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燕麦种子发育过程中醇溶蛋白的分析及其mRNA的表达

Analysis of avenin proteins and the expression of their mRNAs in developing oat seeds.

作者信息

Chesnut R S, Shotwell M A, Boyer S K, Larkins B A

机构信息

Department of Botany and Plant Pathology, Purdue University, West Lafayette, Indiana 47907.

出版信息

Plant Cell. 1989 Sep;1(9):913-24. doi: 10.1105/tpc.1.9.913.

DOI:10.1105/tpc.1.9.913
PMID:2535531
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC159827/
Abstract

We have isolated and characterized cDNA clones encoding avenins, the prolamine storage proteins of oat seeds. Sequence analysis shows that avenins are a related group of polypeptides and that their mRNAs differ from each other by point mutations and small insertions and deletions. Avenin proteins have structural homology to the alpha/beta-gliadins and gamma-gliadins of wheat, the B-hordeins of barley, and the gamma-secalins of rye. Hybridization analysis of DNA from various diploid, tetraploid, and hexaploid oat species shows that the oat genome contains more globulin storage protein genes than avenin genes and that some restriction fragments containing these genes are conserved between species with common genomes. We estimate that there are 25 avenin genes and 50 globulin genes per haploid genome in Avena sativa and similar ratios of globulin to avenin genes in other Avena species. Avenin and globulin polypeptides begin to accumulate between 4 days and 6 days after anthesis. Messenger RNAs encoding avenin and globulin proteins become abundant 4 days after anthesis and reach peak concentrations at 8 days after anthesis. Avenin mRNAs are present in somewhat greater molar amounts than globulin mRNAs beginning at 4 days after anthesis. Because there is considerably more globulin than avenin in the mature oat seed, the expression of globulin and avenin genes may be regulated both transcriptionally and post-transcriptionally.

摘要

我们已经分离并鉴定了编码燕麦种子醇溶贮藏蛋白燕麦蛋白的cDNA克隆。序列分析表明,燕麦蛋白是一组相关的多肽,它们的mRNA通过点突变以及小的插入和缺失而彼此不同。燕麦蛋白与小麦的α/β-醇溶蛋白和γ-醇溶蛋白、大麦的B-醇溶蛋白以及黑麦的γ-麦角蛋白具有结构同源性。对来自各种二倍体、四倍体和六倍体燕麦物种的DNA进行杂交分析表明,燕麦基因组中球蛋白贮藏蛋白基因比燕麦蛋白基因更多,并且一些含有这些基因的限制性片段在具有共同基因组的物种之间是保守的。我们估计,在栽培燕麦的单倍体基因组中,有25个燕麦蛋白基因和50个球蛋白基因,并且在其他燕麦物种中球蛋白与燕麦蛋白基因的比例相似。燕麦蛋白和球蛋白多肽在开花后4天到6天之间开始积累。编码燕麦蛋白和球蛋白的信使RNA在开花后4天变得丰富,并在开花后8天达到峰值浓度。从开花后4天开始,燕麦蛋白mRNA的摩尔量比球蛋白mRNA略多。由于成熟燕麦种子中球蛋白比燕麦蛋白多得多,球蛋白和燕麦蛋白基因的表达可能在转录和转录后水平都受到调控。

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本文引用的文献

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Storage Protein Synthesis during Oat (Avena sativa L.) Seed Development.燕麦种子发育过程中贮藏蛋白的合成。
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