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Community metagenomic assembly reveals microbes that contribute to the vertical stratification of nitrogen cycling in an aquaculture pond

机译:社区偏心组件揭示了微生物,这些微生物有助于水产养殖池中循环循环的垂直分层

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摘要

The identities and functional capacities of the microbial populations within surface water (SW), bottom water (BW), surface sediment (SS) and deep sediment (DS) samples from a typical grass carp (Ctenopharyngodon idellus) culturing pond in central China were explored using metagenomics. In total, the community structure and microbial processes of the water columns was distinct from that of the SS and DS layers. Alphaproteobacteria, Actinobacteria, Cyanobacteria and Planctomycetes were abundant in the water, while Deltaproteobacteria, Gammaproteobacteria, Euryarchaeota (Archaea) and Nitrospirae were more abundant in the sediment (P < .05). The functional potential and microorganisms responsible for the N nutrient cycles were also reconstructed in silico. The high functional potential for N assimilation, protein synthesis and cell proliferation in pond water should be responsible for low ammonia concentration detected. Ammonia oxidation functional genes were present in very low abundances, and were mostly detected in the water columns and related to Nitrosomonas (100%). Denitrification were observed mostly in SS and the main taxon involved was Rhodocyclales. The potential for N fixation (nif genes) and dissimilatory nitrate reduction to ammonium was also observed mostly in sediment, which is a disadvantage for ammonia reduction in the pond ecosystem. Overall, these results offer a more detailed perspective on the microbial functional ecology of the aquaculture pond.
机译:探索了地表水(SW),底部水(BW),表面沉积物(SS)和深沉积物(DS)样本的微生物群体的身份和功能能力来自中国中部培养池塘的典型草鲤(Ctenopharyngodon Idellus)培养使用Metagenomics。总共,水柱的群落结构和微生物过程与SS和DS层不同。 αproteobacteria,actinobacteria,cyanobacteria和pancectomycetes在水中丰富,而Deltaproteobacteria,γRoteobacteria,euryarchaeoota(archaea)和氮气在沉淀物中更加丰富(p <.05)。在硅中还重建了负责N营养循环的功能势和微生物。池水中N同化,蛋白质合成和细胞增殖的高功能潜力应负责检测到的低氨浓度。氨氧化功能基因存在于非常低的丰度中,并且大致在水柱中检测到亚硝基菌(100%)。在SS中大多观察到脱氮,所涉及的主要分类群是菱曲。在沉积物中也观察到N固定(NIF基因)和硝酸盐的硝酸盐还原对铵的可能性,这是池塘生态系统的氨的缺点。总体而言,这些结果提供了对水产养殖池的微生物功能生态学提供更详细的视角。

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