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拟南芥fel2-1突变体的分子鉴定
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作者 田长恩 陈羽中 +4 位作者 王龙涛 梁创明 周玉萍 陈琼华 程惠贞 《广州大学学报(自然科学版)》 CAS 2013年第4期21-25,共5页
fel2-1被报道为一个在IQM2(At3g13600)基因中插有一个T-DNA的突变体,在白光和蓝光条件下呈现出长下胚轴的表型.文章报道了对该突变体进行分子鉴定的结果.首先利用PCR方法,验证了T-DNA在IQM2中的插入位点.因为该突变体的表型与蓝光受体... fel2-1被报道为一个在IQM2(At3g13600)基因中插有一个T-DNA的突变体,在白光和蓝光条件下呈现出长下胚轴的表型.文章报道了对该突变体进行分子鉴定的结果.首先利用PCR方法,验证了T-DNA在IQM2中的插入位点.因为该突变体的表型与蓝光受体隐花色素1(cryptocrome 1,CRY1)突变体的表型极为相似,所以继而对fel2-1中的CRY1基因进行了分子鉴定.结果表明,在该基因的起始密码ATG后第1 231 bp处也存在着一个T-DNA.因此,可以确定fel2-1是一个在IQM2和CRY1基因中都插有T-DNA的突变体,是研究IQM2和Cry1基因互作的良好材料. 展开更多
关键词 fel2-1 IQM2 cry1 分子鉴定
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Arabidopsis cryptochrome 1 promotes stomatal development through repression of AGB1 inhibition of SPEECHLESS DNA-binding activity 被引量:2
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作者 Xiaoli Cao Pengbo Xu +11 位作者 Yao Liu Guangqiong Yang Minqing Liu Li Chen Yingyu Cheng Peng Xu Langxi Miao Zhilei Mao Wenxiu Wang Shuang Kou Tongtong Guo Hong‐Quan Yang 《Journal of Integrative Plant Biology》 SCIE CAS CSCD 2021年第11期1967-1981,共15页
Cryptochromes are blue light photoreceptors that mediate various light responses in plants and mammals. The heterotrimeric G-protein is known to regulate various physiological processes in plants and mammals. In Arabi... Cryptochromes are blue light photoreceptors that mediate various light responses in plants and mammals. The heterotrimeric G-protein is known to regulate various physiological processes in plants and mammals. In Arabidopsis, cryptochrome 1(CRY1) and the G-protein β subunit AGB1 act antagonistically to regulate stomatal development.The molecular mechanism by which CRY1 and AGB1 regulate this process remains unknown.Here, we show that Arabidopsis CRY1 acts partially through AGB1, and AGB1 acts through SPEECHLESS(SPCH), a master transcription factor that drives stomatal initiation and proliferation, to regulate stomatal development. We demonstrate that AGB1 physically interacts with SPCH to block the b HLH DNA-binding domain of SPCH and inhibit its DNA-binding activity. Moreover, we demonstrate that photoexcited CRY1 represses the interaction of AGB1 with SPCH to release AGB1 inhibition of SPCH DNA-binding activity, leading to the expression of SPCH-target genes promoting stomatal development. Taken together, our results suggest that the mechanism by which CRY1 promotes stomatal development involves positive regulation of the DNA-binding activity of SPCH mediated by CRY1 inhibition of the AGB1-SPCH interaction. We propose that the antagonistic regulation of SPCH DNA-binding activity by CRY1 and AGB1 may allow plants to balance light and G-protein signaling and optimize stomatal density and pattern. 展开更多
关键词 cryptochrome 1(cry1) heterotrimeric G-proteinβ-subunit AGB1 SPEECHLESS DNA-binding activity stomatal development
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