代谢的多功能性使得硫氧化剂能够主导地下水中的初级生产
Beatrix M Heinze1, Kirsten Küsel2, Nico Jehmlich3
1Aquatic Geomicrobiology, Institute of Biodiversity, Friedrich Schiller University Jena, Dornburger Str. 159, Jena 07743, Germany.
Water research
|August 19, 2023
概括
硫氧化细菌 (SOB) 是地下水中主要的初级生产者,利用不同的代谢策略来固定碳. 这些微生物适应能源限制,对地下水生态系统做出了重大贡献.
科学领域:
- 微生物生态学 微生物生态学
- 生物地质化学生物地质化学
- 环境微生物学 环境微生物学
背景情况:
- 地下水生态系统依赖于初级生产,微生物固定二氧化碳 (CO2).
- 在这个过程中,特定的化学石化自营菌 (如硫氧化细菌 (SOB)) 的作用及其适应性是不太了解的.
研究的目的:
- 调查SOB对无氧地下水中初级生产的贡献.
- 为了确定SOB的适应战略,以应对环境条件.
主要方法:
- 用减少的硫刺激无氧地下水微观世界.
- 基因组解析的元蛋白组学和13CO2稳定同位素探测的应用.
- 在6周内分析微生物群落组成和碳流量.
主要成果:
- 由二氧化碳衍生的碳迅速占据了微生物生物质的主导地位 (90%在7天内).
- 活跃的自营养素,主要是SOB,显示出一致的13C结合,主导了社区.
- SOB展示了各种策略,包括储存硫,混合变异,脱和H2氧化,用于获取能源和碳.
结论:
- SOB是地下水初级生产的重要贡献者,特别是在地质上营养有限的环境中.
- 代谢的多功能性,包括硫储存和混合性,使SOB能够壮成长,并推动碳固定.
- 这些发现强调了SOB在水生息地中的生态重要性,以及它们在硫驱动初级生产中的作用.
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