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Molecular Cloning and Biological Activity of α- β- and γ-Megaspermin Three Elicitins Secreted by Phytophthora megasperma H20

机译:巨大疫霉H20分泌的三种Elatins的α-β-和γ-Megaspermin分子克隆及生物学活性

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摘要

We report on the molecular cloning of the Phytophthora megasperma H20 (PmH20) glycoprotein shown previously as an inducer of the hypersensitive response, of localized acquired resistance and of systemic acquired resistance in tobacco (Nicotiana tabacum), and of the PmH20 α- and β-megaspermin, two elicitins of class I-A and I-B, respectively. The structure of the glycoprotein shows a signal peptide of 20 amino acids followed by the typical elicitin 98-amino acid-long domain and a 77-amino acid-long C-terminal domain carrying an O-glycosylated moiety. The molecular mass deduced from the translated cDNA sequence is 14,920 and 18,676 D as determined by mass spectrometry. This structure together with multiple sequence alignments and phylogenetic analyses indicate that the glycoprotein belongs to class III elicitins. It is the first class III elicitin protein characterized, which we named γ-megaspermin. We compared the biological activity of the three PmH20 elicitins when applied to tobacco cv Samsun NN plants. Although α- and γ-megaspermin were similarly active, β-megaspermin was the most active in inducing the hypersensitive response and localized acquired resistance, which was assessed by measuring the levels of acidic and basic pathogenesis-related proteins and of the antioxidant phytoalexin scopoletin. The three elicitins induced similar levels of systemic acquired resistance measured as the expression of acidic PR proteins and is increased resistance to challenge tobacco mosaic virus infection.
机译:我们报道了以前显示为超敏反应,烟草中局部获得性耐药和全身获得性耐药以及PmH20α-和β-的超敏反应的诱导物的巨大疫霉H20(PmH20)糖蛋白的分子克隆。 megaspermin,分别是IA和IB类的两种引发素。糖蛋白的结构显示了一个20个氨基酸的信号肽,其后是典型的elicitin 98氨基酸长的结构域和一个77氨基酸长的C端结构域,带有O-糖基化部分。通过质谱分析,由翻译的cDNA序列推导的分子量为14,920和18,676D。这种结构以及多个序列比对和系统发育分析表明,该糖蛋白属于III类引发素。它是第一个被表征的III类引发素蛋白,我们将其命名为γ-megaspermin。我们比较了三种应用于烟草cv Samsun NN植物的PmH20 elicitins的生物活性。尽管α和megaspermin具有相似的活性,但β-megaspermin在诱导超敏反应和局部获得性抗药性方面最活跃,可以通过测量酸性和基本发病机理相关蛋白以及抗氧化剂植物抗毒素scopoletin的水平来评估。与酸性PR蛋白的表达相比,这三种elicitins诱导的系统获得性抗性水平相似,并且增加了对烟草花叶病毒感染的抵抗力。

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