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代谢物谱分析揭示了植物对应用促进植物生长的内生细菌的复杂反应。

Metabolite profiling reveals a complex response of plants to application of plant growth-promoting endophytic bacteria.

作者信息

Mahmood Ahmad, Kataoka Ryota

机构信息

Department of Environmental Sciences, Faculty of Life & Environmental Sciences, University of Yamanashi, Takeda, Kofu, Yamanashi, Japan.

Department of Environmental Sciences, Faculty of Life & Environmental Sciences, University of Yamanashi, Takeda, Kofu, Yamanashi, Japan.

出版信息

Microbiol Res. 2020 Apr;234:126421. doi: 10.1016/j.micres.2020.126421. Epub 2020 Jan 25.

Abstract

Endophytic bacteria have been explored for their role in plant growth promotion, however, not much has been explored in cucumber. The metabolomic response of plants to application of such microbes also remains largely unknown. Thus, we investigated the application of endophytic bacteria to cucumber to infer their role in plant growth promotion and document metabolome response. The lowest healthy leaf-stalks were sampled from four differently sourced cucumber plants, and endophytic bacteria were isolated after surface disinfection. Initial plant growth-promoting (PGP) screening was performed to identify PGP strains out of numerous isolates, and five strains (Strains 4=Curtobacterium spp., 72=Brevibacillus spp., 167=Paenibacillus spp., 193=Bacillus spp., and 227=Microbacterium spp.) were selected based on their contribution to root growth compared with the control. The selected strains were further evaluated in pot experiments, axenic PGP trait assays, and metabolomic analysis. Results revealed that the selected isolates possessed different qualitative characteristics among indole acetic acid, siderophore production, phosphate solubilization, and 1-aminocyclopropane-1-carboxylate (ACC)-deaminase and nifH genes, and all isolates significantly enhanced plant growth in both pot experiments compared with the uninoculated control and fertilizer control. Metabolomic profiling revealed that both strains affected the plant metabolomes compared with the uninoculated control. Around 50 % of the metabolites explored had higher concentrations in either or both bacteria-applied plants compared with the uninoculated control. Differences were observed in both strains' regulation of metabolites, although both enhanced root growth near equally. Overall, endophytic bacteria significantly enhanced plant growth and tended to produce or induce release of certain metabolites within the plant endosphere.

摘要

人们已经对内生细菌在促进植物生长方面的作用进行了探索,然而,在黄瓜方面的研究还不多。植物对这类微生物应用的代谢组学反应在很大程度上也仍然未知。因此,我们研究了内生细菌在黄瓜上的应用,以推断它们在促进植物生长中的作用,并记录代谢组反应。从四种不同来源的黄瓜植株上采集最低的健康叶柄,表面消毒后分离内生细菌。进行了初步的植物促生(PGP)筛选,以从众多分离物中鉴定出PGP菌株,基于与对照相比它们对根系生长的贡献,选择了五个菌株(菌株4 = 短小杆菌属,72 = 短芽孢杆菌属,167 = 类芽孢杆菌属,193 = 芽孢杆菌属,227 = 微杆菌属)。在盆栽试验、无菌PGP性状测定和代谢组学分析中对所选菌株进行了进一步评估。结果表明,所选分离物在吲哚乙酸、铁载体产生、磷溶解以及1-氨基环丙烷-1-羧酸(ACC)脱氨酶和nifH基因方面具有不同的定性特征,并且与未接种对照和肥料对照相比,所有分离物在两个盆栽试验中均显著促进了植物生长。代谢组学分析表明,与未接种对照相比,两种菌株均影响了植物代谢组。与未接种对照相比,所研究的约50%的代谢物在一种或两种接种细菌的植物中浓度更高。尽管两种菌株对根系生长的促进程度相近,但在代谢物调控方面仍存在差异。总体而言,内生细菌显著促进了植物生长,并倾向于在植物内圈产生或诱导释放某些代谢物。

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