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作 者:王娟[1] 涂一怡 吕务云 陈易佳 李士朴 王玉春 陈雅楠 WANG Juan;TU Yiyi;LÜWuyun;CHEN Yijia;LI Shipu;WANG Yuchun;CHEN Yanan(College of Tea Science and Tea Culture,Zhejiang A&F University,Hangzhou 311300,China;Zhejiang Wanfu Tea Industry Development Co.Ltd.,Wenzhou 325200,China)
机构地区:[1]浙江农林大学茶学与茶文化学院,浙江杭州311300 [2]浙江万福茶业开发有限公司,浙江温州325200
出 处:《茶叶科学》2024年第5期807-815,共9页Journal of Tea Science
基 金:浙江省农业新品种选育重大科技专项-茶树(2021C02067-7);浙江农林大学人才启动项目(2022LFRO49);浙江农林大学学生科研训练项目(S202210341018)。
摘 要:在浙江省瑞安市茶园种植的嘉茗1号茶树上,夏秋季大面积发生一种未见报道的枝条枯萎病,发病枝条出现褐色不规则病斑,病斑可扩大蔓延至芽叶,造成茶芽枯萎,叶片卷曲皱缩,进而整个枝条枯萎死亡。利用组织分离法从发病枝条上分离得到1株真菌,结合菌株的形态特征以及ITS、TUB2和TEF1-α序列构建的多基因系统发育树分析,鉴定该菌株为梭孢葡萄座腔菌(Botryosphaeria fusispora)。室内致病力测试表明,B.fusispora通过伤口侵染茶树枝条造成枯萎病的发生。以上结果表明,作为新纪录种,B.fusispora是引起茶树该新病害发生的病原菌。采用室内菌丝生长速率抑制法测定了3种杀菌剂(百菌清、甲基硫菌灵和吡唑醚菌酯)对病原菌的抑制效果。结果表明,甲基硫菌灵和吡唑醚菌酯对B.fusispora均有较强的毒力,EC50值分别为1.91μg·mL^(-1)和2.25μg·mL^(-1)。During summer and autumn,serious new twig wilting occurs on a large scale in‘Jiaming No.1’tea gardens of Ruian City,Wenzhou,Zhejiang Province,China.The disease initially appears as irregular brown spots on the twigs,which later spread to shoots and leaves,causing the tea shoots to wilt and the leaves to curl and shrink,and eventually the whole branch to die.In this study,a strain was isolated and purified using the tissue isolation method.Combining the morphological characteristics with the phylogenetic analyses based on the sequences of the internal transcribed spacer regions(ITS),β-tubulin(TUB2),and the translation elongation factor1 alpha(TEF1-α),the isolated strain was identified as Botryosphaeria fusispora.Laboratory pathogenicity tests show that B.fusispora was the pathogen causing the twig wilting disease present on‘Jiaming No.1’.These results indicate that B.fusispora can be a new record species causing twig wilting on tea plants.In addition,mycelial growth inhibition tests were conducted to examine the sensitivity of the pathogen to three commercial fungicides,including chlorothalonil,thiophanate-methyl and pyraclostrobin.Among the tested fungicides,thiophanate-methyl was found to be the most effective in suppressing the radial growth of the strain,with an EC50 of 1.91μg·mL^(-1),followed by pyraclostrobin,with an EC50 of 2.25μg·mL^(-1).
分 类 号:S571.1[农业科学—茶叶生产加工] R435.711[农业科学—作物学]
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