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作 者:刘枫楠 孙超毅 郭珍 刘莉铭[1] 吴会杰[1] 古勤生[1] 康保珊[1,2] LIU Fengnan;SUN Chaoyi;GUO Zhen;LIU Liming;WU Huijie;GU Qinsheng;KANG Baoshan(Zhengzhou Fruit Research Institute,Chinese Academy of Agricultural Sciences/Henan Key Laboratory of Fruit and Cucurbit Biology,Zhengzhou 450009,Henan,China;Zhongyuan Research Center,Chinese Academy of Agricultural Sciences,Xinxiang 453500,Henan,China;College of Horticulture,Nanjing Agricultural University,Nanjing 210095,Jiangsu,China;College of Bioengineering and Biotechnology,Tianshui Normal University,Tianshui 741001,Gansu,China)
机构地区:[1]中国农业科学院郑州果树研究所·河南省果树瓜类生物学重点实验室,郑州450009 [2]中国农业科学院中原研究中心,河南新乡453500 [3]南京农业大学园艺学院,南京210095 [4]天水师范学院生物工程与技术学院,甘肃天水741001
出 处:《中国瓜菜》2024年第12期54-59,共6页China Cucurbits And Vegetables
基 金:国家自然科学基金联合项目(U21A20229);中国农业科学院科技创新工程(CAAS-ASTIP-2022-ZFRI-09)。
摘 要:西瓜炭疽病对产业稳定发展构成严重威胁,是西瓜种植中急待解决的关键病害。为了鉴定西瓜炭疽病病原菌Colletotrichum orbiculare对不同西瓜种质资源的抗性,通过分离纯化自江苏盐城的西瓜病瓜中的病原菌,利用多种培养基进行产孢培养,筛选出最优产孢培养基为燕麦培养基。通过点滴法和喷雾法接种不同浓度的孢子悬浮液,确定了喷雾法及1×10^(5)个·mL^(-1)为最佳的接种方法和浓度。最后,对18份不同来源的西瓜种质资源进行苗期接种鉴定,筛选出高抗资源1份,抗病资源5份。研究结果在西瓜抗病育种中具有潜在的应用价值。Watermelon anthracnose poses a critical challenge to the stable development of the watermelon industry,and is a key disease that urgently needs to be addressed.The aims of this study is to identify the resistance of different watermelon varieties to the watermelon anthracnose pathogen,Colletotrichum orbiculare.By isolating and purifying the pathogen from diseased watermelon fruits in Yancheng,Jiangsu,and using various culture media for sporulation,the optimal sporulation medium was determined to be oat medium.Through inoculation with different concentrations of spore suspensions using both the drop method and spray method,the spray method with a concentration of 1×10^(5) spores·mL^(-1) was determined as the best inoculation method and concentration.Finally,18 watermelon germplasm resources from different sources were inoculated at the seedling stage,and 1 highly resistant resource and 5 resistant resources were screened out.The research results have potential application value in watermelon disease-resistant breeding.
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