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通过肺炎克雷伯菌中iclR的插入失活使矿物磷酸盐溶解表型去阻遏

Derepression of Mineral Phosphate Solubilization Phenotype by Insertional Inactivation of iclR in Klebsiella pneumoniae.

作者信息

Rajput Mahendrapal Singh, Iyer Bhagya, Pandya Maharshi, Jog Rahul, G Naresh Kumar, Rajkumar Shalini

机构信息

Institute of Science, Nirma University, Ahmedabad, Gujarat, India.

Institute of Science, Nirma University, Ahmedabad, Gujarat, India; Environmental Molecular Biology Laboratory, Division of Biosphere, Faculty of Environmental Earth Science, Hokkaido University, Sapporo, Hokkaido, Japan.

出版信息

PLoS One. 2015 Sep 18;10(9):e0138235. doi: 10.1371/journal.pone.0138235. eCollection 2015.

Abstract

The mode of succinate mediated repression of mineral phosphate solubilization and the role of repressor in suppressing phosphate solubilization phenotype of two free-living nitrogen fixing Klebsiella pneumoniae strains was studied. Organic acid mediated mineral phosphate solubilization phenotype of oxalic acid producing Klebsiella pneumoniae SM6 and SM11 were transcriptionally repressed by IclR in presence of succinate as carbon source. Oxalic acid production and expression of genes of the glyoxylate shunt (aceBAK) was found only in glucose but not in succinate- and glucose+succinate-grown cells. IclR, repressor of aceBAK operon, was inactivated using an allelic exchange system resulting in derepressed mineral phosphate solubilization phenotype through constitutive expression of the glyoxylate shunt. Insertional inactivation of iclR resulted in increased activity of the glyoxylate shunt enzymes even in succinate-grown cells. An augmented phosphate solubilization up to 54 and 59% soluble phosphate release was attained in glucose+succinate-grown SM6Δ and SM11Δ strains respectively, compared to glucose-grown cells, whereas phosphate solubilization was absent or negligible in wildtype cells grown in glucose+succinate. Both wildtype and iclR deletion strains showed similar indole-3-acetic acid production. Wheat seeds inoculated with wildtype SM6 and SM11 improved both root and shoot length by 1.2 fold. However, iclR deletion SM6Δ and SM11Δ strains increased root and shoot length by 1.5 and 1.4 folds, respectively, compared to uninoculated controls. The repressor inactivated phosphate solubilizers better served the purpose of constitutive phosphate solubilization in pot experiments, where presence of other carbon sources (e.g., succinate) might repress mineral phosphate solubilization phenotype of wildtype strains.

摘要

研究了琥珀酸介导的矿物磷酸盐溶解抑制模式以及阻遏物在抑制两种自生固氮肺炎克雷伯氏菌菌株磷酸盐溶解表型中的作用。在以琥珀酸作为碳源时,IclR转录抑制了产草酸肺炎克雷伯氏菌SM6和SM11的有机酸介导的矿物磷酸盐溶解表型。仅在葡萄糖培养的细胞中发现了草酸产生和乙醛酸循环(aceBAK)基因的表达,而在琥珀酸培养以及葡萄糖+琥珀酸培养的细胞中未发现。使用等位基因交换系统使aceBAK操纵子的阻遏物IclR失活,通过乙醛酸循环的组成型表达导致矿物磷酸盐溶解表型去抑制。iclR的插入失活即使在琥珀酸培养的细胞中也导致乙醛酸循环酶活性增加。与葡萄糖培养的细胞相比,在葡萄糖+琥珀酸培养的SM6Δ和SM11Δ菌株中分别实现了高达54%和59%的可溶磷酸盐释放的增强磷酸盐溶解,而在葡萄糖+琥珀酸培养的野生型细胞中磷酸盐溶解不存在或可忽略不计。野生型和iclR缺失菌株显示出相似的吲哚-3-乙酸产生。接种野生型SM6和SM11的小麦种子使根和芽长度均提高了1.2倍。然而,与未接种对照相比,iclR缺失的SM6Δ和SM11Δ菌株分别使根和芽长度增加了1.5倍和1.4倍。在盆栽实验中,阻遏物失活的磷酸盐溶解剂更适合用于组成型磷酸盐溶解,因为其他碳源(如琥珀酸)的存在可能会抑制野生型菌株的矿物磷酸盐溶解表型。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3a39/4575152/e2195992e02f/pone.0138235.g001.jpg

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