首页> 美国卫生研究院文献>International Journal of Molecular Sciences >Expression Analysis of Four Peroxiredoxin Genes from Tamarix hispida in Response to Different Abiotic Stresses and Exogenous Abscisic Acid (ABA)
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Expression Analysis of Four Peroxiredoxin Genes from Tamarix hispida in Response to Different Abiotic Stresses and Exogenous Abscisic Acid (ABA)

机译:Tamarix hispida的四种过氧化物酶基因对不同非生物胁迫和外源脱落酸(ABA)的响应表达分析

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摘要

Peroxiredoxins (Prxs) are a recently discovered family of antioxidant enzymes that catalyze the reduction of peroxides and alkyl peroxides. In this study, four Prx genes (named as ThPrxII, ThPrxIIE, ThPrxIIF, and Th2CysPrx) were cloned from Tamarix hispida. Their expression profiles in response to stimulus of NaCl, NaHCO3, PEG, CdCl2 and abscisic acid (ABA) in roots, stems and leaves of T. hispida were investigated using real-time RT-PCR. The results showed that the four ThPrxs were all expressed in roots, stems and leaves. Furthermore, the transcript levels of ThPrxIIE and ThPrxII were the lowest and the highest, respectively, in all tissue types. All the ThPrx genes were induced by both NaCl and NaHCO3 and reached their highest expression levels at the onset of stress in roots. Under PEG and CdCl2 stress, the expression patterns of these ThPrxs showed temporal and spatial specificity. The expressions of the ThPrxs were all differentially regulated by ABA, indicating that they are all involved in the ABA signaling pathway. These findings reveal a complex regulation of Prxs that is dependent on the type of Prx, tissue, and the signaling molecule. The divergence of the stress-dependent transcriptional regulation of the ThPrx gene family in T. hispida may provide an essential basis for the elucidation of Prx function in future work.
机译:过氧化物酶(Prxs)是最近发现的抗氧化酶家族,可催化​​过氧化物和烷基过氧化物的还原。在这项研究中,四个基因的Prx基因(分别命名为ThPrxII,ThPrxIIE,ThPrxIIF和Th2CysPrx)从Tamarix hispida克隆。使用实时RT-PCR研究了它们在NaCl,NaHCO3,PEG,CdCl2和脱落酸(ABA)刺激下在根茎,茎和叶中的表达谱。结果表明,四种ThPrxs均在根,茎和叶中表达。此外,在所有组织类型中,ThPrxIIE和ThPrxII的转录水平分别是最低和最高的。所有的ThPrx基因均由NaCl和NaHCO3诱导,并在根部受压时达到其最高表达水平。在PEG和CdCl2胁迫下,这些ThPrxs的表达模式表现出时间和空间特异性。 ThPrxs的表达均受ABA差异调节,表明它们均参与ABA信号通路。这些发现揭示了Prx的复杂调控,这取决于Prx的类型,组织和信号分子。 T.Hispida中ThPrx基因家族的应激依赖性转录调控的差异可能为阐明未来工作中的Prx功能提供必要的基础。

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