A plant virus evolved by acquiring multiple nonconserved genes to extend its host range
- 10 October 2011
- journal article
- Published by Proceedings of the National Academy of Sciences in Proceedings of the National Academy of Sciences
- Vol. 108 (42), 17366-17371
- https://doi.org/10.1073/pnas.1113227108
Abstract
Viruses have evolved as combinations of genes whose products interact with cellular components to produce progeny virus throughout the plants. Some viral genes, particularly those that are involved in replication and assembly, tend to be relatively conserved, whereas other genes that have evolved for interactions with the specific host for movement and to counter host-defense systems tend to be less conserved. Closteroviridae encode 1-5 nonconserved ORFs. Citrus tristeza virus (CTV), a Closterovirus, possesses nonconserved p33, p18, and p13 genes that are expendable for systemic infection of the two laboratory hosts, Citrus macrophylla and Mexican lime. In this study, we show that the extended host range of CTV requires these nonconserved genes. The p33 gene was required to systemically infect sour orange and lemon trees, whereas either the p33 or the p18 gene was sufficient for systemic infection of grapefruit trees and the p33 or the p13 gene was sufficient for systemic infection of calamondin plants. Thus, these three genes are required for systemic infection of the full host range of CTV, but different genes were specific for different hosts. Remarkably, either of two genes was sufficient for infection of some citrus hybrids. These findings suggest that CTV acquired multiple nonconserved genes (p33, p18, and p13) and, as a result, gained the ability to interact with multiple hosts, thus extending its host range during the course of evolution. These results greatly extend the complexity of known virus-plant interactions.Keywords
This publication has 41 references indexed in Scilit:
- Cellular factors in plant virus movement: At the leading edge of macromolecular trafficking in plantsVirology, 2011
- The N-Terminal Region of Wheat Streak Mosaic Virus Coat Protein Is a Host- and Strain-Specific Long-Distance Transport FactorJournal of Virology, 2011
- Isolates of Citrus tristeza virus that overcome Poncirus trifoliata resistance comprise a novel strainArchiv für die gesamte Virusforschung, 2010
- Cassava Brown Streak Virus ( Potyviridae ) Encodes a Putative Maf/HAM1 Pyrophosphatase Implicated in Reduction of Mutations and a P1 Proteinase That Suppresses RNA Silencing but Contains No HC-ProJournal of Virology, 2009
- The Big Bang of picorna-like virus evolution antedates the radiation of eukaryotic supergroupsNature Reviews Microbiology, 2008
- Citrus Tristeza Virus : Survival at the Edge of the Movement ContinuumJournal of Virology, 2008
- A member of a new genus in the Potyviridae infects RubusVirus Research, 2008
- Virus Counterdefense: Diverse Strategies for Evading the RNA-Silencing ImmunityAnnual Review of Microbiology, 2006
- Comparative and functional genomics of closterovirusesVirus Research, 2006
- The 6K2 Protein and the VPg of Potato Virus A Are Determinants of Systemic Infection in Nicandra physaloidesMolecular Plant-Microbe Interactions®, 1999