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Moss Pathogenesis-Related-10 Protein Enhances Resistance to Pythium irregulare in Physcomitrella patens and Arabidopsis thaliana

机译:苔藓致病相关的10蛋白增强对小立碗藓和拟南芥中不规则腐霉的抗性

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摘要

Plants respond to pathogen infection by activating signaling pathways leading to the accumulation of proteins with diverse roles in defense. Here, we addressed the functional role of PpPR-10, a pathogenesis-related (PR)-10 gene, of the moss Physcomitrella patens, in response to biotic stress. PpPR-10 belongs to a multigene family and encodes a protein twice the usual size of PR-10 proteins due to the presence of two Bet v1 domains. Moss PR-10 genes are differentially regulated during development and inoculation with the fungal pathogen Botrytis cinerea. Specifically, PpPR-10 transcript levels increase significantly by treatments with elicitors of Pectobacterium carotovorum subsp. carotovorum, spores of B. cinerea, and the defense hormone salicylic acid. To characterize the role of PpPR-10 in plant defense against pathogens, we conducted overexpression analysis in P. patens and in Arabidopsis thaliana. We demonstrate that constitutive expression of PpPR-10 in moss tissues increased resistance against the oomycete Pythium irregulare. PpPR-10 overexpressing moss plants developed less symptoms and decreased mycelium growth than wild type plants. In addition, PpPR-10 overexpressing plants constitutively produced cell wall depositions in protonemal tissue. Ectopic expression of PpPR-10 in Arabidopsis resulted in increased resistance against P. irregulare as well, evidenced by smaller lesions and less cellular damage compared to wild type plants. These results indicate that PpPR-10 is functionally active in the defense against the pathogen P. irregulare, in both P. patens and Arabidopsis, two evolutionary distant plants. Thus, P. patens can serve as an interesting source of genes to improve resistance against pathogen infection in flowering plants.
机译:植物通过激活信号通路来响应病原体感染,从而导致在防御中具有多种作用的蛋白质的积累。在这里,我们解决了藓类小立碗藓的病原相关(PR)-10基因PpPR-10在响应生物胁迫时的功能作用。 PpPR-10属于一个多基因家族,由于存在两个Bet v1域,其编码的蛋白质是PR-10蛋白通常大小的两倍。 Moss PR-10基因在发育和接种真菌病原体灰葡萄孢的过程中受到差异调节。具体而言,通过用胡萝卜杆菌芽孢杆菌亚种的引发剂处理,PpPR-10转录水平显着增加。胡萝卜素,灰质芽孢杆菌的孢子和防御激素水杨酸。为了表征PpPR-10在植物对病原体防御中的作用,我们在P. patens和拟南芥中进行了过表达分析。我们证明,在苔藓组织中PpPR-10的组成型表达增加了对卵菌性腐霉菌不规则菌的抵抗力。与野生型植物相比,过表达PpPR-10的苔藓植物出现较少的症状,菌丝生长降低。另外,过表达PpPR-10的植物在原代组织中组成性地产生细胞壁沉积。 PpPR-10在拟南芥中的异位表达也导致对不规则假单胞菌的抗性增强,与野生型植物相比,病斑较小且细胞损伤较小。这些结果表明PpPR-10在针对病原体 P的防御中具有功能活性。在两个 P中都是不规则的。 patens 拟南芥,这是两种进化远缘植物。因此, P。 patens 可以作为一种有趣的基因来提高开花植物对病原体感染的抵抗力。

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