ICAR-Indian Institute of Wheat and Barley Research, Regional Station, Shimla, Himachal Pradesh, 171002, India.
ICAR-Directorate of Cashew Research, Puttur, Karnataka, 574202, India.
Planta. 2019 Jul;250(1):1-22. doi: 10.1007/s00425-019-03167-6. Epub 2019 Apr 12.
Identification and functional characterization of plant pathogen effectors promise to ameliorate future research and develop effective and sustainable strategies for controlling or containing crop diseases. Wheat is the second most important food crop of the world after rice. Rust pathogens, one of the major biotic stresses in wheat production, are capable of threatening the world food security. Understanding the molecular basis of plant-pathogen interactions is essential for devising novel strategies for resistance breeding and disease management. Now, it has been established that effectors, the proteins secreted by pathogens, play a key role in plant-pathogen interactions. Therefore, effector biology has emerged as one of the most important research fields in plant biology. Recent advances in genomics and bioinformatics have allowed identification of a large repertoire of candidate effectors, while the evolving high-throughput tools have continued to assist in their functional characterization. The repertoires of effectors have become an important resource for better understanding of effector biology of pathosystems and resistance breeding of crop plants. In recent years, a significant progress has been made in the field of rust effector biology. This review describes the recent advances in effector biology of obligate fungal pathogens, identification and functional analysis of wheat rust pathogens effectors and the potential applications of effectors in molecular plant biology and rust resistance breeding in wheat.
鉴定和功能表征植物病原体效应子有望改善未来的研究,并为控制或遏制作物疾病开发有效和可持续的策略。小麦是仅次于水稻的世界第二大重要粮食作物。锈病病原体是小麦生产中的主要生物胁迫之一,能够威胁到世界粮食安全。了解植物-病原体相互作用的分子基础对于设计新的抗性育种和疾病管理策略至关重要。现在已经确定,病原体分泌的蛋白质效应子在植物-病原体相互作用中起着关键作用。因此,效应子生物学已成为植物生物学中最重要的研究领域之一。基因组学和生物信息学的最新进展允许鉴定大量候选效应子,而不断发展的高通量工具则继续协助其功能表征。效应子的库成为更好地理解植物病原系统的效应子生物学和作物植物抗性育种的重要资源。近年来,锈病效应子生物学领域取得了重大进展。本综述描述了专性真菌病原体效应子生物学、小麦锈病病原体效应子的鉴定和功能分析以及效应子在分子植物生物学和小麦锈病抗性育种中的潜在应用的最新进展。