首页> 美国卫生研究院文献>Microbes and Environments >Possible Involvement of MYB44-Mediated Stomatal Regulation in Systemic Resistance Induced by Penicillium simplicissimum GP17-2 in Arabidopsis
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Possible Involvement of MYB44-Mediated Stomatal Regulation in Systemic Resistance Induced by Penicillium simplicissimum GP17-2 in Arabidopsis

机译:MYB44介导的气孔调节可能参与拟南芥青霉GP17-2诱导的系统抗性

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摘要

The plant growth-promoting fungus (PGPF), Penicillium simplicissimum GP17-2 (GP17-2), induces systemic resistance against Pseudomonas syringae pv. tomato DC3000 (Pst) in Arabidopsis thaliana. The molecular mechanisms underlying induced systemic resistance (ISR) by GP17-2 were investigated in the present study. Microscopic observations revealed that stomatal reopening by Pst was restricted by elicitation with the culture filtrate (CF) from GP17-2. A gene expression analysis of MYB44, which enhances abscisic acid signaling and consequently closes stomata, revealed that the gene was activated by CF. CF-elicited myb44 mutant plants failed to restrict stomatal reopening and showed lower resistance to Pst than wild-type plants. These results indicate that stomatal resistance by GP17-2 is mediated by the gene activation of MYB44. We herein revealed that the MYB44-mediated prevention of penetration through the stomata is one of the components responsible for GP17-2-elicited ISR.
机译:促进植物生长的真菌(PGPF)青霉GP17-2(GP17-2)诱导了对丁香假单胞菌pv的系统抗性。拟南芥中的番茄DC3000(Pst)。在本研究中,研究了GP17-2诱导的全身抗性(ISR)的分子机制。显微镜观察显示,Pst气孔重新开放受到GP17-2的培养物滤液(CF)的激发而受到限制。 MYB44的基因表达分析增强了脱落酸的信号传导,从而关闭了气孔,显示该基因被CF激活。 CF诱导的myb44突变植物未能限制气孔重新开放,并且对Pst的抗性低于野生型植物。这些结果表明,GP17-2对气孔的抵抗是由MYB44的基因激活介导的。我们在本文中揭示,MYB44介导的通过气孔穿透的预防是负责GP17-2引起的ISR的成分之一。

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