首页> 外文期刊>植物学报(英文版) >Early Transcriptomic Adaptation to Na2CO3 Stress Altered the Expression of a Quarter of the Total Genes in the Maize Genome and Exhibited Shared and Distinctive Profiles with NaCl and High pH Stresses
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Early Transcriptomic Adaptation to Na2CO3 Stress Altered the Expression of a Quarter of the Total Genes in the Maize Genome and Exhibited Shared and Distinctive Profiles with NaCl and High pH Stresses

机译:早期转录组适应Na2CO3胁迫改变了玉米基因组中总基因的四分之一的表达,并表现出NaCl和高pH胁迫的共享和独特的特征

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摘要

Sodium carbonate (Na2CO3) presents a huge challenge to plants by the combined damaging effects of Naþ, high pH, and CO32-. Little is known about the cellular responses to Na2CO3 stress. In this study, the transcriptome of maize (Zea mays L. cv. B73) roots exposed to Na2CO3 stress for 5 h was compared with those of NaCl and NaOH stresses. The expression of 8,319 genes, representing over a quarter of the total number of genes in the maize genome, was altered by Na2CO3 stress, and the downregulated genes (5,232) outnumbered the upregulated genes (3,087). The effects of Na2CO3 differed from those of NaCl and NaOH, primarily by downregulating different categories of genes. Pathways commonly altered by Na2CO3, NaCl, and NaOH were enriched in phenylpropanoid biosynthesis, oxidation of unsaturated fatty acids, ATP-binding cassette (ABC) transporters, as well as the metabolism of secondary metabolites. Genes for brassinosteroid biosynthesis were specifically upregulated by Na2CO3, while genes involved in ascorbate and aldarate metabolism, protein processing in the endoplasmic reticulum and by N-glycosylation, fatty acid biosynthesis, and the circadian rhythm were downregulated. This work provides the first holistic picture of early transcriptomic adaptation to Na2CO3 stress, and highlights potential molecular pathways that could be manipulated to improve tolerance in maize.
机译:碳酸钠(Na2CO3)通过Na3,高pH和CO32-的组合破坏作用对植物提出了巨大挑战。关于Na 2 CO 3胁迫的细胞反应知之甚少。在这项研究中,将暴露于Na2CO3胁迫5 h的玉米(Zea mays L. cv。B73)根的转录组与NaCl和NaOH胁迫进行比较。 Na2CO3胁迫改变了8,319个基因的表达,占玉米基因组总数的四分之一以上,而下调的基因(5,232个)超过上调的基因(3,087个)。 Na2CO3的影响不同于NaCl和NaOH,主要是通过下调不同类别的基因来实现的。通常被Na2CO3,NaCl和NaOH改变的途径富含苯丙烷生物合成,不饱和脂肪酸的氧化,ATP结合盒(ABC)转运蛋白以及次级代谢产物的代谢。 Na2CO3特异性上调油菜素类固醇生物合成的基因,而抗坏血酸和藻酸盐代谢,内质网中蛋白质加工以及N-糖基化,脂肪酸生物合成和昼夜节律的基因被上调。这项工作为早期转录组适应Na2CO3胁迫提供了第一张完整的图片,并突出了可以操纵以改善玉米耐性的潜在分子途径。

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  • 来源
    《植物学报(英文版)》 |2013年第11期|1147-1165|共19页
  • 作者单位

    Institute of Agricultural Biotechnology, Jilin Academy of Agricultural Sciences, Changchun 130124, China;

    Institute of Agricultural Biotechnology, Jilin Academy of Agricultural Sciences, Changchun 130124, China;

    Key Laboratory for Molecular Enzymology and Engineering of the Ministry of Education, Jilin University, Changchun 130012, China;

    Key Laboratory for Molecular Enzymology and Engineering of the Ministry of Education, Jilin University, Changchun 130012, China;

    Institute of Agricultural Biotechnology, Jilin Academy of Agricultural Sciences, Changchun 130124, China;

    Key Laboratory for Molecular Enzymology and Engineering of the Ministry of Education, Jilin University, Changchun 130012, China;

    Key Laboratory for Molecular Enzymology and Engineering of the Ministry of Education, Jilin University, Changchun 130012, China;

    The Key Laboratory of Plant Resources, Institute of Botany, The Chinese Academy of Sciences, Beijing 100093, China;

    Institute of Agricultural Biotechnology, Jilin Academy of Agricultural Sciences, Changchun 130124, China;

  • 收录信息 中国科学引文数据库(CSCD);中国科技论文与引文数据库(CSTPCD);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
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  • 入库时间 2024-01-27 02:49:59
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