您好,欢迎访问江苏省农业科学院 机构知识库!

The escalating threat of Rhizoctonia cerealis, the causal agent of sharp eyespot In wheat

文献类型: 外文期刊

作者: Hamada, Mohamed Sobhy 1 ; Yin, Yanni 1 ; Chen, Huaigu 2 ; Ma, Zhonghua 1 ;

作者机构: 1.Zhejiang Univ, Inst Biotechnol, Key Lab Mol Biol Crop Pathogens & Insects, Hangzhou 310058, Zhejiang, Peoples R China

2.Jiangsu Acad Agr Sci, Inst Crop Protect, Nanjing, Peoples R China

关键词: sharp eyespot;Rhizoctonia cerealis;wheat;soilborne fungi

期刊名称:PEST MANAGEMENT SCIENCE ( 影响因子:4.845; 五年影响因子:4.674 )

ISSN:

年卷期:

页码:

收录情况: SCI

摘要: Rhizoctonia cerealis, the causal agent of sharp eyespot on wheat, was not considered to be an important pathogen for many years. Recently, the disease has become endemic in many countries except for South America. The disease has created a new threat to world wheat production because the damage of wheat sharp eyespot has become increasingly severe. In this paper, previous studies on this pathogen, including the disease geographical distribution, pathogen identification, life cycle, symptoms, favourable environmental conditions, effects on wheat yield and control strategy, are reviewed. Such information will be helpful in management of sharp eyespot.

  • 相关文献

[1]Quantitative trait loci for resistance to Sharp Eyespot (Rhizoctonia cerealis) in recombinant inbred wheat lines from the cross Niavt 14 x Xuzhou 25. Jiang, Yanjie,Zhu, Fangfang,Cai, Shibin,Wu, Jizhong,Zhang, Qiaofeng. 2016

[2]The wheat AGC kinase TaAGC1 is a positive contributor to host resistance to the necrotrophic pathogen Rhizoctonia cerealis. Zhu, Xiuliang,Yang, Kun,Wei, Xuening,Rong, Wei,Du, Lipu,Ye, Xingguo,Qi, Lin,Zhang, Zengyan,Zhang, Qiaofeng.

[3]Characterization of Rhizoctonia cerealis sensitivity to thifluzamide in China. Sun, Haiyan,Wang, Chengfeng,Li, Wei,Zhang, Aixiang,Deng, Yuanyu,Chen, Huaigu.

[4]Expression of a radish defensin in transgenic wheat confers increased resistance to Fusarium graminearum and Rhizoctonia cerealis. Li, Zhao,Zhang, Zengyan,Du, Lipu,Xu, Huijun,Xin, Zhiyong,Li, Zhao,Zhou, Miaoping,Ren, Lijuan,Zhang, Boqiao.

[5]Homozygous and heterozygous point mutations in succinate dehydrogenase subunits b, c and d of Rhizoctonia cerealis conferring resistance to thifluzamide. Sun, Hai-Yan,Lu, Chao-Qun,Li, Wei,Deng, Yuan-Yu,Chen, Huai-Gu.

[6]Detection and quantification of Rhizoctonia cerealis in soil using real-time PCR. Guo, Yingpeng,Li, Wei,Sun, Haiyan,Wang, Ning,Chen, Huaigu,Guo, Yingpeng,Yu, Hanshou. 2012

[7]MOLECULAR BREEDING FOR WHEAT FUSARIUM HEAD BLIGHT RESISTANCE IN CHINA. M, Hongxiang,Yao, Jinbao,Zhou, Miaoping,Zhang, Xu,Ren, Lijuan,Yu, Giuhong,Lu, Weizhong.

[8]A novel, in vivo, indoor method to preserve rice black-streaked dwarf virus in small brown planthopper using wheat seedling as a bridge host. Ren, Chunmei,Cheng, Zhaobang,Yang, Liu,Miao, Qian,Fan, Yongjian,Zhou, Yijun.

[9]Identification of novel quantitative trait loci for resistance to Fusarium seedling blight caused by Microdochium majus and M. nivale in wheat. Ren, Runsheng,Yang, Xingping,Ren, Runsheng,Foulkes, John,Mayes, Sean,Ray, Rumiana V..

[10]Photosynthetic and biochemical activities in flag leaves of a newly developed superhigh-yield hybrid rice (Oryza sativa) and its parents during the reproductive stage. Zhang, C. -J.,Chu, H. -J.,Chen, G. -X.,Shi, D. -W.,Zuo, M.,Wang, J.,Lu, C. -G.,Wang, P.,Chen, L..

[11]Overexpression of wheat lipid transfer protein gene TaLTP5 increases resistances to Cochliobolus sativus and Fusarium graminearum in transgenic wheat. Li, Zhao,Xu, Huijun,Du, Lipu,Zhang, Zengyan,Zhou, Miaoping.

[12]CLONING AND EXPRESSION ANALYSIS OF TWO UDP-GLUCOSYLTRANSFERASES GENES IN WHEAT. Lin, F. Y.,Shi, J. R.,Lu, Q. X.,Xu, J. H.,Yang, H. Y..

[13]Effect of environmental factors on Fusarium population and associated trichothecenes in wheat grain grown in Jiangsu province, China. Dong, Fei,Qiu, Jianbo,Xu, Jianhong,Yu, Mingzheng,Wang, Shufang,Shi, Jianrong,Sun, Yue,Zhang, Gufeng.

[14]PROGRESS ON INHERITANCE AND BREEDING FOR WHEAT SCAB RESISTANCE IN JAAS. Yao, Jinbao,Ma, Hongxiang,Lu, Weizhong.

[15]Resistance against Fusarium Head Blight in Transgenic Wheat Plants Expressing the ScNPR1 gene. Yu, Guihong,Zhang, Xu,Yao, Jingbao,Zhou, MiaoPing,Ma, Hongxiang.

[16]Natural occurrence of deoxynivalenol and zearalenone in wheat from Jiangsu province, China. Ji, Fang,Xu, Jianhong,Liu, Xin,Yin, Xianchao,Shi, Jianrong.

[17]Genotypically Identifying Wheat Mesophyll Conductance Regulation under Progressive Drought Stress. Olsovska, Katarina,Brestic, Marian,Shao, Hong Bo,Olsovska, Katarina,Kovar, Marek,Brestic, Marian,Zivcak, Marek,Slamka, Pavol,Shao, Hong Bo. 2016

[18]INHERITANCE AND CHROMOSOMAL LOCATIONS OF MALE-FERTILITY RESTORING GENE TRANSFERRED FROM AEGILOPS-UMBELLULATA ZHUK TO TRITICUM-AESTIVUM L. MA, ZQ,ZHAO, YH,SORRELLS, ME. 1995

[19]Different Tolerance in Bread Wheat, Durum Wheat and Barley to Fusarium Crown Rot Disease Caused by Fusarium pseudograminearum. Liu, Yaxi,Wei, Yuming,Zheng, Youliang,Liu, Yaxi,Ma, Jun,Yan, Wei,Liu, Chunji,Ma, Jun,Yan, Guijun,Yan, Wei,Zhou, Meixue,Zhou, Meixue. 2012

[20]Heme Oxygenase-1 is Associated with Wheat Salinity Acclimation by Modulating Reactive Oxygen Species Homeostasis. Xie, Yanjie,Cui, Weiti,Shen, Wenbiao,Yang, Qing,Xie, Yanjie,Cui, Weiti,Shen, Wenbiao,Yang, Qing,Yuan, Xingxing. 2011

作者其他论文 更多>>