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Expression analysis of the R2R3-MYB gene family in upland cotton and functional study of GhMYB3D5 in regulating Verticillium wilt resistance
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作者 Jie Liu Zhicheng Wang +15 位作者 Bin Chen Guoning Wang Huifeng Ke Jin Zhang Mengjia Jiao Yan Wang Meixia Xie Yanbin Li Dongmei Zhang Xingyi Wang Qishen Gu Zhengwen Sun Liqiang Wu Xingfen Wang Zhiying Ma Yan Zhang 《Journal of Integrative Agriculture》 SCIE CAS CSCD 2024年第10期3294-3310,共17页
Improving plant resistance to Verticillium wilt(VW),which causes massive losses in Gossypium hirsutum,is a global challenge.Crop plants need to efficiently allocate their limited energy resources to maintain a balance... Improving plant resistance to Verticillium wilt(VW),which causes massive losses in Gossypium hirsutum,is a global challenge.Crop plants need to efficiently allocate their limited energy resources to maintain a balance between growth and defense.However,few transcriptional regulators specifically respond to Verticillium dahliae and the underlying mechanism has not been identified in cotton.In this study,we found that the that expression of most R2R3-MYB members in cotton is significantly changed by V.dahliae infection relative to the other MYB types.One novel R2R3-MYB transcription factor(TF)that specifically responds to V.dahliae,GhMYB3D5,was identified.GhMYB3D5 was not expressed in 15 cotton tissues under normal conditions,but it was dramatically induced by V.dahliae stress.We functionally characterized its positive role and underlying mechanism in VW resistance.Upon V.dahliae infection,the up-regulated GhMYB3D5 bound to the GhADH1 promoter and activated GhADH1expression.In addition,GhMYB3D5 physically interacted with GhADH1 and further enhanced the transcriptional activation of GhADH1.Consequently,the transcriptional regulatory module GhMYB3D5-GhADH1 then promoted lignin accumulation by improving the transcriptional levels of genes related to lignin biosynthesis(GhPAL,GhC4H,Gh4CL,and GhPOD/GhLAC)in cotton,thereby enhancing cotton VW resistance.Our results demonstrated that the GhMYB3D5 promotes defense-induced lignin accumulation,which can be regarded as an effective way to orchestrate plant immunity and growth. 展开更多
关键词 COTTON verticillium wilt resistance GhMYB3D5 GhADH1 transcriptional regulatory module
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QTL Analysis of Fiber Yield and Quality and Resistance to Verticillium Wilt Using Gossypium hirsutum and G.barbadense Advanced Backcross Populations
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作者 LI Ai-guo1,2,LIU Guang-ping1,3,ZHANG Bao-cai1,LI Jun-wen1,SHI Yu-zhen1,LIU Ai-ying1,YANG Ze-mao1,3,LIU Zhi3,YU Xiao-nan2,WANG Tao1,YUAN You-lu1(1.Cotton Research Institute,Chinese Academy of Agricultural Sciences Key Laboratory of Cotton Genetic Improvement,Ministry of Agriculture,Anyang,Henan 455000,China +1 位作者 2.College of Agronomy,Hunan Agricultural University,Changsha,Hunan 410128,China 3.College of Life Science and Technology,Hunan Agricultural University,Changsha,Hunan 410128,China) 《棉花学报》 CSCD 北大核心 2008年第S1期21-,共1页
To introgress elite QTL alleles of Gossypium barbadense L.for fiber yield and quality and resistance to Verticillium wilt into G.hirsutum L.,enlarge the genetic base of G.hirsutum,and
关键词 interspecific backcrosss AB-QTL fiber quality YIELD verticillium wilt resistance
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Studies on Cotton Breeding Resistant to Fusarium and Verticillium wilt Diseases
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作者 YE Peng-sheng,ZENG Hua-lan,WEI Shu-gu,ZHANG Yu,LI Qiong-ying(Industrial Crops Research Institute,Sichuan Academy of Agricultural Science,Jianyang,Sichuan Province 641400,China) 《棉花学报》 CSCD 北大核心 2008年第S1期101-,共1页
Both Fusarium and Verticillium wilts are important soil-borne diseases,which can not be effectively controlled by chemical fungicides.The two diseases,especially Verticillium wilt,have
关键词 Studies on Cotton Breeding Resistant to Fusarium and verticillium wilt Diseases HIGH THAN
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