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马铃薯山药叶际外共生菌sp. Msb3是番茄的一种强效生长促进剂。

The Potato Yam Phyllosphere Ectosymbiont sp. Msb3 Is a Potent Growth Promotor in Tomato.

作者信息

Herpell Johannes B, Schindler Florian, Bejtović Mersad, Fragner Lena, Diallo Bocar, Bellaire Anke, Kublik Susanne, Foesel Bärbel U, Gschwendtner Silvia, Kerou Melina, Schloter Michael, Weckwerth Wolfram

机构信息

Molecular Systems Biology (MOSYS), Department of Functional and Evolutionary Ecology, University of Vienna, Vienna, Austria.

Vienna Metabolomics Center (VIME), University of Vienna, Vienna, Austria.

出版信息

Front Microbiol. 2020 Apr 21;11:581. doi: 10.3389/fmicb.2020.00581. eCollection 2020.

Abstract

The genus includes a variety of species with promising features for sustainable biotechnological solutions in agriculture through increasing crop productivity. Here, we present a novel isolate, a permanent and predominant member of the (yam family, ) phyllosphere, making up to 25% of the microbial community on leaf acumens. The 8.5 Mbp genome of isolate Msb3 encodes an unprecedented combination of features mediating a beneficial plant-associated lifestyle, including biological nitrogen fixation (BNF), plant hormone regulation, detoxification of various xenobiotics, degradation of aromatic compounds and multiple protein secretion systems including both T3SS and T6SS. The isolate exhibits significant growth promotion when applied to agriculturally important plants such as tomato, by increasing the total dry biomass by up to 40%. The open question about the "beneficial" nature of this strain led us to investigate ecological and generic boundaries in . In a refined phylogeny including 279 isolates strain Msb3 clusters within Clade I , which also includes few opportunistic strains that can potentially act as pathogens, as revealed by our ecological meta-data analysis. In fact, we demonstrate that all genera originating from the "plant beneficial and environmental" (PBE) species cluster include opportunists. This indicates that further functional examinations are needed before safe application of these strains in sustainable agricultural settings can be assured.

摘要

该属包含多种具有潜在特性的物种,有望通过提高作物产量为农业可持续生物技术解决方案做出贡献。在此,我们展示了一种新的分离株,它是薯蓣科叶际的一种常驻且优势成员,在叶尖的微生物群落中占比达25%。分离株Msb3的850万碱基对基因组编码了一系列前所未有的特性组合,这些特性介导了一种有益的植物相关生活方式,包括生物固氮(BNF)、植物激素调节、多种异源生物解毒、芳香族化合物降解以及包括III型分泌系统(T3SS)和VI型分泌系统(T6SS)在内的多种蛋白质分泌系统。当将该分离株应用于番茄等重要农业植物时,它能使总干生物量增加高达40%,表现出显著的促生长作用。关于该菌株“有益”性质的开放性问题促使我们研究薯蓣科中的生态和类属界限。在一个包含279株薯蓣科分离株的精细系统发育树中,菌株Msb3聚集在进化枝I内,我们的生态元数据分析表明,该进化枝还包括一些可能作为病原体的机会性菌株。事实上,我们证明了所有源自“植物有益和环境”(PBE)薯蓣科物种簇的属都包含机会性菌株。这表明在确保这些菌株能够安全应用于可持续农业环境之前,还需要进行进一步的功能检测。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a0e1/7186400/2af503910704/fmicb-11-00581-g001.jpg

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