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超越粉色:揭开兼性甲基营养型粉色色素菌的秘密

Beyond the pink: uncovering the secrets of pink pigmented facultative methylotrophs.

作者信息

Koshy Nayana Grace, Rajan S Anu, Anith K N, Chitra N, Soumya V I, Scaria Thanku Mariam, Beena R

机构信息

Department of Microbiology, College of Agriculture, Kerala Agricultural University, Vellayani, Thiruvananthapuram, Kerala, 695522, India.

Department of Plant Physiology, College of Agriculture, Kerala Agricultural University, Vellayani, Thiruvananthapuram, Kerala, 695522, India.

出版信息

Arch Microbiol. 2025 Mar 6;207(4):80. doi: 10.1007/s00203-025-04280-9.

DOI:10.1007/s00203-025-04280-9
PMID:40047941
Abstract

Pink Pigmented Facultative Methylotrophs (PPFMs) belong to a diverse group of methylotrophic bacteria predominantly in the genus Methylobacterium, and are known for their beneficial interactions with plants. They can use single-carbon compounds, such as methanol, formate, formaldehyde and methyl amines as well as various multi-carbon substrates as sources of carbon and energy. PPFMs are characterized by their distinctive pink pigmentation and are commonly found in the phyllosphere, where they play a major role in promoting plant growth through various mechanisms; These mechanisms include the production of phytohormones, enhancing nutrient acquisition, mitigating abiotic stresses and providing biocontrol of phytopathogens. Due to their eco-friendly nature PPFMs are viewed as promising alternatives to synthetic fertilizers and pesticides in green agriculture. Furthermore, the ecological significance of PPFMs extends beyond their direct interactions with host plants. They also contribute to the resilience of ecosystems by participating in the cycling of nutrients in the environment. As the importance of the plant microbiome in agriculture becomes more recognized, the potential of PPFMs to support sustainable farming practices and contribute to environmental health is increasingly evident. This underscores their relevance in addressing global agricultural challenges.

摘要

粉红色兼性甲基营养菌(PPFMs)属于甲基营养细菌的一个多样化群体,主要存在于甲基杆菌属中,以其与植物的有益相互作用而闻名。它们可以利用单碳化合物,如甲醇、甲酸、甲醛和甲胺,以及各种多碳底物作为碳源和能源。PPFMs的特征是其独特的粉红色色素沉着,常见于叶际,在那里它们通过多种机制在促进植物生长方面发挥重要作用;这些机制包括植物激素的产生、增强养分获取、减轻非生物胁迫以及对植物病原体进行生物防治。由于其生态友好的性质,PPFMs被视为绿色农业中合成肥料和农药的有前途的替代品。此外,PPFMs的生态意义超出了它们与宿主植物的直接相互作用。它们还通过参与环境中的养分循环,为生态系统的恢复力做出贡献。随着植物微生物群在农业中的重要性得到更多认可,PPFMs支持可持续农业实践和促进环境健康的潜力越来越明显。这突出了它们在应对全球农业挑战方面的相关性。

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本文引用的文献

1
Methanol Dehydrogenases as a Key Biocatalysts for Synthetic Methylotrophy.甲醇脱氢酶作为合成甲基营养的关键生物催化剂。
Front Bioeng Biotechnol. 2021 Dec 24;9:787791. doi: 10.3389/fbioe.2021.787791. eCollection 2021.
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Comprehensive Comparative Genomics and Phenotyping of Species.物种的综合比较基因组学与表型分析
Front Microbiol. 2021 Oct 6;12:740610. doi: 10.3389/fmicb.2021.740610. eCollection 2021.
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Phyllosphere microbiome: Diversity and functions.叶际微生物组:多样性与功能。
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Physiology of Methylotrophs Living in the Phyllosphere.生活在叶际的甲基营养菌的生理学
Microorganisms. 2021 Apr 12;9(4):809. doi: 10.3390/microorganisms9040809.
5
Modes of Action of Microbial Biocontrol in the Phyllosphere.叶际微生物生物防治的作用模式
Front Microbiol. 2020 Jul 14;11:1619. doi: 10.3389/fmicb.2020.01619. eCollection 2020.
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A brief from the leaf: latest research to inform our understanding of the phyllosphere microbiome.叶片简报:最新研究成果增进我们对叶片微生物组的理解。
Curr Opin Microbiol. 2019 Jun;49:41-49. doi: 10.1016/j.mib.2019.10.002. Epub 2019 Nov 7.
7
Phyllosphere-associated Methylobacterium: a potential biostimulant for ginger (Zingiber officinale Rosc.) cultivation.叶际相关甲基杆菌:生姜(Zingiber officinale Rosc.)栽培的一种有潜力的生物刺激素。
Arch Microbiol. 2020 Mar;202(2):369-375. doi: 10.1007/s00203-019-01753-6. Epub 2019 Oct 30.
8
Review of the genus Methylobacterium and closely related organisms: a proposal that some Methylobacterium species be reclassified into a new genus, Methylorubrum gen. nov.甲基杆菌属及其近缘菌的研究综述:建议将一些甲基杆菌种归入一个新属,即甲基红润杆菌属,新属名 Methylorubrum gen. nov.
Int J Syst Evol Microbiol. 2018 Sep;68(9):2727-2748. doi: 10.1099/ijsem.0.002856. Epub 2018 Jul 19.
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Interactive effect of gibberellic acid and NPK fertilizer combinations on ramie yield and bast fibre quality.赤霉素和 NPK 肥料组合对苎麻产量和韧皮纤维品质的互作效应。
Sci Rep. 2017 Sep 6;7(1):10647. doi: 10.1038/s41598-017-09584-5.
10
Abiotic Stress Responses and Microbe-Mediated Mitigation in Plants: The Omics Strategies.植物中的非生物胁迫响应与微生物介导的缓解作用:组学策略
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