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携带两种病毒部分外壳蛋白基因的不可翻译嵌合构建体赋予转基因东方甜瓜双病毒抗性

Double-Virus Resistance of Transgenic Oriental Melon Conferred by Untranslatable Chimeric Construct Carrying Partial Coat Protein Genes of Two Viruses.

作者信息

Wu Hui-Wen, Yu Tsong-Ann, Raja Joseph A J, Christopher Serene Judith, Wang Sine-Lan, Yeh Shyi-Dong

机构信息

Department of Plant Pathology, National Chung Hsing University, Taichung, Taiwan.

Department of Molecular Biotechnology, Da-Yeh University, Changhua, Taiwan.

出版信息

Plant Dis. 2010 Nov;94(11):1341-1347. doi: 10.1094/PDIS-11-09-0742.

Abstract

Production of oriental melon (Cucumis melo var. makuwa) in Asia is often limited by two potyviruses, the watermelon infecting type of Papaya ringspot virus (PRSV W) and Zucchini yellow mosaic virus (ZYMV). In order to engineer transgenic resistance to these two viruses, an untranslatable chimeric DNA comprising partial coat protein (CP) sequences of ZYMV and PRSV W was constructed and used to transform the elite cultivar of oriental melon, Silver Light, by Agrobacterium. Greenhouse evaluation by mechanical challenges with ZYMV and PRSV W, alone or together, identified transgenic lines exhibiting different levels of resistance or complete immunity to ZYMV and PRSV W. Molecular analyses of transgenic lines revealed random insertion of transgene into the host genome, with insert numbers differing among transformants. There was no correlation between transgene insert numbers and the degree of resistance expressed by transgenic lines. The levels of accumulation of transgene transcript varied among transgenic lines. However, an inverse correlation was observed between the level of accumulation of transgene transcripts and the degree of virus resistance. Moreover, small interfering (si)RNA was readily detected from the immune and highly resistant lines, but not from the weakly resistant and susceptible lines. Altogether, our results indicated that RNA-mediated post-transcriptional gene silencing (PTGS) was the underlying mechanism of double-virus resistance of the transgenic melon lines. The segregation analysis of the R progeny of the immune line ZW-1 indicated that the single inserted transgene is associated with the resistance phenotype and is inherited as a dominant trait. These transgenic melon lines with high degrees of resistance to ZYMV and PRSV W have great potential for the control of ZYMV and PRSV W in C. melo in Asia and elsewhere.

摘要

亚洲甜瓜(Cucumis melo var. makuwa)的生产常常受到两种马铃薯Y病毒的限制,即感染西瓜型番木瓜环斑病毒(PRSV-W)和小西葫芦黄花叶病毒(ZYMV)。为了构建对这两种病毒的转基因抗性,构建了一种包含ZYMV和PRSV-W部分外壳蛋白(CP)序列的不可翻译嵌合DNA,并通过农杆菌介导用于转化甜瓜优良品种“银辉”。通过单独或同时用ZYMV和PRSV-W进行机械接种在温室中进行评估,鉴定出对ZYMV和PRSV-W表现出不同抗性水平或完全免疫的转基因株系。对转基因株系的分子分析表明,转基因随机插入宿主基因组,不同转化体的插入数量不同。转基因插入数量与转基因株系表达的抗性程度之间没有相关性。转基因转录本的积累水平在不同转基因株系中有所不同。然而,观察到转基因转录本的积累水平与病毒抗性程度呈负相关。此外,在免疫和高抗株系中很容易检测到小干扰(si)RNA,而在弱抗和感病株系中则未检测到。总之,我们的结果表明,RNA介导的转录后基因沉默(PTGS)是转基因甜瓜株系对双病毒抗性的潜在机制。免疫株系ZW-1的R代分离分析表明,单个插入的转基因与抗性表型相关,并作为显性性状遗传。这些对ZYMV和PRSV-W具有高度抗性的转基因甜瓜株系在亚洲和其他地区控制甜瓜中的ZYMV和PRSV-W方面具有巨大潜力。

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