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Expression of Storage Protein Genes in Developing Wheat (Triticum aestivum L.) Seeds 1: Correlation of RNA Accumulation and Protein Synthesis

机译:发育小麦种子中贮藏蛋白基因的表达1:RNA积累与蛋白质合成的关系

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摘要

Ribonucleic acid and protein synthesis in developing wheat kernels have been studied through in vivo labeling of wheat heads in culture. In INIA 66R wheat labeled with [5-3H]uridine for 24-hour periods between 9 and 33 days after flowering, the total rate of RNA accumulation in endosperm/testa pericarp tissues was highest in the youngest seeds, and declined with increasing seed age. In contrast, the rate of accumulation of poly(A)+ RNA approximately doubled between 12 and 15 days after flowering, reached a maximum between 15 and 18 days, and declined to half the maximum rate by 24 days. Protein synthetic capacity, measured by in vitro translation of extracted seed RNA, increased in a developmental pattern similar to that of poly(A)+ RNA accumulation, but remained near maximal through 24 days after flowering. Gliadins were prominent in the in vitro translation products. When seed protein was labeled in vivo with l-[3H]leucine, extracted, and analyzed by sodium dodecyl sulfate-polyacrylamide gel electrophoresis, a significant change in the protein synthesis profile was apparent between 12 and 15 days after flowering, and was coincident with a marked increase in storage protein synthesis. Qualitatively similar characteristics were exhibited by the cultivar Cheyenne, although in a shorter developmental period. These results are consistent with a direct relation between levels of mRNA and rates of protein synthesis in developing wheat seeds, with a relatively long storage protein mRNA lifetime, and with control of storage protein gene expression primarily at the level of mRNA transcription.
机译:通过体内标记培养物中的小麦头,已经研究了发育中的小麦籽粒中的核糖核酸和蛋白质合成。在开花后9至33天的24小时内,用[5-3H]尿苷标记的INIA 66R小麦,胚乳/睾丸果皮组织中RNA积累的总速率在最年轻的种子中最高,并随着种子年龄的增加而下降。 。相反,poly(A)+ RNA的积累速率在开花后12至15天之间大约增加了一倍,在15至18天之间达到最大值,到24天下降到最大速率的一半。通过提取的种子RNA的体外翻译测量的蛋白质合成能力以类似于poly(A)+ RNA积累的发育方式增加,但在开花后24天保持接近最大值。麦醇溶蛋白在体外翻译产物中是突出的。当种子蛋白在体内用1- [3H]亮氨酸标记,提取并通过十二烷基硫酸钠-聚丙烯酰胺凝胶电泳进行分析时,开花后12至15天之间蛋白质合成谱的显着变化是明显的,并且与贮藏蛋白合成显着增加。夏安品种表现出定性相似的特征,尽管发育期较短。这些结果与发育中的小麦种子中mRNA水平和蛋白质合成速率之间的直接关系,相对长的存储蛋白mRNA寿命以及主要在mRNA转录水平上对存储蛋白基因表达的控制相一致。

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  • 作者

    Greene, Frank C.;

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  • 年度 1983
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