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opaque-2 modifiers increase gamma-zein synthesis and alter its spatial distribution in maize endosperm.

机译:opaque-2修饰剂可增加γ-玉米醇溶蛋白的合成并改变其在玉米胚乳中的空间分布。

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摘要

Through the action of opaque-2 modifier genes, the soft, floury endosperm of opaque-2 mutants is converted to a vitreous phenotype. This change in endosperm texture is associated with a twofold to threefold increase in gamma-zein content. To investigate the effect of opaque-2 modifiers on the expression of gamma-zein genes, we analyzed the synthesis and distribution of gamma-zein protein and the level of gamma-zein mRNAs in developing endosperms of the inbreds W64A and W64Ao2, a modified opaque-2 mutant Pool 34 QPM, and their reciprocal F1 hybrids. We also characterized the number and organization of gamma-zein genes in these and related maize genotypes. Our studies show that opaque-2 modifiers are semidominant genes, resulting in a twofold to threefold increase in gamma-zein gene expression in both opaque-2 and normal genetic backgrounds. The increase in gene expression appears to be a consequence of enhanced mRNA transcription or stability rather than gene amplification because gamma-zein genes occur in one or two copies in modified as well as nonmodified genetic backgrounds. Ultrastructural studies showed that gamma-zein occurs in high concentrations in the first few subaleurone cells of nonmodified endosperms, but high concentrations of gamma-zein occur in the subaleurone and central endosperm cells of modified opaque-2 mutants. The increased concentration and distribution of gamma-zein in modified endosperms are highly correlated with the activity of opaque-2 modifier genes.
机译:通过opaque-2修饰基因的作用,opaque-2突变体的柔软,粉状的胚乳转化为玻璃体表型。胚乳质地的这种变化与γ-玉米醇溶蛋白含量的两倍至三倍增加有关。为了研究opaque-2修饰剂对γ-玉米醇溶蛋白基因表达的影响,我们分析了近交配体W64A和W64Ao2的发育胚乳中γ-玉米醇溶蛋白的合成和分布以及γ-玉米醇溶蛋白mRNA的水平。 -2突变体Pool 34 QPM,以及它们的倒数F1杂种。我们还表征了这些和相关玉米基因型中γ-玉米醇溶蛋白基因的数量和组织。我们的研究表明,opaque-2修饰子是半显性基因,导致在opaque-2和正常遗传背景下,γ-玉米醇溶蛋白基因表达增加了两倍至三倍。基因表达的增加似乎是增强的mRNA转录或稳定性而不是基因扩增的结果,因为γ-玉米醇溶蛋白基因在修饰的和未修饰的遗传背景中均以一或两个拷贝出现。超微结构研究表明,γ-玉米醇溶蛋白高浓度发生在未经修饰的胚乳的前几个亚神经元细胞中,但是高浓度的γ-玉米醇溶蛋白发生在修饰的opaque-2突变体的亚胚层和中央胚乳细胞中。修饰胚乳中γ-玉米醇溶蛋白浓度和分布的增加与不透明2修饰基因的活性高度相关。

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