First, second, and fourth authors: Department of EPPN, University of Idaho, Moscow; third author: Department of Horticulture, Oregon State University, Corvallis; and fourth author: Bioinformatics and Computational Biology Program, University of Idaho, Moscow.
Phytopathology. 2018 Aug;108(8):1011-1018. doi: 10.1094/PHYTO-01-18-0021-R. Epub 2018 Jun 25.
Recessive resistance to Bean common mosaic virus (BCMV) in common bean (Phaseolus vulgaris) is governed by four genes that include one strain-nonspecific helper gene bc-u, and three strain-specific genes bc-1, bc-2, and bc-3. The bc-3 gene was identified as an eIF4E translation initiation factor gene mediating resistance through disruption of the interaction between this protein and the VPg protein of the virus. The mode of action of bc-1 and bc-2 in expression of BCMV resistance is unknown, although bc-1 gene was found to affect systemic spread of a related potyvirus, Bean common mosaic necrosis virus. To investigate the possible role of both bc-1 and bc-2 genes in replication, cell-to-cell, and long-distance movement of BCMV in P. vulgaris, we tested virus spread of eight BCMV isolates representing pathogroups I, IV, VI, VII, and VIII in a set of bean differentials expressing different combinations of six resistance alleles including bc-u, bc-1, bc-1, bc-2, bc-2, and bc-3. All studied BCMV isolates were able to replicate and spread in inoculated leaves of bean cultivars harboring bc-u, bc-1, bc-1, bc-2, and bc-2 alleles and their combinations, while no BCMV replication was found in inoculated leaves of cultivar IVT7214 carrying the bc-u, bc-2, and bc-3 genes, except for isolate 1755a, which was capable of overcoming the resistance conferred by bc-2 and bc-3. In contrast, the systemic spread of all BCMV isolates from pathogroups I, IV, VI, VII, and VIII was impaired in common bean cultivars carrying bc-1, bc-1, bc-2, and bc-2 alleles. The data suggest that bc-1 and bc-2 recessive resistance genes have no effect on the replication and cell-to-cell movement of BCMV, but affect systemic spread of BCMV in common bean. The BCMV resistance conferred by bc-1 and bc-2 and affecting systemic spread was found only partially effective when these two genes were expressed singly. The efficiency of the restriction of the systemic spread of the virus was greatly enhanced when the alleles of bc-1 and bc-2 genes were combined together.
菜豆普通花叶病毒(BCMV)在普通菜豆(Phaseolus vulgaris)中的隐性抗性由四个基因控制,包括一个株系非特异性辅助基因 bc-u,以及三个株系特异性基因 bc-1、bc-2 和 bc-3。bc-3 基因被鉴定为 eIF4E 翻译起始因子基因,通过破坏该蛋白与病毒 VPg 蛋白的相互作用来介导抗性。bc-1 和 bc-2 基因在表达 BCMV 抗性中的作用方式尚不清楚,尽管发现 bc-1 基因会影响相关马铃薯 Y 病毒(Bean common mosaic necrosis virus)的系统传播。为了研究 bc-1 和 bc-2 基因在 BCMV 在普通菜豆中的复制、细胞间和长距离运动中的可能作用,我们在一组表达不同组合的 6 个抗性等位基因的菜豆鉴别品种中测试了代表 8 个 BCMV 分离株的病毒传播,这些等位基因包括 bc-u、bc-1、bc-1、bc-2、bc-2 和 bc-3。所有研究的 BCMV 分离株都能够在携带 bc-u、bc-1、bc-1、bc-2 和 bc-2 等位基因及其组合的菜豆品种的接种叶片中复制和传播,而在携带 bc-u、bc-2 和 bc-3 基因的 IVT7214 品种的接种叶片中没有发现 BCMV 复制,除了分离株 1755a,它能够克服 bc-2 和 bc-3 赋予的抗性。相比之下,来自 I、IV、VI、VII 和 VIII 组的所有 BCMV 分离株在携带 bc-1、bc-1、bc-2 和 bc-2 等位基因的普通菜豆品种中的系统传播受到了损害。数据表明,bc-1 和 bc-2 隐性抗性基因对 BCMV 的复制和细胞间运动没有影响,但影响 BCMV 在普通菜豆中的系统传播。当这两个基因单独表达时,仅发现 bc-1 和 bc-2 隐性抗性基因赋予的、影响系统传播的抗性具有部分有效性。当 bc-1 和 bc-2 基因的等位基因组合在一起时,对病毒系统传播的限制效率大大提高。