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The Role of Pseudomonas in Heterotrophic Nitrification: A Case Study on Shrimp Ponds ( Litopenaeus vannamei ) in Soc Trang Province

机译:假单胞菌在异养硝化作用中的作用:以董里府南虾虾塘(Litopenaeus vannamei)为例

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Based on a total of 6,295,650 sequences from the V3 and V4 regions (16S ribosomal RNA), the composition of the microorganism communities in the water of three Litopenaeus vannamei (Decapoda, Whiteleg shrimp; Soc Trang, Vietnam) ponds were identified. Pseudomonas (10–20.29%), Methylophilus (13.26–24.28%), and Flavobacterium (2.6–19.29%) were the most abundant genera. The total ammonia (TAN) concentration ( p = 0.025) and temperature ( p = 0.015) were significantly correlated with the relative abundance of Pseudomonas in two bacterial communities (ST1, ST4), whereas the predictive functions of microorganism communities based on 16S rRNA gene data was estimated using Phylogenetic Investigation of Communities by Reconstruction of Unobserved States (PICRUST), which showed that nitrogen metabolism was significantly negatively correlated ( p = 0.049) with TAN concentration. The abundance of Pseudomonas and nitrogen metabolism increased with a decrease in TAN concentration. The correlation between TAN concentration and the abundance of Pseudomonas was followed by the isolation, and heterotrophic nitrifying performance analysis was used to confirm our findings. Six Pseudomonas strains capable of heterotrophic nitrification were isolated from the three water samples and showed a complete reduction of 100 mg/L NH 4 Cl during a 96-h cultivation. These results indicate the potential of applying Pseudomonas in shrimp ponds for water treatment.
机译:根据来自V3和V4区域(16S核糖体RNA)的总共6,295,650个序列,确定了三个南美白对虾(十足虾,白脚虾,越南苏打河)池塘水中微生物群落的组成。假单胞菌(10–20.29%),嗜甲基菌(13.26–24.28%)和黄杆菌(2.6–19.29%)是最丰富的属。总氨(TAN)浓度(p = 0.025)和温度(p = 0.015)与两个细菌群落(ST1,ST4)中假单胞菌的相对丰度显着相关,而基于16S rRNA基因的微生物群落的预测功能数据是根据未观察到的国家重建的系统发育研究社区(PICRUST)估算的,该数据表明氮代谢与TAN浓度显着负相关(p = 0.049)。假单胞菌的丰度和氮代谢随着TAN浓度的降低而增加。分离后,进行TAN浓度与假单胞菌丰度之间的相关性,并使用异养硝化性能分析来证实我们的发现。从三个水样中分离出六种能够进行异养硝化的假单胞菌菌株,并在96小时的培养过程中显示出100 mg / L NH 4 Cl的完全还原。这些结果表明在虾池中应用假单胞菌进行水处理的潜力。

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