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Profiling of Plant Growth-Promoting Metabolites by Phosphate-Solubilizing Bacteria in Maize Rhizosphere

机译:玉米根际磷酸盐溶解细菌的植物生长促进代谢物的分析

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摘要

Microbial treatment has recently been attracting attention as a sustainable agricultural strategy addressing the current problems caused by unreasonable agricultural practices. However, the mechanism through which microbial inoculants promote plant growth is not well understood. In this study, two phosphate-solubilizing bacteria (PSB) were screened, and their growth-promoting abilities were explored. At day 7 (D7), the lengths of the root and sprout with three microbial treatments, M16, M44, and the combination of M16 and M44 (Com), were significantly greater than those with the non-microbial control, with mean values of 9.08 and 4.73, 7.15 and 4.83, and 13.98 and 5.68 cm, respectively. At day 14 (D14), M16, M44, and Com significantly increased not only the length of the root and sprout but also the underground and aboveground biomass. Differential metabolites were identified, and various amino acids, amino acid derivatives, and other plant growth-regulating molecules were significantly enhanced by the three microbial treatments. The profiling of key metabolites associated with plant growth in different microbial treatments showed consistent results with their performances in the germination experiment, which revealed the metabolic mechanism of plant growth-promoting processes mediated by screened PSB. This study provides a theoretical basis for the application of PSB in sustainable agriculture.
机译:微生物治疗最近一直吸引了一种关注,作为一种可持续的农业战略,解决了由不合理的农业实践造成的当前问题。然而,微生物接种剂促进植物生长的机制尚不清楚。在本研究中,筛选了两种磷酸盐溶解的细菌(PSB),探讨了它们的生长促进能力。在第7天(D7)中,具有三种微生物处理,M16,M44和M16和M44(COM)的组合的根和芽的长度明显大于非微生物控制,具有平均值9.08和4.73,7.15和4.83,以及13.98和5.68厘米。在第14天(D14),M16,M44和COM不仅增加了根和芽的长度,而且是地下和地上的生物量。鉴定了差分代谢物,并通过三种微生物处理显着提高了各种氨基酸,氨基酸衍生物和其他植物生长调节分子。与植物生长相关的不同微生物处理相关的关键代谢物的分析表现出一致的结果,其在萌发实验中的性能表现,揭示了植物生长促进过程的代谢机制介导的筛选的PSB。本研究为在可持续农业中应用了PSB的理论依据。

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