Rahman S, Kreis M, Forde B G, Shewry P R, Miflin B J
Biochem J. 1984 Oct 15;223(2):315-22. doi: 10.1042/bj2230315.
A previous study [Rahman, Shewry & Miflin (1982) J. Exp. Bot. 33, 717-728] showed differential accumulation of the major storage proteins (called B and C hordeins) in developing endosperms of barley (Hordeum vulgare). To determine how this accumulation is regulated, we have studied mRNA fractions prepared from similar endosperms. Hordein-related mRNA species were detected some days before the deposition of hordeins in vivo. The translation products in vivo directed by polyribosomes, polysomal RNA and total cellular RNA showed similar changes in the proportions of the hordein products to those observed in the accumulations of the proteins in vivo. There was a relative increase in one of the subfamilies of B hordeins (called B1 hordein) and a decrease in the second subfamily of B hordeins (B3 hordein) and in C hordeins. The populations of RNA species related to these three groups of hordeins were studied by 'dot hybridization', with specific complementary-DNA probes for B1-, B3- and C-hordein-related sequences. This showed a 10-15-fold increase in sequences related to the B1 hordein during endosperm development, but only a 4-fold increase in sequences related to B3 and C hordeins. These results indicate that the rates of synthesis of hordeins are related to the abundance of their respective mRNA species. The different results observed for the two subfamilies of B hordeins are of interest, since they indicate differential expression of two subfamilies of genes present at a single multigenic locus.
此前的一项研究[拉赫曼、谢里和米夫林(1982年),《实验植物学杂志》33卷,717 - 728页]表明,在大麦(Hordeum vulgare)发育中的胚乳里,主要贮藏蛋白(称为B和C醇溶蛋白)存在差异积累。为了确定这种积累是如何调控的,我们研究了从相似胚乳中制备的mRNA组分。在体内醇溶蛋白沉积前几天就检测到了与醇溶蛋白相关的mRNA种类。由多核糖体、多聚核糖体RNA和总细胞RNA在体内指导合成的产物,其醇溶蛋白产物比例的变化与在体内蛋白质积累中观察到的变化相似。B醇溶蛋白的一个亚家族(称为B1醇溶蛋白)相对增加,而B醇溶蛋白的第二个亚家族(B3醇溶蛋白)和C醇溶蛋白则减少。通过“点杂交”,使用针对B1 -、B3 -和C -醇溶蛋白相关序列的特异性互补DNA探针,研究了与这三组醇溶蛋白相关的RNA种类群体。这表明在胚乳发育过程中,与B1醇溶蛋白相关的序列增加了10 - 15倍,但与B3和C醇溶蛋白相关的序列仅增加了4倍。这些结果表明,醇溶蛋白的合成速率与其各自mRNA种类的丰度相关。B醇溶蛋白两个亚家族观察到的不同结果很有意思,因为它们表明了位于单个多基因位点的两个基因亚家族的差异表达。