Rahman Mati Ur, Liu Xia, Wang Xiping, Fan Ben
Co-Innovation Center for Sustainable Forestry in Southern China, Department of Forest Protection, College of Forestry and Grassland, Nanjing Forestry University, Nanjing 210073, China.
State Key Laboratory of Crop Stress Biology in Arid Areas, College of Horticulture, Northwest A&F University, 712100 Yangling, Xianyang, Shaanxi, China.
Hortic Res. 2024 Jul 10;11(9):uhae182. doi: 10.1093/hr/uhae182. eCollection 2024 Sep.
Grapevine ( L.,) is among the world's leading fruit crops. The production of grapes is severely affected by many diseases including gray mold, caused by the necrotrophic fungus . Although all species can be hosts for , are particularly susceptible. Accordingly, this disease poses a significant threat to the grape industry and causes substantial economic losses. Development of resistant cultivars has progressed from incidental selection by farmers, to targeted selection through the use of statistics and experimental design, to the employment of genetic and genomic data. Emerging technologies such as marker-assisted selection and genetic engineering have facilitated the development of cultivars that possess resistance to . A promising method involves using the CRISPR/Cas9 system to induce targeted mutagenesis and develop genetically modified non-transgenic crops. Hence, scientists are now engaged in the active pursuit of identifying genes associated with susceptibility and resistance. This review focuses on the known mechanisms of interaction between the pathogen and its grapevine host. It also explores innate immune systems that have evolved in , with the objective of facilitating the rapid development of resistant grapevine cultivars.
葡萄(Vitis vinifera L.)是世界主要水果作物之一。葡萄生产受到包括灰霉病在内的多种病害的严重影响,灰霉病由坏死营养型真菌引起。虽然所有葡萄品种都可能是该病原菌的寄主,但某些品种尤其易感。因此,这种病害对葡萄产业构成重大威胁,并造成巨大经济损失。抗灰霉病葡萄品种的培育已从农民的偶然选择,发展到通过统计和实验设计进行定向选择,再到利用遗传和基因组数据。标记辅助选择和基因工程等新兴技术推动了抗灰霉病品种的培育。一种有前景的方法是利用CRISPR/Cas9系统诱导定向诱变,培育转基因非转基因作物。因此,科学家们目前正积极致力于鉴定与感病性和抗性相关的基因。本综述重点关注葡萄病原菌与其寄主葡萄之间已知的互作机制。同时也探讨了葡萄中进化出的固有免疫系统,以期推动抗灰霉病葡萄品种的快速培育。