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聚 3-羟基丁酸代谢对促进植物生长的希瓦氏菌属能力的重要性。

Importance of Poly-3-Hydroxybutyrate Metabolism to the Ability of Herbaspirillum seropedicae To Promote Plant Growth.

机构信息

Biological Nitrogen Fixation Laboratory, Department of Biochemistry and Molecular Biology, Federal University of Paraná (UFPR), Curitiba, Brazil.

Divisions of Plant Science and Biochemistry, C. S. Bond Life Science Center, University of Missouri, Columbia, Missouri, USA.

出版信息

Appl Environ Microbiol. 2019 Mar 6;85(6). doi: 10.1128/AEM.02586-18. Print 2019 Mar 15.

Abstract

is an endophytic bacterium that establishes an association with a variety of plants, such as rice, corn, and sugarcane, and can significantly increase plant growth. produces polyhydroxybutyrate (PHB), stored in the form of insoluble granules. Little information is available on the possible role of PHB in bacterial root colonization or in plant growth promotion. To investigate whether PHB is important for the association of with plants, we inoculated roots of with strain SmR1 and mutants defective in PHB production (Δ, Δ Δ, Δ, and Δ) or mobilization (Δ Δ). The strains producing large amounts of PHB colonized roots, significantly increasing root area and the number of lateral roots compared to those of PHB-negative strains. grows under microaerobic conditions, which can be found in the rhizosphere. When grown under low-oxygen conditions, only the parental strain and Δ mutant exhibited normal growth. The lack of normal growth under low oxygen correlated with the inability to stimulate plant growth, although there was no effect on the level of root colonization. The data suggest that PHB is produced in the root rhizosphere and plays a role in maintaining normal metabolism under microaerobic conditions. To confirm this, we screened for green fluorescent protein (GFP) expression under the control of the promoters of the PHA synthase and PHA depolymerase genes in the rhizosphere. PHB synthesis is active on the root surface and later PHB depolymerase expression is activated. The application of bacteria as plant growth promoters is a sustainable alternative to mitigate the use of chemical fertilization in agriculture, reducing negative economic and environmental impacts. Several plant growth-promoting bacteria synthesize and accumulate the intracellular polymer polyhydroxybutyrate (PHB). However, the role of PHB in plant-bacterium interactions is poorly understood. In this study, applying the C4 model grass and several mutants in the PHB metabolism of the endophyte yielded new findings on the importance of PHB for bacterial colonization of roots. Taken together, the results show that deletion of genes involved in the synthesis and degradation of PHB reduced the ability of the bacteria to enhance plant growth but with little effect on overall root colonization. The data suggest that PHB metabolism likely plays an important role in supporting specific metabolic routes utilized by the bacteria to stimulate plant growth.

摘要

是一种内生细菌,与多种植物如水稻、玉米和甘蔗建立共生关系,并能显著促进植物生长。产生聚羟基丁酸酯(PHB),以不溶性颗粒的形式储存。关于 PHB 在细菌根定殖或促进植物生长中的可能作用,知之甚少。为了研究 PHB 是否对与植物的共生关系重要,我们用 菌株 SmR1 及其 PHB 产生缺陷突变体(Δ、ΔΔ、Δ、和 Δ)或移动缺陷体(Δ Δ)接种根,这些突变体大量产生 PHB,与 PHB 阴性菌株相比,显著增加了根面积和侧根数量。在微氧条件下生长,这种条件可以在根际中找到。当在低氧条件下生长时,只有亲本菌株和 Δ 突变体表现出正常生长。在低氧条件下缺乏正常生长与不能刺激植物生长相关,尽管对根定殖水平没有影响。数据表明,PHB 在根际中产生,并在微氧条件下维持正常代谢中发挥作用。为了证实这一点,我们在根际中筛选了 PHB 合酶和 PHB 解聚酶基因的 启动子控制下的绿色荧光蛋白(GFP)表达。PHB 合成在根表面活跃,随后 PHB 解聚酶表达被激活。将细菌作为植物生长促进剂的应用是一种可持续的替代方案,可以减少农业中化肥的使用,降低负面的经济和环境影响。几种植物生长促进细菌合成并积累细胞内聚合物聚羟基丁酸酯(PHB)。然而,PHB 在植物-细菌相互作用中的作用知之甚少。在这项研究中,应用 C4 模式草 和内生菌 PHB 代谢中的几种突变体,对 PHB 对内生菌根定殖的重要性产生了新的认识。总之,结果表明,参与 PHB 合成和降解的基因缺失降低了细菌增强植物生长的能力,但对整体根定殖影响不大。这些数据表明,PHB 代谢可能在支持细菌刺激植物生长所利用的特定代谢途径方面发挥重要作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d5fc/6414382/460bd8435737/AEM.02586-18-f0001.jpg

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