1 Shanxi Agricultural University, College of Agriculture, Taigu, Shanxi, 030800 China.
2 Department of Entomology, Plant Pathology and Nematology, University of Idaho, Moscow, ID, U.S.A.; and.
Plant Dis. 2019 Jun;103(6):1220-1227. doi: 10.1094/PDIS-08-18-1307-RE. Epub 2019 Apr 15.
Lima bean () is a popular cultivated legume vegetable grown in the United States for dry bean or canned bean production. In 2017, two symptomatic plants exhibiting mosaic, vein banding, and growth retardation were collected in a public garden in Honolulu, HI. Both samples contained bean common mosaic virus (BCMV), and the two BCMV isolates were subjected to biological characterization on a panel of 11 differential cultivars of common bean (), and to molecular characterization through whole genome sequencing. Both samples contained nearly identical BCMV sequences, named BCMV-A1, which, in turn, were 93% identical to the peanut stripe virus strain of BCMV. BCMV-A1 induced an unusually severe systemic necrosis in cultivar 'Dubbele Witte', and pronounced necrotic or chlorotic reaction in inoculated leaves of five other bean differentials. BCMV-A1 was able to partially overcome resistance alleles and expressed singly in common bean, inducing no systemic symptoms. Phylogenetic analysis of the BCMV-A1 sequence, and distinct biological reactions in common bean differentials suggested that BCMV-A1 represented a new lima bean strain of BCMV. In 2017, two BCMV isolates were collected in Idaho from common bean, and based on partial genome sequences were found 99% identical to the BCMV-A1 sequence. The data suggest that the lima bean strain of BCMV may have a wider circulation, including common bean as a host. This new strain of BCMV may thus pose a significant threat to common bean production.
利马豆()是一种在美国广泛种植的豆类蔬菜,用于干豆或罐装豆的生产。2017 年,在夏威夷火奴鲁鲁的一个公共花园中采集到两株表现为花叶、脉带和生长迟缓的症状的植物。这两个样本都含有豆普通花叶病毒(BCMV),并且对这两个 BCMV 分离物进行了生物学特征分析,包括 11 个普通豆的鉴别品种,以及通过全基因组测序进行了分子特征分析。这两个样本都含有几乎相同的 BCMV 序列,命名为 BCMV-A1,它与 BCMV 的花生条纹病毒株的同源性为 93%。BCMV-A1 在品种“Dubbele Witte”中引起了异常严重的系统性坏死,并在其他五个豆品种的接种叶片中引起明显的坏死或黄化反应。BCMV-A1 能够部分克服普通豆中的抗性等位基因和,单独表达时不会引起系统性症状。BCMV-A1 序列的系统发育分析以及普通豆鉴别品种中的明显生物学反应表明,BCMV-A1 代表了一种新的利马豆 BCMV 株系。2017 年,在爱达荷州从普通豆中采集到两个 BCMV 分离物,基于部分基因组序列,它们与 BCMV-A1 序列的同源性为 99%。数据表明,BCMV 的利马豆株系可能有更广泛的传播,包括普通豆作为宿主。这种新的 BCMV 株系可能对普通豆生产构成重大威胁。