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The combination use of Candida tropicalis HH8 and Pseudomonas stutzeri LZX301 on nitrogen removal, biofloc formation and microbial communities in aquaculture

机译:CandidaTropicalis HH8和PseudomonasStutzeri LZX301对水产养殖中的氮去除,生物氟聚酯和微生物群落的组合使用

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摘要

Different effects of a marine yeast strain Candida tropicalis HH8 and an aerobic denitrifying bacteria strain Pseudomonas stutzeri LZX301 on water properties especially nitrogen removal, biofloc formation and microbial communities were investigated. Both the strain HH8 and LZX301 removed inorganic nitrogen efficiently and participated biofloc formation. The combination use of the two strains is available in aquaculture due to their specific biochemical characteristics that much of nitrogen (44.87%) was converted to organic nitrogen by assimilation and bioflocs formed rapidly were more compact in the presence of the strain HH8 while much of nitrogen (59.33%) was removed by denitrification with the strain LZX301 added. Moreover, the phytoplankton stock (chlorophyll-a) was controlled at an appropriate level with the strain HH8 added. Microbial communities of biofloc varied largely and the relative abundance of Candida and Pseudomonas decreased obviously at the end of the trial. As a result, Candida tropicalis HH8 and Pseudomonas stutzeri LZX301 could be excellent participants in biofloc technology due to high-efficient nitrogen removal and fast-rate bioflocs formation.
机译:对水性性质尤其是氮去除,生物氟聚酯和微生物社区的不同效果,海洋酵母菌素念珠菌HH8和一种有氧碳酸化菌菌株Pseudomonas Stutzeri LZX301。菌株HH8和LZX301均有效地除去无机氮和参与生物氟氯化形成。由于其特定的生化特性,两种菌株的组合使用是在水上养殖中,通过同化和在菌株HH8存在下,在菌株HH8的存在下,将大部分氮气(44.87%)转化为有机氮(44.87%),在菌株HH8的存在下迅速形成的生物氟化液相传通过添加菌株LZX301,通过脱氮除去(59.33%)。此外,用菌株HH8加入浮游植物股票(叶绿素-A)以适当的水平控制。生物氟化的微生物群落在很大程度上不同,在试验结束时,念珠菌和假单胞菌的相对丰度明显下降。因此,由于高效的氮气去除和快速生物植物形成,CandidaTropicalis HH8和PseudomonasStutzeri LZX301可以成为生物反应技术的优秀参与者。

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