首页> 外文期刊>Protoplasma: An International Journal of Cell Biology >Molecular cloning and functional analysis of the phosphomannomutase (PMM) gene from Dendrobium officinale and evidence for the involvement of an abiotic stress response during germination
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Molecular cloning and functional analysis of the phosphomannomutase (PMM) gene from Dendrobium officinale and evidence for the involvement of an abiotic stress response during germination

机译:萌发过程中副骨蛋白酶(PMM)基因的分子克隆与功能分析及萌发中非生物应激反应累及的证据

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摘要

Phosphomannomutase (PMM, EC 5.4.2.8) catalyzes the interconversion of mannose-6-phosphate to mannose-1-phosphate, the precursor for the synthesis of GDP-mannose. In this study, the complementary DNA (cDNA) of the Phosphomannomutase (PMM) gene was initially cloned from Dendrobium officinale by RACE method. Transient transform result showed that the DoPMM protein was localized in the cytoplasm. The DoPMM gene was highly expressed in the stems of D. officinale both in vegetative and reproductive developmental stages. The putative promoter was cloned by TAIL-PCR and used for searched cis-elements. Stress-related cis-elements like ABRE, TCA-element, and MBS were found in the promoter regions. The DoPMM gene was up-regulated after treatment with abscisic acid, salicylic acid, cold, polyethylene glycol, and NaCl. The total ascorbic acid (AsA) and polysaccharide content in all of the 35S::DoPMM Arabidopsis thaliana transgenic lines #1, #2, and #5 showed a 40, 39, and 31% increase in AsA and a 77, 22, and 39% increase in polysaccharides, respectively more than wild-type (WT) levels. All three 35S::DoPMM transgenic lines exhibited a higher germination percentage than WT plants when seeded on half-strength MS medium supplemented with 150 mM NaCl or 300 mM mannitol. These results provide genetic evidence for the involvement of PMM genes in the biosynthesis of AsA and polysaccharides and the mediation of PMM genes in abiotic stress tolerance during seed germination in A. thaliana.
机译:磷酰胺酶(PMM,EC 5.4.2.8)催化甘露糖-6-磷酸盐对甘露糖-1-磷酸盐的互连,用于合成GDP-甘露糖的前体。在该研究中,首先通过种族方法将磷酰胺化酶(PMM)基因的互补DNA(cDNA)从石斛属officinale中克隆。瞬态变换结果显示DOPMM蛋白在细胞质中局部化。 DOPMM基因在D. Officinale的茎中高度表达,植物和生殖发育阶段。推定的启动子通过尾PCR克隆并用于搜索的顺式元素。在启动子区域中发现了与ABRE,TCA元素和MB等相关的CIS元素。用积极酸,水杨酸,冷,聚乙二醇和NaCl处理后,DOPMM基因上调。所有35s :: dopmm Arabidopsis Thaliana转基因排序部分#1,#2和#5中的全部抗坏血酸(ASA)和多糖含量显示为ASA和77,22的40,39和31%和31%多糖增加39%,分别超过野生型(WT)水平。所有三种35s :: DOPMM转基因系列在播种含有150mM NaCl或300mM甘露醇的半强度MS培养基上时,萌发百分比比WT植物更高。这些结果为PMM基因参与在ASA和多糖生物合成中的遗传证据以及在A. Thaliana中种子萌发中的非生物胁迫耐受性的PMM基因的中介。

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