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豌豆根际联合固氮菌(PsJN)需要胞外多糖来赋予豌豆耐旱胁迫能力。

Exopolysaccharide is required by PsJN to confer drought-stress tolerance in pea.

作者信息

Prihatna Cahya, Yan Qing

机构信息

Plant Sciences and Plant Pathology Department, Montana State University, Bozeman, MT, United States.

出版信息

Front Microbiol. 2024 Aug 9;15:1442001. doi: 10.3389/fmicb.2024.1442001. eCollection 2024.

Abstract

PsJN is a plant symbiotic bacterium that can colonize a broad spectrum of plant hosts and frequently shows beneficial effects on plant growth. Exopolysaccharide (EPS) is known to be important in plant-bacteria interactions. Previously, we reported that EPS is required for PsJN to survive from drought stress and colonize in pea () under drought condition. However, whether EPS is necessary for PsJN to promote plant growth remains unknown. In this work, a comparative study was conducted between the wild-type PsJN and its ∆ mutant that lacks EPS to investigate the role of EPS in PsJN to confer drought-stress tolerance on pea plant. Our results showed that wild type PsJN, but not the ∆ mutant, promoted pea seed germination and seedlings growth under drought stress. Pea plants inoculated with the wild type PsJN had a higher level of drought tolerance, as shown by a better vegetative growth and enhanced nodule formation, than plants inoculated with the ∆ mutant. Moreover, EPS plays a role in the plant colonization under drought stress, because the ∆ mutant was unable to colonize pea seeds and roots as effectively as the wild type PsJN. Further, expression of the EPS biosynthesis genes in the operon of the wild type PsJN was induced by the presence of glucose. Overall, this study demonstrated that PsJN can promote pea plant growth under drought conditions and EPS is required for PsJN to confer beneficial effects to host plant.

摘要

PsJN是一种植物共生细菌,能够定殖于多种植物宿主,并经常对植物生长表现出有益影响。已知胞外多糖(EPS)在植物与细菌的相互作用中很重要。此前,我们报道过EPS是PsJN在干旱胁迫下存活以及在干旱条件下定殖于豌豆()所必需的。然而,EPS对于PsJN促进植物生长是否必要仍不清楚。在这项研究中,我们对野生型PsJN及其缺乏EPS的Δ突变体进行了比较研究,以探究EPS在PsJN赋予豌豆植株干旱胁迫耐受性方面的作用。我们的结果表明,在干旱胁迫下,野生型PsJN能促进豌豆种子萌发和幼苗生长,而Δ突变体则不能。接种野生型PsJN的豌豆植株比接种Δ突变体的植株具有更高的耐旱性,表现为营养生长更好且根瘤形成增强。此外,EPS在干旱胁迫下的植物定殖中发挥作用,因为Δ突变体不能像野生型PsJN那样有效地定殖于豌豆种子和根部。此外,野生型PsJN操纵子中EPS生物合成基因的表达受葡萄糖诱导。总体而言,本研究表明PsJN在干旱条件下可促进豌豆植株生长,且EPS是PsJN赋予宿主植物有益效应所必需的。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b3a3/11341992/34bae555283b/fmicb-15-1442001-g001.jpg

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