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探讨嗜水气单胞菌菌株 BH72 内生生活期间醇脱氢酶的功能。

Exploring the function of alcohol dehydrogenases during the endophytic life of Azoarcus Sp. strain BH72.

机构信息

Department of Microbe-Plant Interactions, University of Bremen, Bremen, Germany.

出版信息

Mol Plant Microbe Interact. 2011 Nov;24(11):1325-32. doi: 10.1094/MPMI-05-11-0139.

Abstract

The endophytic bacterium Azoarcus sp. strain BH72 is capable of colonizing the interior of rice roots, where it finds suitable physicochemical properties for multiplying and fixing nitrogen. Because these properties are poorly understood, a microtiter-plate-based screening of a transcriptional gfp (green fluorescent protein) fusion library of Azoarcus sp. grown under different conditions was performed. Monitoring of the GFP activity allowed the identification of a gene highly expressed in medium supplemented with ethanol. Sequence analysis revealed that this gene encodes a pyrrolo-quinoline quinone-dependent alcohol dehydrogenase (ADH). Inspection of the complete genome sequence of the Azoarcus sp. strain BH72 identified seven additional genes encoding putative ADH, indicating that BH72 is well equipped to survive in different environmental conditions offering various alcohols as carbon source. Analyses of these eight putative ADH showed that expression of three was induced by ethanol, of which two were also expressed inside rice roots. The fact that waterlogged plants such as rice accumulate ethanol suggests that ethanol occurs in sufficiently high concentration within the root to induce expression of bacterial ADH. Disruption of these two ADH evoked a reduced competitiveness to the wild type in colonizing rice roots internally. Thus, it is likely that ethanol is an important carbon source for the endophytic life of Azoarcus sp.

摘要

内生细菌 Azoarcus sp. 菌株 BH72 能够定殖在水稻根的内部,在那里它找到了适合繁殖和固氮的理化性质。由于这些性质尚未得到很好的理解,因此对在不同条件下生长的 Azoarcus sp. 的转录 GFP(绿色荧光蛋白)融合文库进行了微孔板筛选。监测 GFP 活性可鉴定出在补充乙醇的培养基中高度表达的基因。序列分析表明,该基因编码吡咯并喹啉醌依赖性醇脱氢酶(ADH)。对 Azoarcus sp. 菌株 BH72 的完整基因组序列进行检查,发现了另外七个编码推定 ADH 的基因,这表明 BH72 非常适合在提供各种醇作为碳源的不同环境条件下生存。对这 8 个推定 ADH 的分析表明,有 3 个受乙醇诱导表达,其中 2 个也在水稻根内表达。像水稻这样的水淹植物会积累乙醇,这表明乙醇在根内的浓度足以诱导细菌 ADH 的表达。这两个 ADH 的缺失会降低它们在水稻根内定殖的竞争力。因此,乙醇很可能是 Azoarcus sp. 内生生活的重要碳源。

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