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首页> 外文期刊>Microbes and Environments >Seasonal Dynamics of Anammox Bacteria in Estuarial Sediment of the Mai Po Nature Reserve Revealed by Analyzing the 16S rRNA and Hydrazine Oxidoreductase (hzo) Genes
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Seasonal Dynamics of Anammox Bacteria in Estuarial Sediment of the Mai Po Nature Reserve Revealed by Analyzing the 16S rRNA and Hydrazine Oxidoreductase (hzo) Genes

机译:通过分析16S rRNA和肼氧化还原酶(hzo)基因揭示的米埔自然保护区河口沉积物中厌氧细菌的季节性动态

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The community and population dynamics of anammox bacteria in summer (wet) and winter (dry) seasons in estuarial mudflat sediment of the Mai Po Nature Reserve were investigated by 16S rRNA and hydrazine oxidoreductase ( hzo ) genes. 16S rRNA phylogenetic diversity showed that sequences related to ‘Kuenenia’ anammox bacteria were presented in summer but not winter while ‘Scalindua’ anammox bacteria occurred in both seasons and could be divided into six different clusters. Compared to the 16S rRNA genes, the hzo genes revealed a relatively uniform seasonal diversity, with sequences relating to ‘Scalindua’, ‘Anammoxoglobus’, and planctomycete KSU-1 found in both seasons. The seasonal specific bacterial groups and diversity based on the 16S rRNA and hzo genes indicated strong seasonal community structures in estuary sediment of this site. Furthermore, the higher abundance of hzo genes in summer than winter indicates clear seasonal population dynamics. Combining the physicochemical characteristics of estuary sediment in the two seasons and their correlations with anammox bacteria community structure, we proposed the strong seasonal dynamics in estuary sediment of Mai Po to be due to the anthropogenic and terrestrial inputs, especially in summer, which brings in freshwater anammox bacteria, such as ‘Kuenenia’, interacting with the coastal marine anammox bacteria ‘Scalindua’.
机译:利用16S rRNA和肼氧化还原酶(hzo)基因研究了米埔自然保护区河口滩涂沉积物中夏季(湿)和冬季(干燥)的厌氧细菌的群落和种群动态。 16S rRNA的系统发育多样性表明,与“ Kuenenia”厌氧细菌有关的序列在夏季出现,而在冬季则不出现,而“ Scalindua”厌氧细菌则在两个季节出现,可分为六个不同的簇。与16S rRNA基因相比,hzo基因显示出相对一致的季节性多样性,在两个季节都发现了与“斯卡林达亚”,“厌氧球菌”和浮游菌KSU-1有关的序列。基于16S rRNA和hzo基因的季节性特定细菌群和多样性表明该部位的河口沉积物具有较强的季节性群落结构。此外,夏季hzo基因的丰度高于冬季,这表明季节性种群动态清晰。结合两个季节河口沉积物的理化特征及其与厌氧细菌群落结构的相关性,我们提出了米埔河口沉积物的强烈季节动态是由于人为和陆地投入,特别是在夏季,这带来了淡水厌氧细菌,例如“ Kuenenia”,与沿海海洋厌氧细菌“ Scalindua”相互作用。

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