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Molecular biological characterization and biostimulation of ammonia-oxidizing bacteria in brackishwater aquaculture

机译:咸淡水养殖中氨氧化细菌的分子生物学特性和生物刺激

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In the present study, molecular methods based on sequencing of clone libraries have been used to provide sequence and the phylogenetic information of ammonia oxidizing bacteria (AOB). Ammonia monooxygenase (amoA) gene, which catalyzed the oxidation of ammonia to hydroxyl amine in the initial rate-determining step of nitrification was targeted for detection and characterization of AOB using gene-specific primers. The amoA genes obtained through the clone library construction are closely affiliated with Nitrosomonas sp. and other uncultured beta proteobacteria. The levels of nucleotide similarity and amino acid similarity ranged from 85-99% and 83-88%, respectively. The level of conservation of the amino acid sequences is 73%. The use of a matrix prepared from abundantly available lignocellulosic agrowaste-bagasse has successfully been demonstrated for biostimulation of AOB in aquaculture environment by supplementing nutritional requirement facilitating the biofilm mode of growth of the autotrophic consortia. Present study is useful in predictability and reliability of the treatment of ammonia in brackishwater aquaculture.
机译:在本研究中,基于克隆文库测序的分子方法已用于提供序列和氨氧化细菌(AOB)的系统发育信息。氨单加氧酶(amoA)基因在基因的硝化反应的初始速率决定步骤中催化氨氧化为羟胺,使用基因特异性引物将其用于AOB的检测和鉴定。通过克隆文库构建获得的amoA基因与亚硝化单胞菌密切相关。和其他未培养的β变形杆菌。核苷酸相似性和氨基酸相似性的水平分别为85-99%和83-88%。氨基酸序列的保守水平为73%。通过补充营养需求以促进自养菌群生长的生物膜模式,已成功证明了使用由大量可得的木质纤维素农作物蔗渣制备的基质在水产养殖环境中对AOB的生物刺激。本研究对于咸淡水养殖中氨的处理的可预测性和可靠性很有用。

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