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影响玉米胚乳中延伸因子1α含量的基因座的数量性状基因座定位

Quantitative trait locus mapping of loci influencing elongation factor 1alpha content in maize endosperm.

作者信息

Wang X, Woo Y M, Kim C S, Larkins B A

机构信息

Department of Plant Sciences, University of Arizona, Tucson, AZ 85721, USA.

出版信息

Plant Physiol. 2001 Mar;125(3):1271-82. doi: 10.1104/pp.125.3.1271.

Abstract

The nutritional value of maize (Zea mays) seed is most limited by its protein quality because its storage proteins are devoid of the essential amino acid lysine (Lys). The Lys content of the kernel can be significantly increased by the opaque-2 mutation, which reduces zein synthesis and increases accumulation of proteins that contain Lys. Elongation factor 1alpha (eEF1A) is one of these proteins, and its concentration is highly correlated with the Lys content of the endosperm. We investigated the genetic regulation of eEF1A and the basis for its relationship with other Lys-containing proteins by analyzing the progeny of a cross between a high (Oh51Ao2) and a low (Oh545o2) eEF1A maize inbred. We identified 83 simple sequence repeat loci that are polymorphic between these inbreds; the markers are broadly distributed over the genome (1,402 cM) with an average interval of 17 cM. Genotypic analysis of the F(2) progeny revealed two significant quantitative trait loci that account for 25% of the variance for eEF1A content. One of these is on the short arm of chromosome 4 and is linked with a cluster of 22-kD alpha-zein coding sequences; the other quantitative trait locus is on the long arm of chromosome 7. The content of alpha-zein and gamma-zein was measured in pools of high- and low-eEF1A individuals obtained from this cross, and a higher level of alpha-zein was found to cosegregate with high eEF1A content. Allelic variation at the 22-kD alpha-zein locus may contribute to the difference of eEF1A content between Oh51Ao2 and Oh545o2 by increasing the surface area of protein bodies in the endosperm and creating a more extensive network of cytoskeletal proteins.

摘要

玉米(Zea mays)种子的营养价值受其蛋白质质量的限制最大,因为其储存蛋白缺乏必需氨基酸赖氨酸(Lys)。不透明-2突变可显著提高籽粒中的赖氨酸含量,该突变会减少醇溶蛋白的合成,并增加含赖氨酸蛋白质的积累。延伸因子1α(eEF1A)就是其中一种蛋白质,其浓度与胚乳中的赖氨酸含量高度相关。我们通过分析高eEF1A含量(Oh51Ao2)和低eEF1A含量(Oh545o2)的玉米自交系杂交后代,研究了eEF1A的遗传调控及其与其他含赖氨酸蛋白质关系的基础。我们鉴定出83个在这些自交系之间具有多态性的简单序列重复位点;这些标记广泛分布于基因组(1402 cM)中,平均间隔为17 cM。对F2代后代的基因型分析揭示了两个显著的数量性状位点,它们占eEF1A含量变异的25%。其中一个位于4号染色体短臂上,与一组22-kDα-醇溶蛋白编码序列连锁;另一个数量性状位点位于7号染色体长臂上。测定了从该杂交获得的高eEF1A含量和低eEF1A含量个体群体中的α-醇溶蛋白和γ-醇溶蛋白含量,发现较高水平的α-醇溶蛋白与高eEF1A含量共分离。22-kDα-醇溶蛋白位点的等位基因变异可能通过增加胚乳中蛋白体的表面积并形成更广泛的细胞骨架蛋白网络,导致Oh51Ao2和Oh545o2之间eEF1A含量的差异。

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