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首页> 外文期刊>BMC Plant Biology >Effect of volatile compounds produced by Ralstonia solanacearum on plant growth promoting and systemic resistance inducing potential of Bacillus volatiles
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Effect of volatile compounds produced by Ralstonia solanacearum on plant growth promoting and systemic resistance inducing potential of Bacillus volatiles

机译:青枯雷尔氏菌产生的挥发性化合物对芽孢杆菌挥发物促进植物生长和诱导系统抗性的作用。

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Background Microbial volatiles play an expedient role in the agricultural ecological system by enhancing plant growth and inducing systemic resistance against plant pathogens, without causing hazardous effects on the environment. To explore the effects of VOCs of Ralstonia solanacearum TBBS1 ( Rs ) on tobacco plant growth and on plant growth promoting efficiency of VOCs produced by Bacillus subtilis SYST2, experiments were conducted both in vitro and in planta. Results The VOCs produced by SYST2 significantly enhanced the plant growth and induced the systemic resistance (ISR) against wilt pathogen Rs in all experiments. The SYST2-VOCs significantly increased PPO and PAL activity and over-expressed the genes relating to expansin, wilt resistance, and plant defense while repressed the genes relating to ethylene production. More interestingly, VOCs produced by pathogen, Rs had no significant effect on plant growth; however, Rs -VOCs decreased the growth promoting potential of SYST2-VOCs when plants were exposed to VOCs produced by both SYST2 and Rs . The co-culture of SYST2 and Rs revealed that they inhibited the growth of each other; however, the inhibition of Rs by SYST2-VOCs appeared to be greater than that of SYST2 by Rs -VOCs. Conclusion Our findings provide new insights regarding the interaction among SYST2-VOCs, Rs -VOCs and plant, resulting in growth promotion and induced systemic resistance against the bacterial wilt pathogen Rs . This is the first report of the effect of VOCs produced by pathogenic microorganism on plant growth and on plant growth-promoting and systemic resistance-inducing potential of PGPR strain SYST2.
机译:背景技术微生物挥发物通过增强植物生长并诱导对植物病原体的系统抗性而在农业生态系统中起重要作用,而不会对环境造成有害影响。为了探讨青枯菌(Ralstonia solanacearum)TBBS1(Rs)的挥发性有机化合物对烟草植物生长以及枯草芽孢杆菌SYST2产生的挥发性有机化合物的植物生长促进效率的影响,在体外和植物体内进行了实验。结果在所有实验中,SYST2产生的VOC均显着促进了植物的生长并诱导了对枯萎病原体Rs的系统抗性(ISR)。 SYST2-VOCs显着增加了PPO和PAL活性,并过表达了与扩张素,枯萎抗性和植物防御有关的基因,同时又抑制了与乙烯生产有关的基因。更有趣的是,由病原体Rs产生的VOC对植物生长没有显着影响。然而,当植物暴露于SYST2和Rs共同产生的VOC时,Rs -VOCs降低了SYST2-VOCs的生长促进潜力。 SYST2和Rs的共培养表明,它们彼此抑制生长。但是,SYST2-VOC对Rs的抑制作用似乎大于Rs -VOC对SYST2的抑制作用。结论我们的发现为有关SYST2-VOC,Rs -VOC与植物之间的相互作用提供了新的见解,从而促进了对细菌枯萎病原体Rs的生长和诱导的系统抗性。这是致病微生物产生的挥发性有机化合物对植物生长以及对PGPR菌株SYST2的促进植物生长和诱导系统抗性的潜力的首次报道。

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