Evolution of Plant RNA Viruses and Mechanisms in Overcoming Plant Resistance

Author:

Kim Myung-Hwi,Kwon Sun-Jung,Seo Jang-Kyun

Abstract

Plant RNA viruses are one of the most destructive pathogens that cause a significant loss in crop production worldwide. They have evolved with high genetic diversity and adaptability due to the short replication cycle and high mutation rate during genome replication, which are characteristics of RNA viruses. Plant RNA viruses exist as quasispecies with high genetic diversity; thereby, a rapid population transition with new fitness can occur due to selective pressure resulting from environmental changes. Plant resistance can act as selective pressure and affect the fitness of the virus, which may lead to the emergence of resistance-breaking variants. In this paper, we introduced the evolutionary perspectives of plant RNA viruses and the driving forces in their evolution. Based on this, we discussed the mechanism of the emergence of variant viruses that overcome plant resistance. In addition, strategies for deploying plant resistance to viral diseases and improving resistance durability were discussed.

Funder

Rural Development Administration

Korea Institute of Planning and Evaluation for Technology in Food, Agriculture and Forestry

Ministry of Agriculture, Food and Rural Affairs

Publisher

Korean Society of Plant Pathology

Subject

Plant Science,Agronomy and Crop Science,Molecular Biology,Biochemistry,Biotechnology

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