空间结构的细菌相互作用改变了藻类向细菌的碳流
Hyungseok Kim1, Vanessa L Brisson2, John R Casey2
1Department of Mechanical Engineering, Massachusetts Institute of Technology, Cambridge, MA, United States.
The ISME journal
|May 17, 2025
概括
细菌相互作用显著改变了藻类衍生碳的处理方式. 竞争性细菌减少了碳吸收,而促进性细菌增加了碳吸收,影响了海洋碳循环.
科学领域:
- 海洋微生物生态学
- 生物地质化学循环 生物地质化学循环
- 植物浮游生物-细菌相互作用
背景情况:
- 植物浮游生物对全球碳固定至关重要,微生物食物网控制碳命运.
- 缺乏对异质型细菌相互作用如何影响这一过程的机制性理解.
研究的目的:
- 研究细菌-细菌相互作用如何影响光合作用固定碳的重矿化和生物质结合.
- 量化细菌竞争和促进对藻类碳吸收的影响.
主要方法:
- 利用了在藻液上生长的细菌分离物.
- 使用外代谢学和基因组规模代谢建模来评估资源竞争.
- 在定制培养系统中使用单细胞同位素追踪来追踪碳命运.
主要成果:
- 配对的细菌相互作用显示出比预测更多的益处,其中30%表现出促进作用.
- 具有高度竞争力的初级细菌菌株在单细胞水平上减少了 51% 的二级菌株碳吸收.
- 与竞争性菌株相比,促进性初级菌株的总藻类衍生碳同化增加了7.6倍.
结论:
- 细菌相互作用的范围,从竞争性到促进性,直接影响藻类的碳吸收.
- 细菌社区结构和相互作用是海洋碳循环的关键调节者.
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