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番茄SlWRKY45转录因子在响应低温和干旱胁迫中的功能
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作者 樊蓓 任敏 +5 位作者 王延峰 党峰峰 陈国梁 程国亭 杨金雨 孙会茹 《植物学报》 北大核心 2025年第2期186-203,共18页
番茄(Solanum lycopersicum)在生长发育过程中常受到低温和干旱等多种非生物胁迫的影响。WRKY转录因子参与调控植物多种非生物胁迫响应过程,而SlWRKY45在番茄非生物胁迫中的功能尚不清楚。基因表达分析发现,低温、干旱和ABA处理均可显... 番茄(Solanum lycopersicum)在生长发育过程中常受到低温和干旱等多种非生物胁迫的影响。WRKY转录因子参与调控植物多种非生物胁迫响应过程,而SlWRKY45在番茄非生物胁迫中的功能尚不清楚。基因表达分析发现,低温、干旱和ABA处理均可显著诱导SlWRKY45的表达;过表达SlWRKY45可提高番茄对干旱和低温的耐受性;在干旱和低温处理下,过表达株系的光合指标、抗氧化酶活性和脯氨酸(Pro)含量显著高于野生型(WT),活性氧(ROS)和丙二醛(MDA)含量显著低于WT。转录组数据分析显示,SlWRKY45主要通过调控抗氧化酶活性和胁迫响应途径介导番茄对低温胁迫的响应。双荧光素酶报告基因检测发现,SlWRKY45可直接激活SlPOD1的表达。酵母双杂交(Y2H)和双分子荧光互补(BiFC)试验结果表明,SlWRKY45与SlWRKY46存在相互作用。综上表明,SlWRKY45可能通过直接调控抗氧化酶途径增强转基因番茄的抗逆性,为番茄的遗传改良提供了重要的候选基因资源。 展开更多
关键词 番茄 SlWRKY45 干旱胁迫 低温胁迫 抗氧化酶
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SlWRKY30 and SlWRKY81 synergistically modulate tomato immunity to Ralstonia solanacearum by directly regulating SlPR-STH2 被引量:4
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作者 fengfeng dang Jinhui Lin +5 位作者 Yajing Li Ruoyun Jiang Yudong Fang Fei Ding Shuilin He Yanfeng Wang 《Horticulture Research》 SCIE CSCD 2023年第5期99-111,共13页
Bacterial wilt is a devastating disease of tomato(Solanum lycopersicum)caused by Ralstonia solanacearum that severely threatens tomato production.Group III WRKY transcription factors(TFs)are implicated in the plant re... Bacterial wilt is a devastating disease of tomato(Solanum lycopersicum)caused by Ralstonia solanacearum that severely threatens tomato production.Group III WRKY transcription factors(TFs)are implicated in the plant response to pathogen infection;however,their roles in the response of tomato to R.solanacearum infection(RSI)remain largely unexplored.Here,we report the crucial role of SlWRKY30,a group III SlWRKY TF,in the regulation of tomato response to RSI.SlWRKY30 was strongly induced by RSI.SlWRKY30 overexpression reduced tomato susceptibility to RSI,and also increased H2O2 accumulation and cell necrosis,suggesting that SlWRKY30 positively regulates tomato resistance to RSI.RNA sequencing and reverse transcription–quantitative PCR revealed that SlWRKY30 overexpression significantly upregulated pathogenesis-related protein(SlPR-STH2)genes SlPR-STH2a,SlPR-STH2b,SlPR-STH2c,and SlPR-STH2d(hereafter SlPR-STH2a/b/c/d)in tomato,and these SlPR-STH2 genes were directly targeted by SlWRKY30.Moreover,four group III WRKY proteins(SlWRKY52,SlWRKY59,SlWRKY80,and SlWRKY81)interacted with SlWRKY30,and SlWRKY81 silencing increased tomato susceptibility to RSI.Both SlWRKY30 and SlWRKY81 activated SlPR-STH2a/b/c/d expression by directly binding to their promoters.Taking these results together,SlWRKY30 and SlWRKY81 synergistically regulate resistance to RSI by activating SlPR-STH2a/b/c/d expression in tomato.Our results also highlight the potential of SlWRKY30 to improve tomato resistance to RSI via genetic manipulations. 展开更多
关键词 directly SYNERGISTIC IMMUNITY
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Red light induces salicylic acid accumulation by activating CaHY5 to enhance pepper resistance against Phytophthora capsici 被引量:2
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作者 Youxin Yang Yu Li +8 位作者 Yelan Guang Jinhui Lin Yong Zhou Ting Yu Fei Ding Yanfeng Wang Jinyin Chen Yanhong Zhou fengfeng dang 《Horticulture Research》 SCIE CSCD 2023年第11期240-252,共13页
Pepper(Capsicum annuum L.)is frequently challenged by various pathogens,among which Phytophthora capsici is the most devastating to pepper production.Red light signal acts as a positive induction of plant resistance a... Pepper(Capsicum annuum L.)is frequently challenged by various pathogens,among which Phytophthora capsici is the most devastating to pepper production.Red light signal acts as a positive induction of plant resistance against multiple pathogens.However,little is known about how the red light signal affects pepper resistance to P.capsici infection(PCI).Here,we report that red light regulates salicylic acid(SA)accumulation by activating elongated hypocotyl5(CaHY5),a basic leucine zipper(bZIP)transcription factor,thereby decreasing pepper susceptibility to PCI.Exogenous SA treatment reduced pepper susceptibility to PCI,while silencing of CaPHYB(a red light photoreceptor)increased its susceptibility.PCI significantly induced CaHY5 expression,and silencing of CaHY5 reduced SA accumulation,accompanied by decreases in the expression levels of phenylalanine ammonia-lyase 3(CaPAL3),CaPAL7,pathogenesis-related 1(CaPR1),and CaPR1L,which finally resulted in higher susceptibility of pepper to PCI.Moreover,CaHY5 was found to activate the expression of CaPAL3 and CaPAL7,which are essential for SA biosynthesis,by directly binding to their promoters.Further analysis revealed that exogenous SA treatment could restore the resistance of CaHY5-silenced pepper plants to PCI.Collectively,this study reveals a critical mechanism through which red light induces SA accumulation by regulating CaHY5-mediated CaPAL3 and CaPAL7 expression,leading to enhanced resistance to PCI.Moreover,red light-induced CaHY5 regulates pepper resistance to PCI,which may have implications for PCI control in protected vegetable production. 展开更多
关键词 PEPPER RESISTANCE light
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