首页> 外文期刊>BioControl: Journal of the International Organization for Biological Control >The role of synergistic action and molecular mechanism in the effect of genetically engineered strain Bacillus subtilis OKBHF in enhancing tomato growth and Cucumber mosaic virus resistance
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The role of synergistic action and molecular mechanism in the effect of genetically engineered strain Bacillus subtilis OKBHF in enhancing tomato growth and Cucumber mosaic virus resistance

机译:协同作用和分子机制在基因工程菌株枯草芽孢杆菌OKBHF增强番茄生长和黄瓜花叶病毒抗性中的作用

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Bacillus subtilis is well known for its biocontrol activity against several plant pathogens and for its role in promoting plant growth. HpaGXooc, from rice pathogenic bacterium Xanthomonas oryzae pv. oryzicola, is a member of the harpin group of proteins. It is known to elicit hypersensitive cell death in non-host plants, thereby inducing disease and insect resistance in the plants and enhancing plant growth. In our previous experiment, we constructed a genetically engineered strain--B. subtilis OKBHF--through the introduction of the gene encoding HpaGXooc into B. subtilis OKB105 in order to combine the effects of HpaGXooc and wild-type PGPR in improving the plant growth rate and for biological control. In this study, we evaluated the use of treating the tomato plant with B. subtilis OKBHF. The results of greenhouse experiments demonstrated that OKBHF treatment had a significant effect on increasing the height, fresh weight, and flower and fruit number and obviously lowered the disease severity of Cucumber mosaic virus (CMV) infection at 28 days postinoculation (dpi). Subsequent reverse transcription-polymerase chain reaction analysis revealed the molecular mechanisms of HpaGXooc and B. subtilis in the tomato plant, suggesting their synergistic roles in inducing enhanced expression of three expansin genes LeEXP2, LeEXP5, and LeEXP18, which regulate plant cell growth, and two defense-related genes Pti4 and Pti6, which activate the expression of a wide array of PR genes and one defense gene, PR-1a.
机译:枯草芽孢杆菌以其对几种植物病原体的生物防治活性及其在促进植物生长中的作用而闻名。 HpaGXooc,来自水稻病原细菌米氏黄单胞菌。 oryzicola是harpin蛋白质组的成员。已知在非寄主植物中引起超敏细胞死亡,从而在植物中诱导疾病和昆虫抗性并增强植物生长。在我们之前的实验中,我们构建了一个基因工程菌株-B。枯草OKBHF-通过将编码HpaGXooc的基因引入枯草芽孢杆菌OKB105中,以结合HpaGXooc和野生型PGPR在提高植物生长率和生物防治方面的作用。在这项研究中,我们评估了用枯草芽孢杆菌OKBHF处理番茄植株的用途。温室实验结果表明,OKBHF处理对接种后28天(dpi)的身高,鲜重,花和果实数具有显着影响,并显着降低了黄瓜花叶病毒(CMV)感染的疾病严重程度。随后的逆转录-聚合酶链反应分析揭示了番茄植物中HpaGXooc和枯草芽孢杆菌的分子机制,表明它们在诱导三个扩展蛋白基因LeEXP2,LeEXP5和LeEXP18的增强表达中起协同作用,后者调节植物细胞的生长,另外两个防御相关基因Pti4和Pti6,它们激活多种PR基因和一个防御基因PR-1a的表达。

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