Kang Byoung-Cheorl, Yeam Inhwa, Jahn Molly M
Department of Plant Breeding and Genetics, Cornell University, Ithaca, New York 14853, USA.
Annu Rev Phytopathol. 2005;43:581-621. doi: 10.1146/annurev.phyto.43.011205.141140.
Genetic resistance to plant viruses has been used for at least 80 years to control agricultural losses to viral diseases. To date, hundreds of naturally occurring genes for resistance to plant viruses have been reported from studies of both monocot and dicot crops, their wild relatives, and the plant model, Arabidopsis. The isolation and characterization of a few of these genes in the past decade have resulted in detailed knowledge of some of the molecules that are critical in determining the outcome of plant viral infection. In this chapter, we have catalogued genes for resistance to plant viruses and have summarized current knowledge regarding their identity and inheritance. Insofar as information is available, the genetic context, genomic organization, mechanisms of resistance and agricultural deployment of plant virus resistance genes are also discussed.
植物病毒的遗传抗性已被用于控制病毒性疾病造成的农业损失至少80年了。迄今为止,通过对单子叶和双子叶作物、它们的野生近缘种以及植物模式生物拟南芥的研究,已报道了数百个天然存在的植物病毒抗性基因。在过去十年中,对其中一些基因的分离和表征使我们对一些在决定植物病毒感染结果中起关键作用的分子有了详细了解。在本章中,我们已编录了植物病毒抗性基因,并总结了关于它们的身份和遗传的现有知识。只要有可用信息,我们还将讨论植物病毒抗性基因的遗传背景、基因组组织、抗性机制及农业应用。