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bZIP 转录因子 SPA 异源二聚体蛋白抑制小麦醇溶蛋白的合成。

The bZIP transcription factor SPA Heterodimerizing Protein represses glutenin synthesis in Triticum aestivum.

机构信息

UMR GDEC, INRA, Clermont Auvergne University, 63000, Clermont-Ferrand, France.

UR BIA, INRA, 44316, Nantes, France.

出版信息

Plant J. 2019 Mar;97(5):858-871. doi: 10.1111/tpj.14163. Epub 2019 Jan 5.

Abstract

The quality of wheat grain is mainly determined by the quantity and composition of its grain storage proteins (GSPs). Grain storage proteins consist of low- and high-molecular-weight glutenins (LMW-GS and HMW-GS, respectively) and gliadins. The synthesis of these proteins is essentially regulated at the transcriptional level and by the availability of nitrogen and sulfur. The regulation network has been extensively studied in barley where BLZ1 and BLZ2, members of the basic leucine zipper (bZIP) family, activate the synthesis of hordeins. To date, in wheat, only the ortholog of BLZ2, Storage Protein Activator (SPA), has been identified as playing a major role in the regulation of GSP synthesis. Here, the ortholog of BLZ1, named SPA Heterodimerizing Protein (SHP), was identified and its involvement in the transcriptional regulation of the genes coding for GSPs was analyzed. In gel mobility shift assays, SHP binds cis-motifs known to bind to bZIP family transcription factors in HMW-GS and LMW-GS promoters. Moreover, we showed by transient expression assays in wheat endosperm that SHP acts as a repressor of the activity of these gene promoters. This result was confirmed in transgenic lines overexpressing SHP, which were grown with low and high nitrogen supply. The phenotype of SHP-overexpressing lines showed a lower quantity of both LMW-GS and HMW-GS, while the quantity of gliadin was unchanged, whatever the nitrogen availability. Thus, the gliadin/glutenin ratio was increased, which suggests that gliadin and glutenin genes may be differently regulated.

摘要

小麦籽粒的品质主要取决于其籽粒贮藏蛋白(GSPs)的数量和组成。谷物贮藏蛋白由低分子量谷蛋白(LMW-GS)和高分子量谷蛋白(HMW-GS)和醇溶蛋白组成。这些蛋白质的合成主要在转录水平和氮、硫的可用性上受到调节。BLZ1 和 BLZ2 是碱性亮氨酸拉链(bZIP)家族的成员,它们激活禾谷蛋白的合成,在大麦中对其调控网络进行了广泛的研究。迄今为止,在小麦中,只有 BLZ2 的同源物,即贮藏蛋白激活剂(SPA),被确定为在 GSP 合成的调控中起主要作用。在这里,鉴定出 BLZ1 的同源物,称为 SPA 异源二聚体蛋白(SHP),并分析了其参与编码 GSPs 的基因的转录调控。在凝胶迁移率变动测定中,SHP 结合已知在 HMW-GS 和 LMW-GS 启动子中结合 bZIP 家族转录因子的顺式基序。此外,我们通过在小麦胚乳中的瞬时表达试验表明,SHP 作为这些基因启动子活性的抑制剂。在高氮和低氮供应下生长的过表达 SHP 的转基因系中证实了这一结果。过表达 SHP 的系的表型显示 LMW-GS 和 HMW-GS 的数量均较低,而无论氮的可用性如何,醇溶蛋白的数量均保持不变。因此,醇溶蛋白/谷蛋白的比例增加,表明醇溶蛋白和谷蛋白基因可能受到不同的调控。

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