Interaction between C1-microorganisms and plants: contribution to the global carbon cycle and microbial survival strategies in the phyllosphere

Interaction between C1-microorganisms and plants: contribution to the global carbon cycle and microbial survival strategies in the phyllosphere
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C1-微生物与植物之间的相互作用:对全球碳循环的贡献和叶际微生物的生存策略

DOI:
10.1093/bbb/zbac176
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发表时间:
2022
期刊:
Bioscience, Biotechnology, and Biochemistry
影响因子:
--
通讯作者:
Yasuyoshi Sakai
Yasuyoshi Sakai
中科院分区:
--
文献类型:
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作者:
Hiroya Yurimoto;Yasuyoshi Sakai

文献摘要

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能够利用 C1 化合物(例如甲烷和甲醇)的 C1 微生物在自然界中普遍存在,并有助于推动两种主要温室气体(二氧化碳和甲烷)之间的全球碳循环。植物从叶子中释放 C1 化合物,并为 C1 微生物提供栖息地。在 C1 微生物中,甲基杆菌属是利用甲醇的甲基营养菌的代表,主要定植于叶际,并已知可促进植物生长。这篇综述总结了 C1-微生物和植物之间的相互作用,这些相互作用不仅影响植物产生的 C1-化合物的固定,而且还影响植物对 CO2 的固定。我们还描述了我们最近对叶际C1微生物生存策略的理解以及甲基杆菌属的应用。以提高水稻产量。
C1-microorganisms that can utilize C1-compounds, such as methane and methanol, are ubiquitous in nature, and contribute to drive the global carbon cycle between two major greenhouse gases, CO2and methane. Plants emit C1-compounds from their leaves and provide habitats for C1-microorganisms. Among C1-microorganisms,Methylobacteriumspp., representative of methanol-utilizing methylotrophic bacteria, predominantly colonize the phyllosphere and are known to promote plant growth. This review summarizes the interactions between C1-mircroorganisms and plants that affect not only the fixation of C1-compounds produced by plants but also CO2fixation by plants. We also describe our recent understanding of the survival strategy of C1-microorganisms in the phyllosphere and the application ofMethylobacteriumspp. to improve rice crop yield.