Homogeneous environmental selection mainly determines the denitrifying bacterial community in intensive aquaculture water

反硝化细菌 同种类的 水产养殖 选择(遗传算法) 环境科学 生态学 生物 渔业 反硝化 化学 计算机科学 氮气 热力学 有机化学 物理 人工智能
作者
Xiafei Zheng,Zhongneng Yan,Chenxi Zhao,Lin He,Zhihua Lin,Minhai Liu
出处
期刊:Frontiers in Microbiology [Frontiers Media]
卷期号:14: 1280450-1280450 被引量:8
标识
DOI:10.3389/fmicb.2023.1280450
摘要

Nitrate reduction by napA (encodes periplasmic nitrate reductase) bacteria and nitrous oxide reduction by nosZ (encodes nitrous oxide reductase) bacteria play important roles in nitrogen cycling and removal in intensive aquaculture systems. This study investigated the diversity, dynamics, drivers, and assembly mechanisms of total bacteria as well as napA and nosZ denitrifiers in intensive shrimp aquaculture ponds over a 100-day period. Alpha diversity of the total bacterial community increased significantly over time. In contrast, the alpha diversity of napA and nosZ bacteria remained relatively stable throughout the aquaculture process. The community structure changed markedly across all groups over the culture period. Total nitrogen, phosphate, total phosphorus, and silicate were identified as significant drivers of the denitrifying bacterial communities. Network analysis revealed complex co-occurrence patterns between total, napA , and nosZ bacteria which fluctuated over time. A null model approach showed that, unlike the total community dominated by stochastic factors, napA and nosZ bacteria were primarily governed by deterministic processes. The level of determinism increased with nutrient loading, suggesting the denitrifying community can be manipulated by bioaugmentation. The dominant genus Ruegeria may be a promising candidate for introducing targeted denitrifiers into aquaculture systems to improve nitrogen removal. Overall, this study provides important ecological insights into aerobic and nitrous oxide-reducing denitrifiers in intensive aquaculture, supporting strategies to optimize microbial community structure and function.
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