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追踪玉米的定殖和促生作用揭示了根瘤菌属菌株的特异性行为及其接种方法的影响。

Tracking maize colonization and growth promotion by Azospirillum reveals strain-specific behavior and the influence of inoculation method.

机构信息

Microbial Molecular Biology Laboratory (LABMOM), State University of Ponta Grossa (UEPG), Ponta Grossa, Paraná, Brazil.

Instituto de Investigaciones Agrobiotecnológicas (INIAB-CONICET), National University of Rio Cuarto (UNRC), Rio Cuarto, Córdoba, Argentina.

出版信息

Plant Physiol Biochem. 2024 Oct;215:108979. doi: 10.1016/j.plaphy.2024.108979. Epub 2024 Jul 26.

Abstract

Inoculation of Azospirillum in maize has become a standard practice in Latin America. However, information on the behavior and population survival of the Azospirillum post-inoculation is scarce, making standardization difficult and generating variations in inoculation efficiency across assays. In this study, we tracked the colonization of three agriculturally relevant Azospirillum strains (Ab-V5, Az39, and the ammonium excreting HM053) after different inoculation methods in maize crops by qPCR. Besides, we assessed their ability to promote maize growth by measuring biometric parameters after conducting a greenhouse essay over 42 days. Inoculated plants exhibited Azospirillum population ranging from 10 to 10 cells plant throughout the experiment. While all strains efficiently colonized roots, only A. argentinense Az39 demonstrated bidirectional translocation between roots and shoots, which characterizes a systemic behavior. Optimal inoculation methods for plant growth promotion varied among strains: soil inoculation promoted the best maize growth for the Ab-V5 and Az39 strains, while seed inoculation proved most effective for HM053. The findings of this study demonstrate that the inoculation method affects the behavior of Azospirillum strains and their effectiveness in promoting maize growth, thereby guiding practices to enhance crop yield.

摘要

在拉丁美洲,向玉米中接种固氮菌已成为一种标准做法。然而,关于接种后固氮菌的行为和种群存活的信息却很少,这使得标准化变得困难,并导致不同试验中接种效率的差异。在这项研究中,我们通过 qPCR 跟踪了三种农业相关固氮菌(Ab-V5、Az39 和铵排泄 HM053)在不同接种方法后在玉米作物中的定殖情况。此外,我们通过在温室中进行为期 42 天的实验来测量生物计量参数,评估了它们促进玉米生长的能力。接种的植物在整个实验过程中表现出的固氮菌种群数量从 10 到 10^cells 植物不等。虽然所有菌株都能有效地定殖根系,但只有阿根廷固氮菌 Az39 表现出根系和茎叶之间的双向迁移,这是一种系统性行为。促进植物生长的最佳接种方法因菌株而异:土壤接种对 Ab-V5 和 Az39 菌株的玉米生长促进效果最佳,而种子接种对 HM053 菌株则最为有效。本研究的结果表明,接种方法会影响固氮菌菌株的行为及其促进玉米生长的效果,从而指导实践以提高作物产量。

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