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Stress resistance and C1 metabolism involved in plant colonization of a methanotroph Methylosinus sp. B4S.

机译:耐抗性和C1代谢参与甲烷营养菌甲基菌属(Methylosinus sp。)的植物定植。 B4S。

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摘要

Methanotrophs are widespread and have been isolated from various environments including the phyllosphere. In this study, we characterized the plant colonization by Methylosinus sp. B4S, an α-proteobacterial methanotroph isolated from plant leaf. The gfp-tagged Methylosinus sp. B4S cells were observed to colonize Arabidopsis leaf surfaces by forming aggregates. We cloned and sequenced the general stress response genes, phyR, nepR and ecfG, from Methylosinus sp. B4S. In vitro analysis showed that the phyR expression level was increased after heat shock challenge, and phyR was shown to be involved in resistance to heat shock and UV light. In the phyllospheric condition, the gene expression level of phyR as well as mmoX and mxaF was found to be relatively high, compared with methane-grown liquid cultures. The phyR-deletion strain as well as the wild-type strain inoculated on Arabidopsis leaves proliferated at the initial phase and then gradually decreased during plant colonization. These results have shed light firstly on the importance of general stress resistance and C1 metabolism in methanotroph living in the phyllosphere.
机译:甲烷营养菌很普遍,并且已经从包括叶球在内的各种环境中分离出来。在这项研究中,我们表征了甲基肌球菌sp。的植物定植。 B4S,一种从植物叶片中分离出的α-蛋白细菌甲烷营养菌。 gfp标签的甲基肌球菌sp。观察到B4S细胞通过形成聚集体而定居在拟南芥叶表面。我们从甲基肌球菌中克隆并测序了一般应激反应基因phyR,nepR和ecfG。 B4S。体外分析表明,热激攻击后phyR表达水平增加,并且phyR被证明与抗热激和紫外线有关。在叶际条件下,与甲烷生长的液体培养物相比,发现phyR以及mmoX和mxaF的基因表达水平相对较高。 phyR缺失菌株以及接种在拟南芥叶片上的野生型菌株在初始阶段增殖,然后在植物定植过程中逐渐降低。这些结果首先阐明了一般抗逆性和C1代谢对生活在叶球体内的甲烷营养生物的重要性。

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