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来自印度南部的木薯感染双生病毒的生物多样性与重组

Biodiversity and recombination of cassava-infecting begomoviruses from southern India.

作者信息

Rothenstein D, Haible D, Dasgupta I, Dutt N, Patil B L, Jeske H

机构信息

Department of Molecular Biology and Plant Virology, University of Stuttgart, Stuttgart, Germany.

出版信息

Arch Virol. 2006 Jan;151(1):55-69. doi: 10.1007/s00705-005-0624-8. Epub 2005 Aug 23.

Abstract

Cassava mosaic disease (CMD) is caused by various begomoviruses of the family Geminiviridae leading to considerable crop losses in Africa and Asia. Recombination between their genomic components has generated new pathotypes with enhanced virulence in Africa. Here, we report about a survey on the biodiversity of begomoviruses in cassava from southern India (Tamil Nadu and Kerala states) performed in 2001 and 2002. Viral DNA A components from stem cuttings were analysed using polymerase chain reaction and restriction fragment length polymorphism. Eight representative examples were completely sequenced. The majority of DNA sequences (7 of 8) obtained were more closely related to that of Sri Lankan cassava mosaic virus (SLCMV) than of Indian cassava mosaic virus (ICMV). Only one sequence collected in Kerala was related to ICMV. The diversity of the SLCMV-like sequences was rather low compared to the variability of African viruses associated with cassava mosaic disease. Based on DNA A sequence data, all of these isolates should be classified as variants of SLCMV or ICMV. Phylogenetic analysis revealed mosaic structures within the DNA sequences which may indicate footprints of recombination events between ancestors of SLCMV and ICMV.

摘要

木薯花叶病(CMD)由双生病毒科的多种菜豆金色花叶病毒引起,在非洲和亚洲导致了相当严重的作物损失。其基因组组分之间的重组在非洲产生了毒力增强的新致病型。在此,我们报告一项于2001年和2002年对印度南部(泰米尔纳德邦和喀拉拉邦)木薯上的菜豆金色花叶病毒生物多样性进行的调查。利用聚合酶链反应和限制性片段长度多态性分析了茎段插条中的病毒DNA A组分。对八个代表性样本进行了全序列测定。获得的大多数DNA序列(8个中的7个)与斯里兰卡木薯花叶病毒(SLCMV)的序列相比,与印度木薯花叶病毒(ICMV)的序列关系更近。在喀拉拉邦采集的只有一个序列与ICMV相关。与和木薯花叶病相关的非洲病毒的变异性相比,SLCMV样序列的多样性相当低。基于DNA A序列数据,所有这些分离株都应归类为SLCMV或ICMV的变体。系统发育分析揭示了DNA序列中的镶嵌结构,这可能表明SLCMV和ICMV祖先之间重组事件的痕迹。

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