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Molecular characterization and expression analysis of phosphate transporter gene TaPT2-1 in wheat (Triticum aestivum L.)

机译:小麦(Triticum aestivum L.)磷酸转运蛋白基因TaPT2-1的分子表征和表达分析

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摘要

A transcript-derived fragment (TDF) showing up-regulated expression under low Pi stress and being identical to an uncharacterized phosphate transporter gene TaPT2-1 was cloned in wheat. TaPT2-1 was 2075 bp in length and encoded a 568-aa polypeptide. Transmembrane prediction analysis suggested that TaPT2-1 had 13 conserved transmembrane domains. TaPT2-1 shared much higher similarities to other four homologs from Arabidopsis thaliana, Solanum tuberosum, Capsicum frutescens, and Solanum melongena. The expression of TaPT2-1 was root specific and low Pi inducible, suggesting that it plays roles in roots and is involved in the Pi acquisition under Pi-starved condition. The promoter region of TaPT2-1 was cloned based on genome walk analysis. Several types of cis-regulatory elements, such as low Pi responding and tissue specific, were identified in TaPT2-1 promoter. The transgenic tobacco plants with the integrated TaPT2-1 promoter GUS were generated, and GUS histochemical staining analysis in the roots and leaves of the transgenic plants was performed. The results of GUS staining in roots and leaves under various Pi supply conditions were in accordance with the TaPT2-1 transcripts detected based on RT-PCR analysis. Taken together, the distinct expression of low Pi-induced and root-specific TaPT2-1 suggested that it could be used as the potential gene resource on generation of elite crop germplasms with high Pi use efficiency in the future.
机译:在低Pi胁迫下显示上调表达并与未表征的磷酸转运蛋白基因TaPT2-1相同的转录本片段(TDF)被克隆到小麦中。 TaPT2-1的长度为2075bp,并编码568-aa多肽。跨膜预测分析表明TaPT2-1具有13个保守的跨膜结构域。 TaPT2-1与拟南芥,马铃薯,辣椒辣椒和茄子的其他四个同源物具有更高的相似性。 TaPT2-1的表达是根特异的并且可诱导低的Pi,表明它在根中起作用并且在Pi饥饿的条件下参与Pi的获得。基于基因组游动分析,克隆了TaPT2-1的启动子区域。在TaPT2-1启动子中鉴定了几种类型的顺式调控元件,例如低Pi响应和组织特异性。产生具有整合的TaPT2-1启动子GUS的转基因烟草植物,并对转基因植物的根和叶进行GUS组织化学染色分析。在不同的Pi供应条件下,根和叶中GUS染色的结果与基于RT-PCR分析检测到的TaPT2-1转录本一致。综上所述,低磷诱导的和根特异的TaPT2-1的独特表达表明,它可以作为未来高磷利用效率的优良作物种质产生的潜在基因资源。

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  • 来源
    《Frontiers of Agriculture in China》 |2011年第3期|p.274-283|共10页
  • 作者单位

    College of Agronomy, Agricultural University of Hebei, Baoding, 071001, China;

    College of Agronomy, Agricultural University of Hebei, Baoding, 071001, China;

    College of Agronomy, Agricultural University of Hebei, Baoding, 071001, China;

    College of Agronomy, Agricultural University of Hebei, Baoding, 071001, China;

    College of Life Sciences, Agricultural University of Hebei, Baoding, 071001, China;

    College of Life Sciences, Agricultural University of Hebei, Baoding, 071001, China;

    College of Life Sciences, Agricultural University of Hebei, Baoding, 071001, China;

    College of Agronomy, Agricultural University of Hebei, Baoding, 071001, China;

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

    wheat (Triticum aestivum L.); phosphate transporter; expression; cis-regulatory element;

    机译:小麦;磷酸盐转运蛋白;表达;顺式调控元件;

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