首页> 美国卫生研究院文献>Proceedings of the National Academy of Sciences of the United States of America >From the Cover: Overexpression of barley BAX inhibitor 1 induces breakdown of mlo-mediated penetration resistance to Blumeria graminis
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From the Cover: Overexpression of barley BAX inhibitor 1 induces breakdown of mlo-mediated penetration resistance to Blumeria graminis

机译:从封面开始:大麦BAX抑制剂1的过表达诱导mlo介导的对Blumeria graminis的穿透阻力的破坏

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摘要

Cell death regulation is linked to pathogen defense in plants and animals. Execution of apoptosis as one type of programmed cell death in animals is irreversibly triggered by cytochrome c release from mitochondria via pores formed by BAX proteins. This type of programmed cell death can be prevented by expression of BAX inhibitor 1 (BI-1), a membrane protein that protects cells from the effects of BAX by an unknown mechanism. In barley, a homologue of the mammalian BI-1 is expressed in response to inoculation with the barley powdery mildew fungus Blumeria graminis f.sp. hordei (Bgh). We found differential expression of BI-1 in response to Bgh in susceptible and resistant plants. Chemical induction of resistance to Bgh by soil drench treatment with 2,6-dichloroisonicotinic acid led to down-regulation of the expression level of BI-1. Importantly, single-cell transient overexpression of BI-1 in epidermal leaf tissue of susceptible barley cultivar Ingrid led to enhanced accessibility, resulting in a higher penetration efficiency of Bgh on BI-1-transformed cells. In Bgh-resistant mlo5 genotypes, which do not express the negative regulator of defense and cell death MLO, overexpression of BI-1 almost completely reconstituted susceptibility to fungal penetration. We suggest that BI-1 is a regulator of cellular defense in barley sufficient to substitute for MLO function in accessibility to fungal parasites.
机译:细胞死亡调节与动植物中的病原体防御有关。凋亡的执行是动物中程序性细胞死亡的一种类型,它是不可逆地由细胞色素c经由BAX蛋白形成的孔从线粒体释放而触发的。这种类型的程序性细胞死亡可以通过BAX抑制剂1(BI-1)的表达来预防,BAX抑制剂1是一种膜蛋白,可通过未知机制保护细胞免受BAX的影响。在大麦中,响应大麦白粉病真菌Blumeria graminis f.sp.的接种,表达了哺乳动物BI-1的同源物。霍尔迪(Bgh)。我们发现在易感和抗病植物中,BI-1对Bgh的应答差异表达。通过用2,6-二氯异烟酸进行土壤浸透处理,化学诱导的对Bgh的抗性导致BI-1表达水平的下调。重要的是,易感的大麦品种Ingrid的表皮叶组织中BI-1的单细胞瞬时过表达导致可及性增强,从而导致Bgh对BI-1转化细胞的穿透效率更高。在不表达防御和细胞死亡MLO负调节剂的Bgh抗性mlo5基因型中,BI-1的过度表达几乎完全重建了对真菌渗透的敏感性。我们建议BI-1是大麦中细胞防御的调节剂,足以替代MLO在真菌寄生虫可及性方面的功能。

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