SCLEROTINIA

作品数:46被引量:147H指数:7
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相关领域:农业科学更多>>
相关作者:周如军傅俊范朱福兴周锋吴汉章更多>>
相关机构:沈阳农业大学南京农业大学华中农业大学中国农业大学更多>>
相关期刊:《武汉生物工程学院学报》《Progress in Natural Science:Materials International》《Molecular Plant》《世界农药》更多>>
相关基金:国家自然科学基金公益性行业(农业)科研专项国家高技术研究发展计划国家重点基础研究发展计划更多>>
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Host-induced gene silencing of multiple pathogenic factors of Sclerotinia sclerotiorum confers resistance to Sclerotinia rot in Brassica napus被引量:3
《The Crop Journal》2022年第3期661-671,共11页Jian Wu Shengliang Yin Li Lin Dongxiao Liu Sichao Ren Wenjing Zhang Wencheng Meng Peipei Chen Qinfu Sun Yujie Fang Cunxu Wei Youping Wang 
the National Natural Science Foundation of China(32072020,U20A2028,and 31901504);the Jiangsu Agricultural Science and Technology Innovation Fund(CX(20)3120);the Project of Special Funding for Crop Science Discipline Development(yzuxk202006);the Priority Academic Program Development of Jiangsu Higher Education Institutions and the Qinglan Project of Yangzhou University。
Sclerotinia sclerotiorum is generally considered one of the most economically damaging pathogens in oilseed rape(Brassica napus).Breeding for Sclerotinia resistance is challenging,as no immune germplasm available in B...
关键词:Sclerotinia sclerotiorum Brassica napus SIGS HIGS RNAi 
Root Plate Growth in Sunflower and Its Relevance to Sclerotinia Basal Stalk Rot
《American Journal of Plant Sciences》2022年第3期359-370,共12页Christopher G. Misar 
Sclerotinia basal stalk rot (BSR) of sunflower (Helianthus annuus L.) is a fungal disease of the roots that causes symptoms of wilt and a basal stem lesion. Evaluating root plate growth could improve our understanding...
关键词:Canopy Closure Inoculation Method Root Plate Diameter Sclerotinia Wilt 
软枣猕猴桃菌核病病菌生物学特性及药剂防治研究被引量:3
《东北农业科学》2021年第6期64-69,共6页孙东晗 林碧蓉 白小隆 王晓梅 白庆荣 
国家自然科学基金项目(31500022)。
本研究运用组织分离法从软枣猕猴桃患病根部分离获得10个具有致病性的菌株。通过形态学和分子生物学鉴定,确定病原菌为Sclerotinia nivalis(核盘菌)。对Sclerotinia nivalis进行生物学特性和药剂敏感性研究。研究结果显示,病菌菌丝最适...
关键词:软枣猕猴桃 Sclerotinia nivalis 病原鉴定 生物学特性 药剂敏感性 
Three Sclerotinia species as the cause of white mold on pea in Chongqing and Sichuan of China
《Journal of Integrative Agriculture》2021年第11期2957-2965,共9页DENG Dong SUN Su-li DU Chen-zhang XIANG Chao LONG Jue-chen CHEN Wei-dong ZHU Zhen-dong 
supported by the China Agriculture Research System of MOF and MARA(CARS-08);the National Crop Germplasm Resources Center of China(NCGRC-2020-09);the Scientific Innovation Program of the Chinese Academy of Agricultural Sciences。
White mold of pea caused by Sclerotinia sclerotiorum is a common disease in China.However,we discovered that the diverse Sclerotinia species could cause white mold on pea plants in Chongqing and Sichuan of China durin...
关键词:Pisum sativum white mold Sclerotinia sclerotiorum Sclerotinia minor Sclerotinia trifoliorum 
A 2-kb Mycovirus Converts a Pathogenic Fungus into a Beneficial Endophyte for Brassica Protection and Yield Enhancement被引量:15
《Molecular Plant》2020年第10期1420-1433,共14页Hongxiang Zhang Jiatao Xie Yanping Fu Jiasen Cheng Zheng Qu Zhenzhen Zhao Shufen Cheng Tao Chen Bo Li Qianqian Wang Xinqiang Liu Binnian Tian David B.Collinge Daohong Jiang 
the National Science Foundation of China(31430070);the National Key R&D Program(2017YFD0200602);the China Agriculture Research System(CARS-12).
