首页> 外文期刊>Plant physiology >VICILIN AND NAPIN STORAGE-PROTEIN GENE PROMOTERS ARE RESPONSIVE TO ABSCISIC ACID IN DEVELOPING TRANSGENIC TOBACCO SEED BUT LOSE SENSITIVITY FOLLOWING PREMATURE DESICCATION
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VICILIN AND NAPIN STORAGE-PROTEIN GENE PROMOTERS ARE RESPONSIVE TO ABSCISIC ACID IN DEVELOPING TRANSGENIC TOBACCO SEED BUT LOSE SENSITIVITY FOLLOWING PREMATURE DESICCATION

机译:早熟后进行转基因烟草籽粒损失敏感性的过程中,豌豆蛋白和纳平贮藏蛋白基因启动子对脱落酸的响应

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In transgenic tobacco (Nicotiana tabacum L.) seed, expression of chimeric beta-glucuronidase (GUS) genes containing the vicilin or napin storage-protein gene promoters is responsive to premature drying and declines upon rehydration (L. Jiang, W.L. Downing, C.L. Baszczynski, A.R. Kermode [1995] Plant Physiol 107: 1439-1449). Desiccation may cause changes in the content of or sensitivity to abscisic acid (ABA), partially or wholly removing the effects of this ''modulator'' of developmental gene expression. We studied:the enhancement of GUS reporter enzyme activities in transgenic tobacco by exogenous ABA before and after drying. A racemic mixture of ABA at 10 mu M caused a 2- to 3-fold increase in GUS activity in developing transgenic seed expressing chimeric genes containing the vicilin or napin gene promoters. However, when these seeds were prematurely dried prior to their culture on ABA medium, enhancement of GUS activity was virtually abolished. Use of optically pure ABAs revealed that the enhancement in GUS activity in developing fresh seed was due largely to the natural (+) form of ABA. Chimeric constructs containing a viral 35S promoter did not respond to ABA whether or not premature drying was applied. Thus, vicilin and napin chimeric genes, initially sensitive to ABA, become relatively insensitive to the hormone following drying. A decline in ABA sensitivity may be an important factor in the cessation of storage-protein gene expression. [References: 49]
机译:在转基因烟草(Nicotiana tabacum L.)种子中,含有豌豆球蛋白或napin储存蛋白基因启动子的嵌合β-葡糖醛酸糖苷酶(GUS)基因的表达对过早干燥有反应,并在补液后下降(L. Jiang,WL Downing,CL Baszczynski ,AR Kermode [1995] Plant Physiol 107:1439-1449)。干燥可能会导致脱落酸(ABA)含量或对脱落酸的敏感性发生变化,从而部分或全部消除该发育基因表达的“调节剂”的作用。研究了干燥前后外源ABA对转基因烟草中GUS报道酶活性的增强作用。 ABA的外消旋混合物在10 µM的浓度下,在表达含有豌豆球蛋白或napin基因启动子的表达嵌合基因的转基因种子发育中,使GUS活性提高了2到3倍。但是,当这些种子在ABA培养基上培养之前过早干燥时,GUS活性的提高实际上就被取消了。使用光学纯的ABA揭示出,在开发新鲜种子时GUS活性的增强很大程度上归因于ABA的天然(+)形式。无论是否进行过早干燥,含有病毒35S启动子的嵌合构建体均不响应ABA。因此,最初对ABA敏感的豌豆球蛋白和napin嵌合基因在干燥后对激素变得相对不敏感。 ABA敏感性下降可能是停止存储蛋白基因表达的重要因素。 [参考:49]

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