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GA信号因子SlMYB33对番茄开花时间及果实大小的影响 被引量:3
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作者 张波 张杰 +1 位作者 张颜 梁燕 《西北农业学报》 CAS CSCD 北大核心 2020年第12期1859-1866,共8页
以番茄Micro-Tom为材料,以GA信号转导因子GAMYB基因SlMYB33为对象,利用GUS组织化学染色分析SlMYB33在花和果实中的表达模式;其次,通过载体构建、遗传转化得到转基因植株,通过转基因植株的表型分析探究SlMYB33对番茄开花及果实发育的影... 以番茄Micro-Tom为材料,以GA信号转导因子GAMYB基因SlMYB33为对象,利用GUS组织化学染色分析SlMYB33在花和果实中的表达模式;其次,通过载体构建、遗传转化得到转基因植株,通过转基因植株的表型分析探究SlMYB33对番茄开花及果实发育的影响。结果表明,SlMYB33主要在番茄雄蕊和柱头中表达;在番茄Micro-Tom中过表达SlMYB33,获得OE3、OE4、OE5、OE6和OE7五个过表达株系;表型观察表明,SlMYB33的过量表达可导致番茄开花时间延迟,同时促进果实增大。 展开更多
关键词 番茄 slmyb33基因 过表达 开花时间 果实大小
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Histological,transcriptomic,and gene functional analyses reveal the regulatory events underlying gibberellin-induced parthenocarpy in tomato
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作者 Shaobo Niu Yu He +3 位作者 Siwei Yan Zhengliang Sun Run Cai Yan Zhang 《Horticultural Plant Journal》 SCIE CAS CSCD 2024年第1期156-170,共15页
Gibberellin(GA)is one of the major plant hormones that promote parthenocarpy,a highly valuable agronomic trait.Here,we demonstrated that exogenous GA3application triggered the formation of parthenocarpic fruits with s... Gibberellin(GA)is one of the major plant hormones that promote parthenocarpy,a highly valuable agronomic trait.Here,we demonstrated that exogenous GA3application triggered the formation of parthenocarpic fruits with smaller size but unchanged shape in tomato(Solanum lycopersicum).These fruits exhibited a thicker pericarp,undeveloped ovules,and few jelly tissues,leading to smaller locules with empty cavities.Histological investigation showed that GA treatment produced more cell layers with larger cells in the pericarp,suggesting its promotion in both cell division and expansion.Transcriptomic analyses between GA-3and mock-treated unpollinated ovaries/fruits identified a large number of differentially expressed genes related to hormones,cell division,cell expansion,and transcription factors,implying that they coordinately regulated parthenocarpy conferred by GA.In particular,the downregulation of five reported repressors of tomato parthenocarpy,including two auxin signaling components,AUXIN RESPONSE FACTOR5(SlARF5)and Sl ARF7,and three MADS-box genes,TOMATO APETALA3(TAP3),TOMATO PISTILLATA(TPI),and AGAMOUS-LIKE6(SlAGL6),after GA treatment might play a key role in this process.Furthermore,we found that the knockdown of a GA signaling factor SlMYB33,which was depressed by GA treatment,induced parthenocarpic fruit set in tomato,an effect that might have been achieved by enhancing GA biosynthesis and decreasing the expression of some repressors of tomato parthenocarpy.Thus,our results provide a basis for understanding the regulatory mechanism of GA in tomato parthenocarpy. 展开更多
关键词 TOMATO GIBBERELLIN PARTHENOCARPY HISTOLOGY Transcriptome slmyb33
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