Mycoviruses are viruses that infect fungi,and hypovirulence-associated mycoviruses have the potential to control fungal diseases.However,it is unclear how mycovirus-mediated hypovirulent strains live and survive in th...
关键词:MYCOVIRUS SCLEROTINIA sclerotiorum ENDOPHYTE RAPESEED stem rot biological control BRASSICA NAPUS 
Genome-Wide Identification and Expression Profiling Suggest that Invertase Genes Function in Silique Development and the Response to Sclerotinia sclerotiorum in Brassica napus
《Phyton-International Journal of Experimental Botany》2020年第2期253-273,共21页Jingsen Liu Jinqi Ma Ai Lin Chao Zhang Bo Yang Liyuan Zhang Lin Huang Jiana Li 
This work was supported by grants from the National Natural Science Foundation of China(31830067);National Key Research and Development Program of China(2018YFD0100504-05);the“111”Project(B12006).
Invertase(INV),a key enzyme in sucrose metabolism,irreversibly catalyzes the hydrolysis of sucrose to glucose and fructose,thus playing important roles in plant growth,development,and biotic and abiotic stress respons...
关键词:Brassica napus INVERTASE SCLEROTINIA WGCNA RNA-SEQ 
不同杀菌剂对油菜菌核病菌的防治效果研究被引量:5
《湖北农业科学》2019年第18期62-64,69,共4页徐雪亮 刘子荣 黄衍章 刘小娟 陈庆隆 熊焕华 姚英娟 王奋山 
江西省油菜产业技术体系岗位专家项目(JXARS-08-病虫害防治)
为了筛选适合江西省油菜菌核病菌(Sclerotinia sclerotiorum)防治的杀菌剂,采用菌落直径法和大田常规喷雾法,分别研究了8种化学杀菌剂对油菜菌核病菌的室内毒力及田间防治效果。结果表明,菌核病菌对戊唑醇、咪鲜胺、氟啶胺、多菌灵、啶...
关键词:油菜菌核病菌(Sclerotinia sclerotiorum) 化学杀菌剂 毒力 防治效果 
Identification of QTL and Analysis QTL with Tolerance to Sclerotinia sclerotiorum in Soybean被引量:1
《Journal of Northeast Agricultural University(English Edition)》2019年第3期9-17,共9页Zhao Xue Jiang Hai-peng Song Wei Feng Lei Tan Jia-qi Han Ying-peng Li Wen-bin 
Supported by the Youth Innovation Talent Project of the General Undergraduate Universities in Heilongjiang Province(UNPYSCT-2016145)
Soybean white mold(SWM) caused by Sclerotinia sclerotiorum is a serious disease of soybean and other plant, which is mainly distributed in the soybean producing areas of north China, east China, southwest and northeas...
关键词:SOYBEAN SCLEROTINIA sclerotiorum QTL mapping CANDIDATE gene 
Co-location of QTL for Sclerotinia stem rot resistance and flowering time in Brassica napus被引量:3
《The Crop Journal》2019年第2期227-237,共11页Jian Wu Peipei Chen Qing Zhao Guangqin Cai Yue Hu Yang Xiang Qingyong Yang Youping Wang Yongming Zhou 
supported by the National Natural Science Foundation of China(31671725,31601330,31330057);the National Key Basic Research Program of China(2015CB150201);Science&Technology Special Project of Guizhou Academy of Agricultural Sciences([2014] 014,[2017] 08);the China Postdoctoral Science Foundation(2015M581867,2016T90514)
Sclerotinia stem rot(SSR) caused by Sclerotinia sclerotiorum(Lib.) de Bary is one of the most devastating diseases of Brassica napus worldwide. Both SSR resistance and flowering time(FT) adaptation are major breeding ...
关键词:SCLEROTINIA stem ROT Brassica NAPUS QTL mapping FLOWERING time SNP array 
辣椒菌核病菌毒素的产生及其生物活性测定被引量:3
《湖北农业科学》2018年第14期53-55,63,共4页于舒怡 刘志恒 邵丹 刘长远 
采用马铃薯葡萄糖培养液培养和室内接种试验,开展辣椒菌核病菌(Sclerotinia sclerotiorum)毒素的时间序列分析及其生物活性测定。结果表明,辣椒菌核病菌分泌的毒素产物为草酸,随着菌丝的不断生长,病菌分泌的草酸浓度逐渐上升,当病菌生...
关键词:辣椒菌核病菌(Sclerotinia sclerotiorum) 草酸毒素 生物活性 
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