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AtMGT9基因T-DNA插入突变体表型分析
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作者 史佳 李健 +4 位作者 程伟 陈键 田连福 朱俊林 李东屏 《激光生物学报》 CAS CSCD 2010年第6期778-783,共6页
利用功能互补,对拟南芥AtMGT9基因的Mg^(2+)转运功能进行了研究。同时对AtMGT9的两个T-DNA插入突变体株系(mgt9-1,mgt9-2)进行表型分析,mgt9-1只能得到杂合体植株,有花粉败育现象,mgt9-2有纯合体,但没有可见表型。基因序列分析表明,mgt... 利用功能互补,对拟南芥AtMGT9基因的Mg^(2+)转运功能进行了研究。同时对AtMGT9的两个T-DNA插入突变体株系(mgt9-1,mgt9-2)进行表型分析,mgt9-1只能得到杂合体植株,有花粉败育现象,mgt9-2有纯合体,但没有可见表型。基因序列分析表明,mgt9-1中T-DNA插入位点在起始密码子后,mgt9-2中T-DNA插入位点在靠近C端第2个跨膜区中间位置。功能互补和^(63)Ni^(2+)示踪实验证明截短的mgt9-2蛋白能够互补细菌镁离子转运突变体MM281,具有全序列基因一样的转运特性,而mgt9-1不具有转运功能,是一个功能缺失突变体。这为进一步研究AtMGT9蛋白的结构与功能的关系奠定了基础。 展开更多
关键词 atmgt9 镁离子转运蛋白 功能互补 突变体
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Magnesium transporter AtMGT9 is essential for pollen development in Arabidopsis 被引量:12
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作者 Jian Chen Le-gong Li +7 位作者 Zhen-hua Liu Yu-ju Yuan Li-lin Guo Dan-dan Mao Lian-fu Tian Liang-bi Chen Sheng Luan Dong-ping Li 《Cell Research》 SCIE CAS CSCD 2009年第7期887-898,共12页
Magnesium (Mg^2+) is abundant in plant cells and plays a critical role in many physiological processes. A 10-member gene family AtMGT (also known as AtMRS2) was identified in Arabidopsis, which belongs to a eukar... Magnesium (Mg^2+) is abundant in plant cells and plays a critical role in many physiological processes. A 10-member gene family AtMGT (also known as AtMRS2) was identified in Arabidopsis, which belongs to a eukaryote subset of the CorA superfamily, functioning as Mg^2+ transporters. Some family members (AtMGT1 and AtMGT10) function as high-affinity Mg^2+ transporter and could complement bacterial mutant or yeast mutant lacking Mg^2+ transport capability. Here we report an AtMGT family member, AtMGT9, that functions as a low-affinity Mg^2+ transporter, and is essential for pollen development. The functional complementation assay in Salmonella mutant strain MM281 showed that AtMGT9 is capable of mediating Mg^2+ uptake in the sub-millimolar range of Mg^2+. The AtMGT9 gene was expressed most strongly in mature anthers and was also detectable in vascular tissues of the leaves, and in young roots. Disruption of AtMGT9 gene expression resulted in abortion of half of the mature pollen grains in heterozygous mutant +/mgt9, and no homozygous mutant plant was obtained in the progeny of selfed +/mgt9 plants. Transgenic plants expressing AtMGT9 in these heterozygous plants can recover the pollen phenotype to the wild type. In addition, At- MGT9 RNAi transgenic plants also showed similar abortive pollen phenotype to mutant +/mgt9. Together, our results demonstrate that AtMGT9 functions as a low-affinity Mg^2+ transporter that plays a crucial role in male gametophyte development and male fertility. 展开更多
关键词 Arabidopsis thaliana atmgt9 Mg^2+ transporter pollen grain
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