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Community composition of marine and brackish water ammonia-oxidizing consortia developed for aquaculture application

机译:海洋和咸水的社区构成氨氧化联盟为水产养殖应用开发

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摘要

To mitigate the toxicity of ammonia in aquaculture systems, marine and brackish water ammonia-oxidizing bacterial consortia have been developed and are used for activation of nitrifying bioreactors integrated to recirculating aquaculture systems. To shed more light on to these biological entities, diversity of both the consortia were analyzed based on random cloning of 16S rRNA gene and ammonia-oxidizing bacterial specific amoA gene sequences. The dendrograms of representative clones on the basis of amplified ribosomal DNA restriction analysis generated 22 and 19 clusters for marine and brackish water nitrifying consortia, respectively. Phylogenetic analysis demonstrated the presence of various autotrophic nitrifiers belonging to alpha-, beta- and gamma-Proteobacteria, anaerobic ammonia oxidizers, heterotrophic denitrifiers, Bacteroidetes, and Actinobacteria. Distribution patterns of the organisms within the two consortia were determined using the software Geneious and diversity indices were investigated using Mega 5.0, VITCOMIC and Primer 7. The abundance of ammonia oxidizers was found in the order of 2.21 +/- 0.25 x 10(9) copies/g wet weight of marine consortium and 6.20 +/- 0.23 x 10(7) copies/g of brackish water consortium. Besides, marine ammonia-oxidizing consortium exhibited higher mean population diversity and Shannon Wiener diversity than the brackish water counterparts.
机译:为了减轻水产养殖系统中氨的毒性,已经开发了海洋和咸水氨氧化细菌结合,用于激活整合到循环水产养殖系统的硝化生物反应器。为了使这些生物实体更轻,基于16S rRNA基因的随机克隆和氨氧化细菌特异性AmOA基因序列分析了分析了联盟的多样性。基于扩增的核糖体DNA限制性分析的代表性克隆的树状图分别产生了22和19个用于海洋和咸水硝化子系统的群体。系统发育分析证明了属于α,β-和γ-植物,厌氧氨氧化剂,异养脱氮剂,菌和抗菌菌的各种自养氮杂物的存在。使用Mega 5.0,vitcad和Primer 7研究了两种联盟内有机体内生物体的分布模式。vitcadic和Primer 7进行了研究。氨氧化剂的丰度为2.21 +/- 0.25 x 10(9)副本/ g湿重量的海洋财团和6.20 +/- 0.23 x 10(7)拷贝/ g咸水混合。此外,海洋氨氧化联盟表现出比咸水同行更高的均值均值多样性和Shannon Wiener多样性。

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