1.沈阳农业大学;2.辽宁农业职业技术学院
辽宁省自然科学基金(2023-MS-214);沈阳市种业创新科技专项(No. 22-318-2-16和 No. 23-4102-08)
1.Shenyang Agricultural University;2.Liaoning Agricultural Vocational and Technical College
Liaoning Provincial Natural Science Foundation(2023-MS-214); Science and Technology Program of Shenyang(No. 22-318-2-16 and No. 23-4102-08)
由土传性病原真菌齐整小核菌(Sclerotium rolfsii Sacc.)引起的白绢病是限制我国以及世界其他国家花生生产的一种毁灭性病害。为了发掘新的抗白绢病种质资源,本研究对703份花生种质资源进行了苗期抗性鉴定,结果显示3个病原分离物存在显著的致病力差异,不同来源的种质资源存在一定的抗性差异。苗期鉴定共获得了3份对3个分离物均表现中抗的种质资源SNHD132、SNHD072和白花生粉,对其进行离体接种和田间接种鉴定,结果显示这3个中抗资源在离体接种后病斑扩展显著小于感病对照资源,田间接种后3份中抗资源在植株死亡率、籽仁感染率和产量损失都显著低于感病对照资源。本研究结合苗期、离体和田间鉴定的方式获得了抗性资源,期望为今后抗白绢病新品种选育及抗性遗传相关研究提供优异资源和理论依据。
The stem rot caused by the soil-borne pathogenic fungus Sclerotium rolfsii Sacc. is a devastating disease that limits peanut production in China and other countries around the world. To explore novel resistant germplasm resources against this disease, our study conducted a seedling-stage resistance identification on 703 peanut germplasm resources. The results showed significant virulence differences among three pathogenic isolates, as well as certain resistance differences among the germplasm resources from various origins. Evaluation of seedling-stage identified three germplasm resources SNHD132, SNHD072, and Baihuashengfen exhibited resistance against all three isolates. Subsequently the three resistant varieties were subjected to both in vitro inoculation and field inoculation for resistance identification. The results indicated that after in vitro inoculation, the lesion expansion on the three resistant varieties was significantly smaller than that on the susceptible control materials. After field inoculation, the three resistant materials showed significantly lower plant mortality rate, seed infection rate, and yield loss compared to the susceptible control varieties. Combining seedling-stage, in vitro, and field identifications, this study obtained resistant resources and provides excellent materials and a theoretical basis for future breeding of new varieties resistant to stem rot disease and related genetic research.