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首页> 外文期刊>Environmental microbiology >Comparative in situ analysis of ipdC-gfpmut3 promoter fusions of Azospirillum brasilense strains Sp7 and Sp245
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Comparative in situ analysis of ipdC-gfpmut3 promoter fusions of Azospirillum brasilense strains Sp7 and Sp245

机译:巴西固氮螺菌Sp7和Sp245 ipdC-gfpmut3启动子融合体的原位比较分析

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摘要

Inoculation of wheat roots with Azospirillum brasilense results in an increase of plant growth and yield, which is proposed to be mainly due to the bacterial production of indole-3-acetic acid in the rhizosphere. Field inoculation experiments had revealed more consistent plant growth stimulation using A. brasilense strain Sp245 as compared with the strain Sp7. Therefore, the in situ expression of the key gene ipdC (indole-3-pyruvate decarboxylase) was examined in these two strains. Within the ipdC promoter of strain Sp245 a region of 150 bases was identified, which was missing in strain Sp7. Thus, three different translational ipdC promoter fusions with gfpmut3 were constructed on plasmid level: the first contained the part of the Sp245 promoter region homologous to strain Sp7, the second was bearing the complete promoter region of Sp245 including the specific insertion and the third comprised the Sp7 promoter region. By comparing the fluorescence levels of these constructs after growth on mineral medium with and without inducing amino acids, it could be demonstrated that ipdC expression in A. brasilense Sp245 was subject to a stricter control compared with strain Sp7. Microscopic detection of these reporter strains colonizing the rhizoplane documented for the first time an in situ expression of ipdC.
机译:用巴西固氮螺菌接种小麦根导致植物生长和产量增加,这被认为主要是由于根际中细菌产生了吲哚-3-乙酸。田间接种实验已经显示,与菌株Sp7相比,使用巴西根霉菌株Sp245更一致地促进植物生长。因此,在这两个菌株中检查了关键基因ipdC(吲哚-3-丙酮酸脱羧酶)的原位表达。在菌株Sp245的ipdC启动子中,鉴定出150个碱基的区域,该区域在菌株Sp7中缺失。因此,在质粒水平上构建了与gfpmut3的三种不同的翻译ipdC启动子融合体:第一个包含与菌株Sp7同源的Sp245启动子区域的一部分,第二个包含Sp245的完整启动子区域,包括特异性插入,第三个包含Sp7启动子区。通过比较这些构建体在有或没有诱导氨基酸的矿物培养基上生长后的荧光水平,可以证明与菌株Sp7相比,巴西拟南芥Sp245中的ipdC表达受到更严格的控制。这些报道的菌株在根际平面上的显微镜检测首次记录了ipdC的原位表达。

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