由流域微生物驱动的碳和循环的相互作用
Guijia Sun1,2, Qiang Zou2,3, Bing Wang1,2
1School of Environment and Resources, Southwest University of Science and Technology, Mianyang, China.
Frontiers in microbiology
|February 5, 2026
概括
流域中的微生物群落对于碳和循环至关重要. 了解环境变化如何影响这些微生物及其功能,包括抗生素耐药性基因 (ARG),对于预测生态系统健康至关重要.
科学领域:
- 环境微生物学环境微生物学
- 生物地质化学生物地质化学
- 生态系统生态学的生态学.
背景情况:
- 微生物是流域生物地球化学循环 (碳和) 的关键驱动力.
- 高通量测序和监测揭示了全球变化下的微生物社区动态.
- 水文连接,氧化还原,温度和营养物质显著影响微生物代谢.
研究的目的:
- 综合最近关于水生生态系统中塑造微生物代谢的因素的发现.
- 概述抗生素耐药性基因 (ARG) 的传播和功能影响.
- 确定微生物生态学和生物地质化学方面的知识差距.
主要方法:
- 综述了最近的一些综合多组学 (元基因组学,元转录组学) 的研究.
- 生态和生物地球化学建模.
- 环境监测数据的综合.
主要成果:
- 液态连接,氧化还原梯度,温度和营养负载是微生物新陈代谢的主要调节者.
- 抗生素耐药性基因 (ARG) 通过生态系统传播,影响微生物的功能.
- 多组学和建模为量化微生物对碳捕集和循环的贡献提供了新的途径.
结论:
- 在气候变化下的ARG驱动的社区转移和微生物环境相互作用方面存在重大知识差距.
- 需要跨度,数据集成的框架来预测流域生物地球化学循环的微生物调节.
- 需要进一步的研究,以了解微生物对未来环境场景的反应.
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