马尾松PmMYB169基因亚细胞定位及其超表达烟草低磷抗性分析
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国家重点研发项目(2017YFD0600303-4);国家自然科学基金项目(201660185)


Subcellular localization and low phosphorus tolerance analyses of masson pine (Pinus massoniana) PmMYB169 gene in over-expression transgenic tobacco
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    摘要:

    为探讨马尾松PmMYB169基因耐低磷胁迫功能,在前期克隆PmMYB169全长序列的基础上,构建pBWA(V)HS-PmMYB169-GLosgfp载体,在烟草中对PmMYB169基因进行亚细胞定位;通过农杆菌介导的叶盘法转化烟草,分析转基因植株对低磷胁迫的抗性。结果表明:PmMYB169基因在细胞核中行使功能;遗传转化获得22株转基因植株,对表达量较高的3个株系(Line-2、Line-11、Line-16)进行耐低磷分析显示,低磷胁迫下转基因烟草中磷含量、生物量、Apase活性、POD活性及SOD活性均显著高于野生型,而正常磷及高磷条件下两者并无明显差异,因此,超表达PmMYB169基因显著提高了植株的耐低磷能力。

    Abstract:

    MYB transcription factors play an important role in the response under low phosphorus stress.To further confirm the role of PmMYB169 cloned from masson pine (Pinus massoniana) in the response under low phosphorus stress,the pBWA(V)HS-PmMYB169-GLosgfp vector was constructed and subcellular localization of PmMYB169 was comducted in tobacco. Then,PmMYB169 was transformed into tobacco via Agrobacterium-mediated method,and the tolerances of over-expressed-PmMYB169 transgenic lines to low phosphorus stress were analyzed. The results showed that the PmMYB169 had function in the nucleus,and 22 transgenic lines were obtained.The phosphorus contents,biomass and activities of Apase,POD and SOD were significantly higher than those of the wild type under low phosphorus stress. There is no significant differences among the normal and higher phosphorus treatments. It is indicated that over-expression of PmMYB169 significantly increase the response ability of plants under low phosphorus stress.

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李慧平,王庆竹,汤纬玮,文晓鹏.马尾松PmMYB169基因亚细胞定位及其超表达烟草低磷抗性分析[J].华中农业大学学报,2018,37(04):58-64

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  • 在线发布日期: 2018-07-09
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