密集淡水水产养殖池中动力学和关键微生物循环基因之间的关系
Yifeng Yan1, Junbo Zhou1, Chenghao Du1
1Hubei Provincial Engineering Laboratory for Pond Aquaculture, Engineering Research Center of Green Development for Conventional Aquatic Biological Industry in the Yangtze River Economic Belt, College of Fisheries, Huazhong Agricultural University, Wuhan 430070, China.
Microorganisms
|February 24, 2024
概括
混合蛇头鱼池中的密集水产养殖影响了循环. 沉积物吸收酸盐,但释放氨和酸盐,特定的细菌驱动这些过程,告知控制策略.
科学领域:
- 水生微生物学 水生微生物学
- 环境科学环境科学
- 水产养殖科学 水产养殖科学
背景情况:
- 混合蛇头鱼 (Channa maculata ♀ × Channa argus ♂) 的高密度水产养殖可以创造有毒的条件.
- 了解循环对于管理水产养殖环境至关重要.
研究的目的:
- 研究混合蛇头鱼池中的迁移和转化动态.
- 分析循环微生物的丰富性,以了解代谢.
- 确定鱼类生物质和养殖阶段对循环的影响.
主要方法:
- 定量聚合酶连锁反应 (qPCR) 用于量化循环基因 (nirS,AMX,氨氧化细菌/古生物).
- 在沉积物-水界面分析无机流.
- 冗余分析以将环境因素与微生物丰富度和气流量相关联.
主要成果:
- 鱼类生物质显著影响悬浮颗粒物 (SPM) 流量.
- 沉积物主要吸收酸盐- (NO3--N),并释放- (NH4+-N) 和酸盐- (NO2--N),特别是在后期阶段.
- 尼尔S型脱剂和氨氧化细菌 (AOB) 丰富,在脱和氨氧化中可能占主导地位.
结论:
- 混合蛇头鱼池中的循环是复杂的,受鱼类生物质和养殖阶段的影响.
- 特定的微生物群体,特别是nirS型脱剂和AOB,在转化中起着关键作用.
- 这些发现为开发水产养殖中有效的管理策略提供了科学基础.
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