紫花苜蓿逆境响应转录因子MsNAC3基因克隆及表达分析
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国家自然科学基金(31360572)


Clone and Expression of the NAC Transcription Factor Gene MsNAC3 in Medicago sativa L.
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    摘要:

    该研究利用RTPCR和RACE技术,克隆了1个紫花苜蓿NAC类转录因子新基因,命名为MsNAC3(GenBank登录号为KC491186)。多重比对发现,MsNAC3蛋白与蒺藜苜蓿MtNAC和鹰嘴豆CarNAC5蛋白的同源性较高,其N端含有典型的NAC保守结构域,C端高度变异;进化树聚类分析表明,MsNAC3与紫花苜蓿MsNAC2和油菜BnNAC3亲缘关系较近,属于NAC蛋白的ATAF亚家族。洋葱亚细胞定位分析表明,MsNAC3定位于细胞核。转录水平表达分析表明,MsNAC3受盐、干旱、ABA和冷害胁迫诱导而显著升高,并且MsNAC3在根中的表达量要明显高于叶中。研究表明,MsNAC3基因可能作为一个正向调控因子在逆境胁迫信号转导过程中发挥重要作用。

    Abstract:

    In this study, a novel NAC transcription factor was cloned and identified from Medicago sativa, designated as MsNAC3(GenBank No.:KC491186), Multiple alignment of amino acid sequences revealed that MsNAC3 has a high homology with MtNAC in Medicago truncatula and CarNAC5 in Cicer arietinum. which has a typical NAC conserved domain at the Nterminal as well as a highly variable Cterminal. A phylogenetic cluster analysis indicated MsNAC3 belonged to the ATAF subfamily of NAC proteins and having a close genetic relationship with MsNAC2(Medicago sativa L.) and BnNAC3 (Brassica campestris L.). A subcellular localization analysis in onion indicates that MsNAC3 is located in the nucleus. Expression analysis verified that MsNAC3 expression level has a significant increase under salt, drought, ABA and cold stresses. As well as, the expression of MsNAC3 in roots was higher than in leaves. The above results indicated that MsNAC3 may play an important role in the processes of stresssignal transduction as a positive regulatory factor.

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申玉华,李雪梅,乔晓慧,等.紫花苜蓿逆境响应转录因子MsNAC3基因克隆及表达分析[J].西北植物学报,2017,37(10):1919-1925

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  • 在线发布日期: 2017-12-01
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