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鉴定甜菜坏死黄脉病毒p25蛋白中诱导甜菜植株叶片产生抗性反应所需的氨基酸。

Identification of amino acids of the beet necrotic yellow vein virus p25 protein required for induction of the resistance response in leaves of Beta vulgaris plants.

作者信息

Chiba Soutaro, Miyanishi Masaki, Andika Ida Bagus, Kondo Hideki, Tamada Tetsuo

机构信息

Research Institute for Bioresources, Okayama University, Kurashiki, Okayama 710-0046, Japan.

出版信息

J Gen Virol. 2008 May;89(Pt 5):1314-1323. doi: 10.1099/vir.0.83624-0.

Abstract

The RNA3-encoded p25 protein of beet necrotic yellow vein virus (BNYVV) is responsible for the production of rhizomania symptoms of sugar beet roots (Beta vulgaris subsp. vulgaris). Here, it was found that the presence of the p25 protein is also associated with the resistance response in rub-inoculated leaves of sugar beet and wild beet (Beta vulgaris subsp. maritima) plants. The resistance phenotype displayed a range of symptoms from no visible lesions to necrotic or greyish lesions at the inoculation site, and only very low levels of virus and viral RNA accumulated. The susceptible phenotype showed large, bright yellow lesions and developed high levels of virus accumulation. In roots after Polymyxa betae vector inoculation, however, no drastic differences in virus and viral RNA accumulation levels were found between plants with susceptible and resistant phenotypes, except at an early stage of infection. There was a genotype-specific interaction between BNYVV strains and two selected wild beet lines (MR1 and MR2) and sugar beet cultivars. Sequence analysis of natural BNYVV isolates and site-directed mutagenesis of the p25 protein revealed that 3 aa residues at positions 68, 70 and 179 are important in determining the resistance phenotype, and that host-genotype specificity is controlled by single amino acid changes at position 68. The mechanism of the occurrence of resistance-breaking BNYVV strains is discussed.

摘要

甜菜坏死黄脉病毒(BNYVV)的RNA3编码的p25蛋白是甜菜根(Beta vulgaris subsp. vulgaris)产生根肿病症状的原因。在此,研究发现p25蛋白的存在还与甜菜和野生甜菜(Beta vulgaris subsp. maritima)植株摩擦接种叶片中的抗性反应有关。抗性表型在接种部位表现出一系列症状,从无可见病斑到坏死或灰白色病斑,且仅积累非常低水平的病毒和病毒RNA。感病表型表现为大的亮黄色病斑,并积累高水平的病毒。然而,在通过甜菜多黏菌载体接种后的根部,除了在感染早期外,感病和抗病表型植株之间在病毒和病毒RNA积累水平上未发现显著差异。BNYVV毒株与两个选定的野生甜菜品系(MR1和MR2)以及甜菜品种之间存在基因型特异性相互作用。对天然BNYVV分离株的序列分析和p25蛋白的定点诱变表明,第68、70和179位的3个氨基酸残基在决定抗性表型方面很重要,并且宿主基因型特异性由第68位的单个氨基酸变化控制。文中还讨论了抗性突破型BNYVV毒株出现的机制。

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