organic matter (indicated by relatively lower carbon-to-nitrogen ratios) and the less-reducing anaerobic condition in vegetated sediments may favor Desulfococcus and Anaerolineae lineages, which are potentially important populations in benthic carbon and sulfur cycling in the highly productive seagrass ecosystem.
机译:海草定殖改变了沿海沉积物中微生物介导的化学和生物地球化学循环。在这项研究中,我们在分子筛上表征了中国北方带状疱疹(Zostera marina)殖民化的沿海泻湖表面沉积物中的重氮营养组合和整个细菌群落。植被区沉积物中的氮酶基因(nifH)拷贝数高于附近无植被区的沉积物中。检测到的nifH系统型主要与Geobacteraceae,Desulfobulbus,Desulfocapsa和Pseudomonas有关。基于末端限制性片段长度多态性分析的冗余分析表明,nifH基因型的分布主要由总有机碳与总有机氮的比率,沉积物中镉的浓度以及上覆水的pH值决定。细菌16S rRNA基因的高通量测序和系统发育分析还表明,这些样品中存在土生细菌科和脱硫球形科系统型。将这些结果与以前的研究结果进行比较表明,在沿海沉积环境中,还原铁(III)的土杆菌科和还原硫酸盐的脱硫鳞茎的重氮菌的流行和优势。尽管这两个生态位之间的整个细菌群落结构没有显着差异,但脱硫球菌(Deltaproteobacteria)和厌氧菌(Anaerolineae)(Chloroflexi)在植被沉积物中的比例要高得多,而黄杆菌科(Bacteroidetes)在裸露的沉积物中的发生频率更高。这些数据表明,有机质的高生物利用度(通过相对较低的碳氮比表示)和植被沉积物中的厌氧条件减少程度较低,可能有利于脱硫球菌和厌氧菌谱系,这是底栖碳和硫循环中潜在的重要种群在高产的海草生态系统中

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