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

Взаимодействие C1-микроорганизмов и растений: вклад в глобальный углеродный цикл и стратегии выживания микроорганизмов в филлосфере
Hiroya Yurimoto, Yasuyoshi Sakai
2022-11-11

C1-compounds (methane, methanol)C1-microorganismsMethylobacteriumphyllosphereplant-microbe interactions
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, CO2 and methane. Plants emit C1-compounds from their leaves and provide habitats for C1-microorganisms. Among C1-microorganisms, Methylobacterium spp., 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 CO2 fixation by plants. We also describe our recent understanding of the survival strategy of C1-microorganisms in the phyllosphere and the application of Methylobacterium spp. to improve rice crop yield.
1
C1-microorganisms utilizing C1-compounds (methane, methanol) are ubiquitous and influence the global carbon cycle between CO2 and methane.
2
Interactions between C1-microorganisms and plants affect both fixation of plant-produced C1-compounds and CO2 fixation by plants.
3
Methylobacterium spp., methanol-utilizing methylotrophic bacteria, predominantly colonize the phyllosphere and are known to promote plant growth.
4
Plants emit C1-compounds from leaves and provide habitats that support colonization by C1-microorganisms in the phyllosphere.
5
Recent insights describe survival strategies of C1-microorganisms in the phyllosphere and demonstrate application of Methylobacterium spp. to improve rice crop yield.

C1-microorganisms (especially Methylobacterium spp.) inhabiting the plant phyllosphere

Their interactions with plants affecting C1-compound utilization and fixation, contribution to the global carbon cycle (CO2–methane balance), survival strategies in the phyllosphere, and effects on plant growth/rice yield

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2022-11-11
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Hiroya Yurimoto
Yasuyoshi Sakai
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