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Generation of Wheat Transcription Factor FOX Rice Lines and Systematic Screening for Salt and Osmotic Stress Tolerance

机译:小麦转录因子FOX水稻品系的产生及其耐盐和渗透胁迫的系统筛选

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摘要

Transcription factors (TFs) play important roles in plant growth, development, and responses to environmental stress. In this study, we collected 1,455 full-length (FL) cDNAs of TFs, representing 45 families, from wheat and its relatives Triticum urartu, Aegilops speltoides, Aegilops tauschii, Triticum carthlicum, and Triticum aestivum. More than 15,000 T0 TF FOX (Full-length cDNA Over-eXpressing) rice lines were generated; of these, 10,496 lines set seeds. About 14.88% of the T0 plants showed obvious phenotypic changes. T1 lines (5,232 lines) were screened for salt and osmotic stress tolerance using 150 mM NaCl and 20% (v/v) PEG-4000, respectively. Among them, five lines (591, 746, 1647, 1812, and J4065) showed enhanced salt stress tolerance, five lines (591, 746, 898, 1078, and 1647) showed enhanced osmotic stress tolerance, and three lines (591, 746, and 1647) showed both salt and osmotic stress tolerance. Further analysis of the T-DNA flanking sequences showed that line 746 over-expressed TaEREB1, line 898 over-expressed TabZIPD, and lines 1812 and J4065 over-expressed TaOBF1a and TaOBF1b, respectively. The enhanced salt and osmotic stress tolerance of lines 898 and 1812 was confirmed by retransformation of the respective genes. Our results demonstrate that a heterologous FOX system may be used as an alternative genetic resource for the systematic functional analysis of the wheat genome.
机译:转录因子(TFs)在植物生长,发育以及对环境胁迫的反应中起重要作用。在这项研究中,我们从小麦及其亲缘种小麦(Triticum urartu),硬皮线虫(Aegilops speltoides),细角线虫(Aegilops tauschii),普通小麦(Triticum carthlicum)和普通小麦(Triticum aestivum)中收集了代表45个科的TF的1,455个全长(FL)cDNA。产生了超过15,000个T0 TF FOX(全长cDNA过表达)水稻系;其中,有10496株系种子。大约14.88%的T0植物表现出明显的表型变化。分别使用150 mM NaCl和20%(v / v)PEG-4000筛选T1品系(5,232品系)的盐和渗透胁迫耐受性。其中,五行(591、746、1647、1812和J4065)显示出更高的盐胁迫耐受性,五行(591、746、898、1078和1647)显示出更高的渗透胁迫耐受性,三行(591、746) ,和1647)同时显示了盐和渗透压耐受性。对T-DNA侧翼序列的进一步分析表明,分别为746行过表达的TaEREB1、898行过表达的TabZIPD,1812和J4065行过表达了TaOBF1a和TaOBF1b。 898和1812品系的盐和渗透胁迫耐受性增强,其通过各自基因的重新转化得以证实。我们的结果表明,异源FOX系统可以用作小麦基因组系统功能分析的替代遗传资源。

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