ArticlePloS one2014
Bioinformatic analysis reveals genome size reduction and the emergence of tyrosine phosphorylation site in the movement protein of New World bipartite begomoviruses.
Article in PloS one, 2014. The graph could read no effect estimate from its abstract, so it casts no vote on the map. Cited by 13 papers.
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Who cites it
13 citing papers in PubMed.
- Phylogeographic analysis ofThe Journal of general virology · 2024Article
- Reassortments in single-stranded DNA multipartite viruses: Confronting expectations based on molecular constraints with field observations.Virus evolution · 2024Review
- Limited role of recombination in the global diversification of begomovirus DNA-B proteins.Virus research · 2023Article
- How To Be a Successful Monopartite Begomovirus in a Bipartite-Dominated World: Emergence and Spread of Tomato Mottle Leaf Curl Virus in Brazil.Journal of virology · 2022Article
- Emergence of Asian endemic begomoviruses as a pandemic threat.Frontiers in plant science · 2022Review
- Natural occurrence of mesta yellow vein mosaic virus and DNA-satellites in ornamental sunflower (Saudi journal of biological sciences · 2021Article
- Article
- Interspecies Recombination Has Driven the Macroevolution of Cassava Mosaic Begomoviruses.Journal of virology · 2021Article
- Molecular phylogenetics and evolutionary analysis of a highly recombinant begomovirus, Cotton leaf curl Multan virus, and associated satellites.Virus evolution · 2021Article
- Biology and Interaction of the Natural Occurrence of Distinct Monopartite Begomoviruses Associated With Satellites inFrontiers in microbiology · 2020Article
- Tomato Twisted Leaf Virus: A Novel Indigenous New World Monopartite Begomovirus Infecting Tomato in Venezuela.Viruses · 2019Article
- Genome wide molecular evolution analysis of begomoviruses reveals unique diversification pattern in coat protein gene of Old World and New World viruses.Virusdisease · 2019Article
- Article
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Authors and funding
3 authors.
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Abstract
Begomovirus (genus Begomovirus, family Geminiviridae) infection is devastating to a wide variety of agricultural crops including tomato, squash, and cassava. Thus, understanding the replication and adaptation of begomoviruses has important translational value in alleviating substantial economic loss, particularly in developing countries. The bipartite genome of begomoviruses prevalent in the New World and their counterparts in the Old World share a high degree of genome homology except for a partially overlapping reading frame encoding the pre-coat protein (PCP, or AV2). PCP contributes to the essential functions of intercellular movement and suppression of host RNA silencing, but it is only present in the Old World viruses. In this study, we analyzed a set of non-redundant bipartite begomovirus genomes originating from the Old World (N = 28) and the New World (N = 65). Our bioinformatic analysis suggests ∼ 120 nucleotides were deleted from PCP's proximal promoter region that may have contributed to its loss in the New World viruses. Consequently, genomes of the New World viruses are smaller than the Old World counterparts, possibly compensating for the loss of the intercellular movement functions of PCP. Additionally, we detected substantial purifying selection on a portion of the New World DNA-B movement protein (MP, or BC1). Further analysis of the New World MP gene revealed the emergence of a putative tyrosine phosphorylation site, which likely explains the increased purifying selection in that region. These findings provide important information about the strategies adopted by bipartite begomoviruses in adapting to new environment and suggest future in planta experiments.
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