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Cloning and expression analysis of 14 lipid transfer protein genes from Tamarix hispida responding to different abiotic stresses

机译:Tamarix hispida响应不同非生物胁迫的14种脂质转移蛋白基因的克隆和表达分析

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摘要

Plant lipid transfer proteins (LTPs) are ubiquitous lipid-binding proteins that are involved in various stress responses. In this study, we cloned 14 unique LTP genes (ThLTP 1–14) from Tamarix hispida Willd. (Tamaricaceae) to investigate their roles under various abiotic stress conditions. The expression profiles of the 14 ThLTPs in response to NaCl, polyethylene glycol (PEG), NaHCO3, CdCl2 and abscisic acid (ABA) exposure in root, stem and leaf tissues were investigated using real-time RT-PCR. The results showed that all 14 ThLTPs were expressed in root, stem and leaf tissues under normal growth conditions. However, under normal growth conditions, ThLTP abundance varied in each organ, with expression differences of 9000-fold in leaves, 540-fold in stems and 3700-fold in roots. These results indicated that activity and/or physiological importance of these ThLTPs are quite different. Differential expression of the 14 ThLTPs was observed ( 2-fold) for NaCl, PEG, NaHCO3 and CdCl2 in at least one tissue indicating that they were all involved in abiotic stress responses. All ThLTP genes were highly induced ( 2-fold) under ABA treatment in roots, stems and/or leaves, and particularly in roots, suggesting that ABA-dependent signaling pathways regulated ThLTPs. We hypothesize that ThLTP expression constitutes an adaptive response to abiotic stresses in T. hispida and plays an important role in abiotic stress tolerance.
机译:植物脂质转移蛋白(LTP)是普遍存在的脂质结合蛋白,参与各种胁迫反应。在这项研究中,我们从Ta柳(Tamarix hispida Willd)克隆了14个独特的LTP基因(ThLTP 1-14)。 (T科)研究它们在各种非生物胁迫条件下的作用。 NaCl,聚乙二醇(PEG),NaHCO 3 ,CdCl 2 和脱落酸(ABA)暴露于根,茎和叶中的14种ThLTP的表达谱使用实时RT-PCR研究组织。结果表明,在正常生长条件下,所有14种ThLTPs均在根,茎和叶组织中表达。然而,在正常的生长条件下,每个器官中的ThLTP丰度都不同,在叶子中的表达差异为9000倍,茎中为540倍,根中为3700倍。这些结果表明这些ThLTP的活性和/或生理重要性是完全不同的。在至少一种组织中观察到14种ThLTP的NaCl,PEG,NaHCO 3 和CdCl 2 差异表达(> 2倍),表明它们都参与了非生物应激反应。在ABA处理下,所有的ThLTP基因在根,茎和/或叶中,特别是在根中都被高度诱导(> 2倍),这表明ABA依赖性信号通路调节ThLTP。我们假设ThLTP表达构成了对T. hispida中非生物胁迫的适应性反应,并且在非生物胁迫耐受性中起重要作用。

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  • 来源
    《Tree Physiology》 |2009年第12期|p.1607-1619|共13页
  • 作者单位

    1Key Laboratory of Forest Tree Genetics Breeding and Biotechnology (Northeast Forestry University), Ministry of Education, 26 Hexing Road, Harbin 150040, China 2Corresponding author (ychngwang{at}yahoo.com);

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