Pathogenesis-related protein-4 (PR-4) family is a group of proteins with a Barwin domain in C-terminus and generally thought to be involved in plant defense responses. However, their detailed roles are poorly understood in defense of apple plant against pathogenic infection. In the present study, a new PR-4 gene (designated as MdPR-4) was identified from Malus domestica, and its roles in defense responses of apple were investigated. The open reading frame of MdPR-4 gene is of 447 bp encoding a protein of 148 amino acids with a Barwin domain in C-terminus and a signal peptide of 26 amino acids in N-terminus. Sequence and structural analysis indicated that MdPR-4 protein belongs to class II of PR-4 family. The high-level expression of MdPR-4 was observed in flowers and leaves as revealed by quantitative real time PCR. The temporal expression analysis demonstrated that MdPR-4 expression could be up-regulated by Botryosphaeria dothidea infection and salicylic acid (SA) or methyl jasmonate (MeJA) treatment, but suppressed by diethyldithiocarbamic acid (DIECA). In vitro assays, recombinant MdPR-4 protein exhibited ribonuclease activity specific for single strand RNA and significant inhibition to hyphal growth of three apple pathogenic fungi B. dothidea, Valsa ceratosperma and Glomerella cingulata. Moreover, the inhibition was reduced by the presence of 5'-ADP. Taken all together, the results indicate that MdPR-4 protein is involved in the defense responses of apple against pathogenic attack by directly inhibiting hyphal growth, and the inhibition is correlated with its ribonuclease activity, where as MdPR-4 expression is regulated by both SA and JA signaling pathway.

译文

:发病相关蛋白4(PR-4)家族是一组在C末端带有Barwin域的蛋白,通常被认为与植物防御反应有关。但是,对于苹果植物抵抗病原体感染的作用,人们对其作用的详细了解甚少。在本研究中,从家蝇中鉴定出一个新的PR-4基因(称为MdPR-4),并研究了其在苹果防御反应中的作用。 MdPR-4基因的开放阅读框为447bp,编码148个氨基酸的蛋白质,在C端带有Barwin域,在N端具有26个氨基酸的信号肽。序列和结构分析表明,MdPR-4蛋白属于PR-4家族的II类。如实时定量PCR所揭示,在花和叶中观察到了MdPR-4的高水平表达。时间表达分析表明,MdPR-4表达可被多孢葡萄球菌感染和水杨酸(SA)或茉莉酸甲酯(MeJA)处理上调,但可被二乙基二硫代氨基甲酸(DIECA)抑制。在体外测定中,重组MdPR-4蛋白表现出对单链RNA特异的核糖核酸酶活性,并显着抑制了三种苹果病原真菌B.dothidea,Valsa ceratosperma和Glomerella cingulata的菌丝生长。此外,通过5'-ADP的存在降低了抑制作用。综上所述,结果表明MdPR-4蛋白通过直接抑制菌丝生长而参与苹果对病原体侵袭的防御反应,并且该抑制作用与其核糖核酸酶活性有关,因为MdPR-4的表达受两个SA的调节。和JA信号通路。

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