Balaji V, Vanitharani R, Karthikeyan A S, Anbalagan S, Veluthambi K
Centre for Plant Molecular Biology, School of Biotechnology, Madurai Kamaraj University, 625 021, India.
J Biosci. 2004 Sep;29(3):297-308. doi: 10.1007/BF02702612.
Mungbean yellow mosaic virus-Vigna (MYMV-Vig), a Begomovirus that causes yellow mosaic disease, was cloned from field-infected blackgram (Vigna mungo). One DNA A clone (KA30) and five different DNA B clones (KA21, KA22, KA27, KA28 and KA34) were obtained. The sequence identity in the 150-nt common region (CR) between DNA A and DNA B was highest (95%) for KA22 DNA B and lowest (85.6%) for KA27 DNA B. The Rep-binding domain had three complete 11-nt (5'-TGTATCGGTGT-3') iterons in KA22 DNA B (and KA21, KA28 and KA34), while the first iteron in KA27 DNA B (5'-ATCGGTGT-3') had a 3-nt deletion. KA27 DNA B, which exhibited 93.9% CR sequence identity to the mungbean-infecting MYMV, also shared the 3-nt deletion in the first iteron besides having an 18-nt insertion between the third iteron and the conserved nonanucleotide. MYMV was found to be closely related to KA27 DNA B in amino acid sequence identity of BV1 (94.1%) and BC1 (97.6%) proteins and in the organization of nuclear localization signal (NLS), nuclear export signal (NES) and phosphorylation sites. Agroinoculation of blackgram (V. mungo) and mungbean (V. radiata) with partial dimers of KA27 and KA22 DNA Bs along with DNA A caused distinctly different symptoms. KA22 DNA B caused more intense yellow mosaic symptoms with high viral DNA titre in blackgram. In contrast, KA27 DNA B caused more intense yellow mosaic symptoms with high viral DNA titre in mungbean. Thus, DNA B of MYMVVig is an important determinant of host-range between V. mungo and V. radiata.
绿豆黄花叶病毒-豇豆株系(MYMV-Vig)是一种引起黄花叶病的双生病毒,从田间感染的黑豆(Vigna mungo)中克隆得到。获得了一个DNA A克隆(KA30)和五个不同的DNA B克隆(KA21、KA22、KA27、KA28和KA34)。DNA A和DNA B之间150个核苷酸的共同区域(CR)中的序列同一性,KA22 DNA B最高(95%),KA27 DNA B最低(85.6%)。复制结合结构域在KA22 DNA B(以及KA21、KA28和KA34)中有三个完整的11个核苷酸(5'-TGTATCGGTGT-3')重复序列,而KA27 DNA B中的第一个重复序列(5'-ATCGGTGT-3')有一个3个核苷酸的缺失。KA27 DNA B与感染绿豆的MYMV的CR序列同一性为93.9%,除了在第三个重复序列和保守的九核苷酸之间有一个18个核苷酸的插入外,第一个重复序列中也有3个核苷酸的缺失。发现MYMV在BV1(94.1%)和BC1(97.6%)蛋白的氨基酸序列同一性以及核定位信号(NLS)、核输出信号(NES)和磷酸化位点的组织方面与KA27 DNA B密切相关。用KA27和KA22 DNA B的部分二聚体与DNA A对黑豆(V. mungo)和绿豆(V. radiata)进行农杆菌接种,产生了明显不同的症状。KA22 DNA B在黑豆中引起更强烈的黄花叶症状,病毒DNA滴度高。相比之下,KA27 DNA B在绿豆中引起更强烈的黄花叶症状,病毒DNA滴度高。因此,MYMV-Vig的DNA B是绿豆和绿豆之间寄主范围的重要决定因素。