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Nonhost Resistance of Arabidopsis thaliana Against Alternaria alternata Involves both Pre- and Postinvasive Defenses but Is Collapsed by AAL-Toxin in the Absence of LOH2

机译:拟南芥对链格孢的非寄主抗性涉及入侵前和入侵后的防御,但在缺乏LOH2时被AAL毒素破坏。

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摘要

The tomato pathotype of Alternaria alternata causes Alternaria stem canker on tomato depending upon the production of the host-specific AAL-toxin. Host defense mechanisms to A. alternata, however, are largely unknown. Here, we elucidate some of the mechanisms of nonhost resistance to A. alternata using Arabidopsis mutants. "Wild-type Arabi-dopsis showed either no symptoms or a hypersensitive reaction (HR) when inoculated with both strains of AAL-toxin-producing and non-producing A. alternata. Yet, when these Arabidopsis penetration (pen) mutants, pen2 and pen3, were challenged with both strains of A. alternata, fungal penetration was possible. However, further fungal development and conidiation were limited on these pen mutants by postinvasion defense with HR-like cell death. Meanwhile, only AAL-toxin-producing A. alternata could invade lag one homologue (loh)2 mutants, which have a defect in the AAL-toxin resistance gene, subsequently allowing the fungus to complete its life cycle. Thus, the nonhost resistance of Arabidopsis thaliana to A. alternata consists of multilayered defense systems that include pre-invasion resistance via PEN2 and PEN3 and postinvasion resistance. However, our study also indicates that the pathogen is able to completely overcome the multilayered nonhost resistance if the plant is sensitive to the AAL-toxin, which is an effector of the toxin-dependent necrotrophic pathogen A. alternata.
机译:交链孢霉的番茄致病型取决于宿主特异性AAL毒素的产生,导致交链孢霉对番茄的茎萎缩。然而,对交链孢霉的宿主防御机制在很大程度上是未知的。在这里,我们阐明使用拟南芥突变体的非寄主对交配农杆菌抗性的一些机制。 “野生型拟南芥在接种产生AAL毒素和不产生AAL的两种链球菌时都没有症状或过敏反应(HR)。但是,当这些拟南芥穿透(pen)突变体时,pen2和pen3都受到了交替链霉菌的攻击,虽然可以穿透真菌,但是由于入侵后防御和类似HR的细胞死亡,这些突变体的真菌进一步发展和分生受到限制,而只有AAL毒素产生的A.。交链孢菌可以入侵一个落后于AAL毒素抗性基因的同源(loh)2突变体,从而使真菌完成其生命周期,因此,拟南芥对拟南芥的非宿主抗性由多层防御组成包括通过PEN2和PEN3进行入侵前的抗性和入侵后的抗性的系统,但是,我们的研究还表明,如果该植物能够在一定程度上克服病原体的多重非宿主抗性对AAL毒素敏感,AAL毒素是毒素依赖性坏死性病原体A. alternata的效应子。

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