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苏云金芽孢杆菌 RZ2MS9 产生的生长素促进了番茄(Solanum lycopersicum cv. Micro-Tom)的生长并改变了其根系结构。

The auxin-producing Bacillus thuringiensis RZ2MS9 promotes the growth and modifies the root architecture of tomato (Solanum lycopersicum cv. Micro-Tom).

机构信息

Department of Genetics, Luiz de Queiroz College of Agriculture, University of São Paulo, 11 Pádua Dias Av., Piracicaba, SP, 13418-900, Brazil.

Hawkesbury Institute for the Environment, Western Sydney University, Richmond, NSW, Australia.

出版信息

Arch Microbiol. 2021 Sep;203(7):3869-3882. doi: 10.1007/s00203-021-02361-z. Epub 2021 May 19.

Abstract

Strains of Bacillus thuringiensis (Bt) are commonly commercialized as bioinoculants for insect pest control, but their benefits go beyond their insecticidal property: they can act as plant growth-promoters. Auxins play a major role in the plant growth promotion. However, the mechanism of auxin production by the Bacilli group, and more specifically by Bt strains, is unclear. In previous work, the plant growth-promoting rhizobacterium (PGPR) B. thuringiensis strain RZ2MS9 increased the corn roots. This drew our attention to the strain's auxin production trait, earlier detected in vitro. Here, we demonstrate that in its genome, RZ2MS9 harbours the complete set of genes required in two pathways that are used for Indole acetic acid (IAA) production. We also detected that the strain produces almost five times more IAA during the stationary phase. The bacterial application increased the shoot dry weight of the Micro-Tom (MT) tomato by 24%. The application also modified MT root architecture, with an increase of 26% in the average lateral root length and inhibition of the axial root. At the cellular level, RZ2MS9-treated MT plants presented elongated root cortical cells with intensified mitotic activity. Altogether, these are the best characterized auxin-associated phenotypes. Besides that, no growth alteration was detected in the auxin-insensitive diageotropic (dgt) plants either with or without the RZ2MS9 inoculation. Our results suggest that auxins play an important role in the ability of B. thuringiensis RZ2MS9 to promote MT growth and provide a better understanding of the auxin production mechanism by a Bt strain.

摘要

苏云金芽孢杆菌(Bt)菌株通常被商业化用作防治害虫的生物接种剂,但它们的益处不仅限于其杀虫特性:它们可以作为植物生长促进剂。生长素在植物生长促进中起主要作用。然而,芽孢杆菌组,更具体地说是 Bt 菌株产生生长素的机制尚不清楚。在之前的工作中,植物促生根际细菌(PGPR)苏云金芽孢杆菌菌株 RZ2MS9 增加了玉米根的数量。这引起了我们对该菌株在体外早期检测到的生长素产生特性的关注。在这里,我们证明 RZ2MS9 基因组中包含用于吲哚乙酸(IAA)生产的两条途径所需的完整基因集。我们还检测到该菌株在静止期产生的 IAA 几乎增加了五倍。细菌的应用使 Micro-Tom(MT)番茄的茎干重量增加了 24%。该应用还改变了 MT 根系结构,平均侧根长度增加了 26%,轴向根受到抑制。在细胞水平上,RZ2MS9 处理的 MT 植物的根皮层细胞伸长,有丝分裂活性增强。总之,这些是最好的特征化的生长素相关表型。此外,在没有或没有 RZ2MS9 接种的情况下,生长素不敏感的向地性(dgt)植物没有检测到生长变化。我们的结果表明,生长素在苏云金芽孢杆菌 RZ2MS9 促进 MT 生长的能力中起重要作用,并提供了对 Bt 菌株生长素产生机制的更好理解。

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