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首页> 外文期刊>Plant signaling & behavior >Lignin biosynthesis genes play critical roles in the adaptation of Arabidopsis plants to high-salt stress
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Lignin biosynthesis genes play critical roles in the adaptation of Arabidopsis plants to high-salt stress

机译:木质素生物合成基因在拟南芥植物的适应中发挥着关键作用,以高盐胁迫

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摘要

Salinity is a major abiotic stressor that limits the growth, development, and reproduction of plants. Our previous metabolic analysis of high salt-adapted callus suspension cell cultures from Arabidopsis roots indicated that physical reinforcement of the cell wall is an important step in adaptation to saline conditions. Compared to normal cells, salt-adapted cells exhibit an increased lignin content and thickened cell wall. In this study, we investigated not only the lignin biosynthesis gene expression patterns in salt-adapted cells, but also the effects of a loss-of-function of CCoAOMT1, which plays a critical role in the lignin biosynthesis pathway, on plant responses to high-salt stress. Quantitative real-time PCR analysis revealed higher mRNA levels of genes involved in lignin biosynthesis, including CCoAOMT1, 4CL1, 4CL2, COMT, PAL1, PAL2, and AtPrx52, in salt-adapted cells relative to normal cells, which suggests activation of the lignin biosynthesis pathway in salt-adapted cells. Moreover, plants harboring the CCoAOMT1 mutants, ccoaomt1-1 and ccoaomt1-2, were phenotypically hypersensitive to salt stress. Our study has provided molecular and genetic evidence indicating the importance of enhanced lignin accumulation in the plant cell wall during the responses to salt stress.
机译:盐度是一种主要的非生物压力源,限制了植物的生长,发育和繁殖。我们以前从拟南芥根系的高盐适应的愈伤组织悬浮细胞培养物的代谢分析表明,细胞壁的物理增强是适应盐水条件的重要步骤。与正常细胞相比,盐适应细胞表现出增加的木质素含量和增稠的细胞壁。在这项研究中,我们不仅研究了盐适应细胞中的木质素生物合成基因表达模式,还研究了CCOaomt1的函数丧失的影响,其在木质素生物合成途径中起着关键作用,对植物对高的植物反应作出关键作用 - 压力。定量实时PCR分析显示,在盐适应细胞中,包括CCOOMT1,4CL1,4CL2,COMT,PAL1,PAL2,COMT,PAL1,PAL2和ATPRX52,相对于正常细胞,其表明Lignin生物合成的激活盐适应细胞的途径。此外,含CCOAomt1突变体的植物,CCOAomt1-1和CCOaomt1-2对盐胁迫具有表型过敏。我们的研究提供了分子和遗传证据,表明在对盐胁迫的反应期间,在植物细胞壁中增强木质素积累的重要性。

著录项

  • 来源
    《Plant signaling & behavior》 |2019年第8期|共4页
  • 作者单位

    Gyeongsang Natl Univ Inst Agr &

    Life Sci Jinju South Korea;

    Gyeongsang Natl Univ Plant Mol Biol &

    Biotechnol Res Ctr Div Appl Life Sci BK21 Plus Program Jinju South Korea;

    Gyeongsang Natl Univ Plant Mol Biol &

    Biotechnol Res Ctr Div Appl Life Sci BK21 Plus Program Jinju South Korea;

    Gyeongsang Natl Univ Plant Mol Biol &

    Biotechnol Res Ctr Div Appl Life Sci BK21 Plus Program Jinju South Korea;

    Gyeongsang Natl Univ Plant Mol Biol &

    Biotechnol Res Ctr Div Appl Life Sci BK21 Plus Program Jinju South Korea;

    Konkuk Univ Dept Biomed Sci &

    Engn Seoul South Korea;

    Chonnam Natl Univ Dept Food &

    Nutr Gwangju South Korea;

    Gyeongsang Natl Univ Inst Agr &

    Life Sci Jinju South Korea;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 植物学;
  • 关键词

    Arabidopsis; salt stress; salt adaptation; lignin biosynthesis; CCoAOMT1;

    机译:拟南芥;盐胁迫;盐适应;木质素生物合成;CCOAOMT1;

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