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首页> 外文期刊>Plant Molecular Biology >Functional screening of cDNA library from a salt tolerant rice genotype Pokkali identifies mannose-1-phosphate guanyl transferase gene (OsMPG1) as a key member of salinity stress response
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Functional screening of cDNA library from a salt tolerant rice genotype Pokkali identifies mannose-1-phosphate guanyl transferase gene (OsMPG1) as a key member of salinity stress response

机译:从耐盐水稻基因型Pokkali筛选cDNA文库,确定甘露糖-1-磷酸鸟嘌呤转移酶基因(OsMPG1)是盐胁迫响应的关键成员

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摘要

Salinity, one of the most deleterious stresses, affects growth and overall yield of crop plants. To identify new “candidate genes” having potential role in salinity tolerance, we have carried out ‘functional screening’ of a cDNA library (made from a salt tolerant rice—Pokkali). Based on this screening, we identified a cDNA clone that was allowing yeast cells to grow in the presence of 1.2 M NaCl. Sequencing and BLAST search identified it as mannose-1-phosphate guanyl transferase (OsMPG1) gene from rice. Analysis of rice genome sequence database indicated the presence of 3 additional genes for MPG. Out of four, three MPG genes viz. OsMPG1, 3 and 4 were able to functionally complement yeast MPG mutant -YDL055C. We have carried out detailed transcript profiling of all members of MPG family by qRT-PCR using two contrasting rice genotypes (IR64 and Pokkali) under different abiotic stresses (salinity, drought, oxidative stress, heat stress, cold or UV light). These MPG genes showed differential expression under various abiotic stresses with two genes (OsMPG1 and 3) showing high induction in response to multiple stresses. Analysis of rice microarray data indicated higher expression levels for OsMPG1 in specific tissues such as roots, leaves, shoot apical meristem and different stages of panicle and seed development, thereby indicating its developmental regulation. Functional validation of OsMPG1 carried out by overexpression in the transgenic tobacco revealed its involvement in enhancing salinity stress tolerance.
机译:盐分是最有害的胁迫之一,它影响作物的生长和总产量。为了鉴定对盐分耐性具有潜在作用的新“候选基因”,我们对cDNA文库(由耐盐水稻—Pokkali制成)进行了“功能筛选”。基于此筛选,我们鉴定了一个允许酵母细胞在1.2 M NaCl存在下生长的cDNA克隆。测序和BLAST搜索将其鉴定为来自水稻的甘露糖-1-磷酸鸟苷转移酶(OsMPG1)基因。水稻基因组序列数据库的分析表明,还有3个MPG基因存在。在四分之三的MPG基因中。 OsMPG1、3和4能够在功能上与酵母MPG突变体-YDL055C互补。我们在不同的非生物胁迫(盐度,干旱,氧化胁迫,热胁迫,冷或紫外线)下,使用两种不同的水稻基因型(IR64和Pokkali),通过qRT-PCR对MPG家族的所有成员进行了详细的转录谱分析。这些MPG基因在各种非生物胁迫下均表现出差异表达,其中两个基因(OsMPG1和3)在应对多种胁迫时表现出高诱导性。水稻微阵列数据分析表明,OsMPG1在特定组织(例如根,叶,茎尖分生组织和圆锥花序和种子发育的不同阶段)中的表达水平较高,从而表明了其发育调控。通过在转基因烟草中过表达来进行OsMPG1的功能验证,表明其参与了盐分胁迫耐受性的增强。

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  • 来源
    《Plant Molecular Biology 》 |2012年第6期| p.555-568| 共14页
  • 作者单位

    Plant Molecular Biology, International Centre for Genetic Engineering and Biotechnology, Aruna Asaf Ali Marg, New Delhi, 110067, India;

    Plant Molecular Biology, International Centre for Genetic Engineering and Biotechnology, Aruna Asaf Ali Marg, New Delhi, 110067, India;

    Plant Molecular Biology, International Centre for Genetic Engineering and Biotechnology, Aruna Asaf Ali Marg, New Delhi, 110067, India;

    Plant Molecular Biology, International Centre for Genetic Engineering and Biotechnology, Aruna Asaf Ali Marg, New Delhi, 110067, India;

    Plant Molecular Biology, International Centre for Genetic Engineering and Biotechnology, Aruna Asaf Ali Marg, New Delhi, 110067, India;

    Plant Molecular Biology, International Centre for Genetic Engineering and Biotechnology, Aruna Asaf Ali Marg, New Delhi, 110067, India;

    Stress Physiology and Molecular Biology Laboratory, School of Life Sciences, Jawaharla;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Abiotic stress; cDNA library; Mannose-1-phosphate guanyl transferase; Microarray; qRT-PCR; Rice;

    机译:非生物胁迫;cDNA文库;1-磷酸甘露糖胍基转移酶;芯片;qRT-PCR;水稻;

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