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The impact of constitutive heterologous expression of a moss Na+ transporter on the metabolomes of rice and barley

机译:moss Na + 转运蛋白的组成型异源表达对水稻和大麦代谢组的影响

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摘要

The metabolic profiles of rice and barley plants constitutively expressing a sodium-pumping ATPase (PpENA1) isolated from the bryophyte Physcomitrella patens were examined using GC-MS. Quantitative real-time PCR (qRT-PCR) was used to determine the mRNA levels of PpENA1 in root and leaf tissues of the transgenic rice and barley lines. PpENA1 mRNA levels were significantly higher in rice lines than in barley lines with the same dual CaMV35S promoter controlling PpENA1 transcription in both species. In rice, PpENA1 mRNA levels were greatest in the shoot whilst levels were greatest in the roots of barley. Metabolite profiles were determined in the flag leaf of both rice and barley plants grown under controlled conditions. A large proportion of the measured metabolites were significantly altered in the transgenic lines compared to null-segregating lines, revealing a considerable impact of expression of the sodium-pumping ATPase (PpENA1) transgene on metabolism. Interestingly, the metabolite changes were different between rice and barley, indicating different responses of rice and barley to the introduction of this gene.
机译:使用GC-MS检测了组成自苔藓植物小立碗藓属植物的构成钠表达ATP酶(PpENA1)的水稻和大麦植物的代谢谱。实时定量PCR(qRT-PCR)用于确定转基因水稻和大麦系根和叶组织中PpENA1的mRNA水平。水稻品系中的PpENA1 mRNA水平明显高于在两个物种中具有相同的双重CaMV35S启动子控制PpENA1转录的大麦品系。在水稻中,PpENA1 mRNA水平在芽中最高,而在大麦根部则最高。测定在受控条件下生长的水稻和大麦植物的旗叶中的代谢产物概况。与无效分离品系相比,在转基因品系中很大一部分被测代谢物发生了显着变化,表明钠泵ATPase(PpENA1)转基因的表达对代谢有相当大的影响。有趣的是,水稻和大麦之间的代谢物变化是不同的,表明水稻和大麦对该基因的引入有不同的反应。

著录项

  • 来源
    《Metabolomics》 |2007年第3期|307-317|共11页
  • 作者单位

    School of Agriculture Food and Wine University of Adelaide Waite Campus Glen Osmond SA 5064 Australia;

    Plant Biochemistry Laboratory Department of Plant Biology The Royal Veterinary and Agricultural University 40 Thorvaldsensvej DK-1871 Frederiksberg C Copenhagen Denmark;

    Australian Centre for Plant Functional Genomics School of Botany The University of Melbourne Melbourne 3010 VIC Australia;

    School of Agriculture Food and Wine University of Adelaide Waite Campus Glen Osmond SA 5064 Australia;

    Australian Centre for Plant Functional Genomics School of Botany The University of Melbourne Melbourne 3010 VIC Australia;

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

    GC-MS; metabolomics; ionomics; genetically-modified organism; Physcomitrella; sodium-pumping ATPase;

    机译:GC-MS;代谢组学;组学;基因修饰生物;小立碗藓;钠泵ATP酶;
  • 入库时间 2022-08-18 00:03:38

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