首页> 外文期刊>Applied Microbiology >Plantibacter flavus, Curtobacterium herbarum, Paenibacillus taichungensis, and Rhizobium selenitireducens Endophytes Provide Host-Specific Growth Promotion of Arabidopsis thaliana, Basil, Lettuce, and Bok Choy Plants
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Plantibacter flavus, Curtobacterium herbarum, Paenibacillus taichungensis, and Rhizobium selenitireducens Endophytes Provide Host-Specific Growth Promotion of Arabidopsis thaliana, Basil, Lettuce, and Bok Choy Plants

机译:黄杆菌,草状弯曲杆菌,台中芽孢杆菌和硒根瘤菌内生菌为拟南芥,罗勒,生菜和白菜植物提供了宿主特异性的生长促进作用

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A collection of bacterial endophytes isolated from stem tissues of plants growing in soils highly contaminated with petroleum hydrocarbons were screened for plant growth-promoting capabilities. Twenty-seven endophytic isolates significantly improved the growth of Arabidopsis thaliana plants in comparison to that of uninoculated control plants. The five most beneficial isolates, one strain each of Curtobacterium herbarum, Paenibacillus taichungensis, and Rhizobium selenitireducens and two strains of Plantibacter flavus were further examined for growth promotion in Arabidopsis, lettuce, basil, and bok choy plants. Host-specific plant growth promotion was observed when plants were inoculated with the five bacterial strains. P. flavus strain M251 increased the total biomass and total root length of Arabidopsis plants by 4.7 and 5.8 times, respectively, over that of control plants and improved lettuce and basil root growth, while P. flavus strain M259 promoted Arabidopsis shoot and root growth, lettuce and basil root growth, and bok choy shoot growth. A genome comparison between P. flavus strains M251 and M259 showed that both genomes contain up to 70 actinobacterial putative plant-associated genes and genes involved in known plant-beneficial pathways, such as those for auxin and cytokinin biosynthesis and 1-aminocyclopropane-1-carboxylate deaminase production. This study provides evidence of direct plant growth promotion by Plantibacter flavus.IMPORTANCE The discovery of new plant growth-promoting bacteria is necessary for the continued development of biofertilizers, which are environmentally friendly and cost-efficient alternatives to conventional chemical fertilizers. Biofertilizer effects on plant growth can be inconsistent due to the complexity of plant-microbe interactions, as the same bacteria can be beneficial to the growth of some plant species and neutral or detrimental to others. We examined a set of bacterial endophytes isolated from plants growing in a unique petroleum-contaminated environment to discover plant growth-promoting bacteria. We show that strains of Plantibacter flavus exhibit strain-specific plant growth-promoting effects on four different plant species.
机译:从植物的茎组织中分离出的细菌内生菌集合被筛选出来,这些植物在富含石油烃的土壤中生长,这些植物具有促进植物生长的能力。与未接种的对照植物相比,二十七种内生分离物显着改善了拟南芥植物的生长。进一步检查了五个最有益的分离株,分别是风铃弯曲杆菌,台尼氏杆状芽孢杆菌和硒根瘤菌的一株菌株和黄褐菌的两个菌株在拟南芥,生菜,罗勒和白菜植物中的生长促进作用。当用五种细菌菌株接种植物时,观察到宿主特异性植物的生长促进。黄萎病菌株M251使拟南芥植物的总生物量和总根长分别比对照植物高4.7和5.8倍,并改善了莴苣和罗勒的根系生长,而黄萎病菌株M259促进了拟南芥的芽和根生长,生菜和罗勒的根生长,白菜芽的生长。黄萎病菌株M251和M259之间的基因组比较表明,这两个基因组均包含多达70个与放线菌推定的植物相关基因以及与已知植物有益途径有关的基因,例如植物生长素和细胞分裂素生物合成的基因以及1-氨基环丙烷-1-羧酸脱氨酶的产生。这项研究提供了黄褐菌直接促进植物生长的证据。重要发现新的植物生长促进细菌对于生物肥料的持续开发是必不可少的,而生物肥料是传统化学肥料的环保且具有成本效益的替代品。由于植物-微生物相互作用的复杂性,生物肥料对植物生长的影响可能不一致,因为相同的细菌可能有益于某些植物物种的生长,而对其他植物物种是中性或有害的。我们检查了从在独特的石油污染环境中生长的植物中分离出的一组细菌内生菌,以发现促进植物生长的细菌。我们显示黄曲霉菌株对四种不同的植物物种表现出菌株特异性植物生长促进作用。

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