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Fish growth enhances microbial sulfur cycling in aquaculture pond sediments

机译:鱼生长增强了水产养殖池沉积物中的微生物硫循环

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摘要

Microbial sulfate reduction and sulfur oxidation are vital processes to enhance organic matter degradation in sediments. However, the diversity and composition of sulfate‐reducing bacteria (SRB) and sulfur‐oxidizing bacteria (SOB) and their environmental driving factors are still poorly understood in aquaculture ponds, which received mounting of organic matter. In this study, bacterial communities, SRB and SOB from sediments of aquaculture ponds with different sizes of grass carp ( ) were analysed using high‐throughput sequencing and quantitative real‐time PCR (qPCR). The results indicated that microbial communities in aquaculture pond sediments of large juvenile fish showed the highest richness and abundance of SRB and SOB, potentially further enhancing microbial sulfur cycling. Specifically, SRB were dominated by and , whereas SOB were dominated by and . Although large juvenile fish ponds had relatively lower concentrations of sulfur compounds (i.e. total sulfur, acid‐volatile sulfide and elemental sulfur) than those of larval fish ponds, more abundant SRB and SOB were found in the large juvenile fish ponds. Further redundancy analysis (RDA) and linear regression indicated that sulfur compounds and sediment suspension are the major environmental factors shaping the abundance and community structure of SRB and SOB in aquaculture pond sediments. Findings of this study expand our current understanding of microbial driving sulfur cycling in aquaculture ecosystems and also provide novel insights for ecological and green aquaculture managements.
机译:微生物硫酸盐还原和硫氧化是增强沉积物中有机质降解的重要过程。然而,在水产养殖池塘养殖池塘中仍然明显地理解,硫酸盐还原细菌(SRB)和硫氧化细菌(SRB)及其环境驾驶因子的多样性和组成仍然不知所决。在本研究中,使用高通量测序和定量实时PCR(QPCR)分析了从具有不同尺寸的草鲤()的水产养殖池沉积物的细菌群落,SRB和SOB。结果表明,大幼年鱼水产养殖池塘沉积物中的微生物群落显示出最高的SRB和呜咽和丰富,可能进一步增强微生物硫循环。具体而言,SRB被占主导地位,而呜咽以占据索引。虽然大少年鱼塘浓度相对较低的硫化合物(即总硫,酸 - 挥发性硫化物和元素硫),但在大少年鱼塘中发现了更多丰富的SRB和呜咽。进一步的冗余分析(RDA)和线性回归表明,硫化合物和沉积物悬浮液是塑造SRB和SOB在水产养殖池沉积物中的丰度和群落结构的主要环境因素。本研究的调查结果扩大了我们目前对水产养殖生态系统中的微生物驾驶硫循环的了解,并为生态和绿色水产养殖管理提供了新颖的见解。

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