首页> 外文期刊>Planta >Functional analysis in Arabidopsis of FsPTP1, a tyrosine phosphatase from beechnuts, reveals its role as a negative regulator of ABA signaling and seed dormancy and suggests its involvement in ethylene signaling modulation
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Functional analysis in Arabidopsis of FsPTP1, a tyrosine phosphatase from beechnuts, reveals its role as a negative regulator of ABA signaling and seed dormancy and suggests its involvement in ethylene signaling modulation

机译:FsPTP1(一种来自山毛榉的酪氨酸磷酸酶)在拟南芥中的功能分析显示其作为ABA信号传导和种子休眠的负调节剂,并暗示其参与乙烯信号传导调节

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摘要

By means of an RT-PCR approach we isolated a specific tyrosine phosphatase (FsPTP1) induced by abscisic acid (ABA) and correlated with seed dormancy in Fagus sylvatica seeds. To provide genetic evidence of FsPTP1 function in seed dormancy and ABA signal transduction pathway, we overexpressed this gene in Cape Verde Island ecotype of Arabidopsis thaliana, which shows the deepest degree of seed dormancy among Arabidopsis accessions. As a result, 35S:FsPTP1 transgenic seeds showed a reduced dormancy and insensitivity to ABA and osmotic stress conditions accompanied by a reduction in the level of expression of RAB18 and RD29, well-known ABA-responsive genes. Taken together, all these data are consistent with a role of this tyrosine phosphatase as a negative regulator of ABA signaling. In addition, phenotypes of FsPTP1 transgenic plants resemble those observed in ethylene constitutive mutants, accompanied by an increase in the level of expression of a key gene involved in ethylene signaling such as EIN2. All the data presented along the paper suggest that the effect of tyrosine phosphatases in ABA action during the transition from seed dormancy to germination may be through modulation of ethylene signaling.
机译:通过RT-PCR方法,我们分离了由脱落酸(ABA)诱导的特定酪氨酸磷酸酶(FsPTP1),并与青豆种子中的种子休眠相关。为了提供FsPTP1在种子休眠和ABA信号转导途径中的遗传证据,我们在佛得角岛拟南芥生态型中过表达了该基因,该基因显示了拟南芥种中种子休眠的最深程度。结果,35S:FsPTP1转基因种子表现出降低的休眠性和对ABA的不敏感性以及渗透胁迫条件,同时降低了众所周知的ABA响应基因RAB18和RD29的表达水平。综上所述,所有这些数据与酪氨酸磷酸酶作为ABA信号的负调节剂的作用是一致的。此外,FsPTP1转基因植物的表型类似于在乙烯组成型突变体中观察到的表型,伴随着参与乙烯信号传导的关键基因(如EIN2)的表达水平增加。沿着本文提供的所有数据表明酪氨酸磷酸酶在从种子休眠到发芽的过渡过程中对ABA的作用可能是通过调节乙烯信号传导来实现的。

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  • 来源
    《Planta》 |2011年第3期|p.589-597|共9页
  • 作者单位

    Departamento de Fisiología Vegetal, Centro Hispano-Luso de Investigaciones Agrarias, Facultad de Biología, Universidad de Salamanca, C/Río Duero 12, Campus de Villamayor, 37185, Salamanca, Spain;

    Departamento de Fisiología Vegetal, Centro Hispano-Luso de Investigaciones Agrarias, Facultad de Biología, Universidad de Salamanca, C/Río Duero 12, Campus de Villamayor, 37185, Salamanca, Spain;

    Departamento de Fisiología Vegetal, Centro Hispano-Luso de Investigaciones Agrarias, Facultad de Biología, Universidad de Salamanca, C/Río Duero 12, Campus de Villamayor, 37185, Salamanca, Spain;

    Departamento de Fisiología Vegetal, Centro Hispano-Luso de Investigaciones Agrarias, Facultad de Biología, Universidad de Salamanca, C/Río Duero 12, Campus de Villamayor, 37185, Salamanca, Spain;

    Departamento de Fisiología Vegetal, Centro Hispano-Luso de Inves;

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

    ABA signaling; Arabidopsis; Ethylene signaling; Fagus; Seed dormancy; Tyrosine phosphatase;

    机译:ABA信号传导;拟南芥;乙烯信号传导;迷信;种子休眠;酪氨酸磷酸酶;

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