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Nucleotide Polymorphism in the Wheat Transcriptional Activator Spa Influences Its Pattern of Expression and Has Pleiotropic Effects on Grain Protein Composition, Dough Viscoelasticity, and Grain Hardness

机译:小麦转录激活因子spa中的核苷酸多态性影响其表达方式,并对谷物蛋白质组成,面团粘弹性和谷物硬度具有多效性

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摘要

Storage protein activator (SPA) is a key regulator of the transcription of wheat (Triticum aestivum) grain storage protein genes and belongs to the Opaque2 transcription factor subfamily. We analyzed the sequence polymorphism of the three homoeologous Spa genes in hexaploid wheat. The level of polymorphism in these genes was high particularly in the promoter. The deduced protein sequences of each homoeolog and haplotype show greater than 93% identity. Two major haplotypes were studied for each Spa gene. The three Spa homoeologs have similar patterns of expression during grain development, with a peak in expression around 300 degree days after anthesis. On average, Spa-B is 10 and seven times more strongly expressed than Spa-A and Spa-D, respectively. The haplotypes are associated with significant quantitative differences in Spa expression, especially for Spa-A and Spa-D. Significant differences were found in the quantity of total grain nitrogen allocated to the gliadin protein fractions for the Spa-A haplotypes, whereas the synthesis of glutenins is not modified. Genetic association analysis between Spa and dough viscoelasticity revealed that Spa polymorphisms are associated with dough tenacity, extensibility, and strength. Except for Spa-A, these associations can be explained by differences in grain hardness. No association was found between Spa markers and the average single grain dry mass or grain protein concentration. These results demonstrate that in planta Spa is involved in the regulation of grain storage protein synthesis. The associations between Spa and dough viscoelasticity and grain hardness strongly suggest that Spa has complex pleiotropic functions during grain development.
机译:贮藏蛋白激活剂(SPA)是小麦(Triticum aestivum)谷物贮藏蛋白基因转录的关键调节子,属于Opaque2转录因子亚家族。我们分析了六倍体小麦中三个同源Spa基因的序列多态性。这些基因的多态性水平很高,尤其是在启动子中。每个同系物和单倍型的推导的蛋白质序列显示出大于93%的同一性。每个Spa基因研究了两种主要的单倍型。这三个Spa同源物在谷物发育过程中具有相似的表达模式,在花期后约300度日表达达到峰值。平均而言,Spa-B的表达强度分别比Spa-A和Spa-D高10倍和7倍。单倍型与Spa表达的明显定量差异有关,尤其是对于Spa-A和Spa-D。发现分配给用于Spa-A单倍型的麦醇溶蛋白部分的总谷粒氮含量存在显着差异,而谷蛋白的合成未经过修饰。 Spa与面团粘弹性之间的遗传关联分析表明,Spa多态性与面团的韧性,延展性和强度有关。除了Spa-A,这些关联可以通过晶粒硬度的差异来解释。在Spa标记和平均单谷物干重或谷物蛋白质浓度之间未发现关联。这些结果表明,在植物中,Spa参与了谷物贮藏蛋白合成的调节。 Spa与面团粘弹性和谷物硬度之间的关联性强烈表明,Spa在谷物发育过程中具有复杂的多效功能。

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