Mondal Debayan, Mandal Somnath, Shil Sandip, Sahana Nandita, Pandit Goutam Kumar, Choudhury Ashok
1Department of Biochemistry, Uttar Banga Krishi Viswavidyalaya, Coochbehar, West Bengal India.
Regional Research Centre, ICAR-CPCRI, Mohitnagar, Jalpaiguri, West Bengal 735102 India.
Virusdisease. 2019 Mar;30(1):74-83. doi: 10.1007/s13337-019-00524-7. Epub 2019 Apr 4.
Begomoviruses (Family-) are plant infecting single stranded DNA viruses known to evolve very fast. Here, we have analysed the DNA-A sequences of 302 begomoviruses reported as 'type isolates' from different countries following the list of International Committee on Taxonomy of Viruses till 2017. Phylogenetic analysis was performed which revealed two major evolutionarily distinct groups namely Old World (OW) and New World (NW) viruses. Our work present evidence that gene has varied degree of diversification among the viruses reported from NW and OW. The NW viruses are more conserved in their gene sequences than that of OW viruses irrespective of host plant families. Further analysis reveals that gene differs in its recombination pattern among OW and NW viruses whereas gene is highly recombination prone in both OW and NW viruses. The sequence conservation in gene in NW viruses is a result of meagre recombination and subsequent low substitution rate in comparison to OW viruses. Our results demonstrated that the gene in NW viruses is less likely to possess nuclear localisation sequences than OW gene. Further we present evidence that the NW- is under the influence of strong purifying selection. We propose that the precoat protein () gene present exclusively in the 5' of cp gene in OW viruses is highly diversified and strong positive selection working on pcp gene might be attributing largely to the diversity of OW- gene.
双生病毒科是已知进化速度非常快的植物感染性单链DNA病毒。在此,我们按照国际病毒分类委员会截至2017年的病毒分类名录,分析了来自不同国家的302种被报道为“典型分离株”的双生病毒的DNA-A序列。进行了系统发育分析,结果揭示了两个主要的进化上不同的类群,即旧世界(OW)病毒和新世界(NW)病毒。我们的研究表明,在来自旧世界和新世界的病毒中,该基因具有不同程度的多样性。无论宿主植物科属如何,新世界病毒的该基因序列比旧世界病毒更为保守。进一步分析表明,旧世界和新世界病毒的该基因在重组模式上存在差异,而在旧世界和新世界病毒中该基因都极易发生重组。与旧世界病毒相比,新世界病毒中该基因的序列保守是重组稀少以及随后替换率较低的结果。我们的结果表明,新世界病毒中的该基因比旧世界病毒中的该基因更不太可能具有核定位序列。此外,我们表明新世界病毒受到强烈的纯化选择的影响。我们提出,仅存在于旧世界病毒cp基因5'端的前衣壳蛋白()基因高度多样化,作用于该前衣壳蛋白基因的强烈正选择可能在很大程度上导致了旧世界病毒该基因的多样性。