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首页> 外文期刊>Plant Molecular Biology >Isolation and characterization of shs1, a sugar-hypersensitive and ABA-insensitive mutant with multiple stress responses
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Isolation and characterization of shs1, a sugar-hypersensitive and ABA-insensitive mutant with multiple stress responses

机译:具有多种胁迫反应的糖敏感性和ABA敏感性突变体shs1的分离和鉴定

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摘要

To identify salt tolerance determinants, we screened for double mutants from a T-DNA tagged sos3-1 mutant population in the Arabidopsis Col-0 gl1 background. The shs1-1 (sodium hypersensitive) sos3-1 mutant was isolated as more sensitive to NaCl than sos3-1 plants. TAIL-PCR revealed that the introduced T-DNA was located 62 bp upstream of the initiation codon of an adenylate translocator-like protein gene on chromosome IV. SHS1 mRNA did not accumulate in shs1-1 sos3-1 plants although it accumulated in shoots of both sos3-1 and the wild type plants, indicating that this gene is inactive in the mutant. Genetic co-linkage analysis revealed that the mutation causing the phenotype segregated as a recessive, single gene mutation. This mutant showed altered sensitive responses to salt as well as to cold stress. It also demonstrated sugar sensitive and ABA insensitive phenotypes including enhanced germination, reduced growth, altered leaf morphology, and necrosis on leaves at an early growth stage. Sensitivity of sos3-1 shs1-1 root growth to LiCl, KCl, and mannitol was not significantly different from growth of sos3-1 roots. Further, expression of 35S::SHS1 in sos3-1 shs1-1 plants complemented NaCl and sugar sensitivity and partially restored the leaf morphology.
机译:为了鉴定耐盐性决定因素,我们从拟南芥Col-0 gl1背景下的T-DNA标签sos3-1突变体群体中筛选了两个突变体。分离出shs1-1(钠超敏性)sos3-1突变体,其对NaCl的敏感性高于sos3-1植物。 TAIL-PCR显示,导入的T-DNA位于染色体IV上的腺苷酸易位蛋白样蛋白基因的起始密码子上游62bp处。尽管SHS1 mRNA在sos3-1和野生型植物的芽中均积累,但并未在shs1-1 sos3-1植物中积累,表明该基因在突变体中没有活性。遗传共链分析显示,导致表型的突变被分离为隐性单基因突变。该突变体显示出对盐以及冷胁迫的敏感反应改变。它还显示了对糖敏感和对ABA不敏感的表型,包括在早期生长阶段发芽增强,生长减少,叶片形态改变和叶片坏死。 sos3-1 shs1-1根生长对LiCl,KCl和甘露醇的敏感性与sos3-1根的生长无明显差异。此外,在sos3-1 shs1-1植物中35S :: SHS1的表达补充了NaCl和糖的敏感性,并部分恢复了叶片形态。

著录项

  • 来源
    《Plant Molecular Biology》 |2007年第3期|295-309|共15页
  • 作者单位

    Center for Plant Environmental Stress Physiology Purdue University 625 Agriculture Mall Drive West Lafayette IN 47907-2010 USA;

    Center for Plant Environmental Stress Physiology Purdue University 625 Agriculture Mall Drive West Lafayette IN 47907-2010 USA;

    Center for Plant Environmental Stress Physiology Purdue University 625 Agriculture Mall Drive West Lafayette IN 47907-2010 USA;

    Center for Plant Environmental Stress Physiology Purdue University 625 Agriculture Mall Drive West Lafayette IN 47907-2010 USA;

    Center for Plant Environmental Stress Physiology Purdue University 625 Agriculture Mall Drive West Lafayette IN 47907-2010 USA;

    Center for Plant Environmental Stress Physiology Purdue University 625 Agriculture Mall Drive West Lafayette IN 47907-2010 USA;

    Center for Plant Environmental Stress Physiology Purdue University 625 Agriculture Mall Drive West Lafayette IN 47907-2010 USA;

    Center for Plant Environmental Stress Physiology Purdue University 625 Agriculture Mall Drive West Lafayette IN 47907-2010 USA;

    Department of Agricultural Engineering and Agronomy University of Naples Federico II Via Università 100 Portici 80055 Italy;

    The Key Laboratory of Plant Cell and Chromosome Engineering Center of Agricultural Resources Institute of Genetics and Developmental Biology Chinese Academy of Sciences 286 Huaizhong Road Shijiazhuang Hebei 050021 China;

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

    Arabidopsis; Saline stress; Sugar sensitivity; Stress response; Adaptation;

    机译:拟南芥;盐胁迫;糖敏感性;胁迫反应;适应性;

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