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Molecular characterisation of two novel starch granule proteins 1 in wild and cultivated diploid A genome wheat species

机译:两种新型淀粉颗粒蛋白1在野生和栽培二倍体中的分子表征基因组小麦物种

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摘要

Starch synthase IIa, also known as starch granule protein 1 (SGP-1), plays a key role in amylopectin biosynthesis. The absence of SGP-1 in cereal grains is correlated to dramatic changes in the grains’ starch content, structure, and composition. An extensive investigation of starch granule proteins in this study revealed a polymorphism in the electrophoretic mobility of SGP-1 between two species of wheat, Triticum urartu and T. monococcum ; this protein was, however, conserved among all other Triticum species that share the A genome inherited from their progenitor T. urartu . Two different electrophoretic profiles were identified: SGP-A1 proteins of T. urartu accessions had a SDS–PAGE mobility similar to those of tetraploid and hexaploid wheat species; conversely, SGP-A1 proteins of T. monococcum ssp. monococcum and ssp. boeoticum accessions showed a different electrophoretic mobility. The entire coding region of the two genes was isolated and sequenced in an attempt to explain the polymorphism identified. Several single nucleotide polymorphisms (SNPs) responsible for amino acid changes were identified, but no indel polymorphism was observed to explain the difference in electrophoretic mobility. Amylose content did not differ significantly among T. urartu, T. monococcum ssp. boeoticum and T. monococcum ssp. monococcum , except in one accession of the ssp. boeoticum . Conversely, several interspecific differences were observed in viscosity properties (investigated as viscosity profiles using a rapid visco analyzer—RVA profiles) of these cereal grains. T. monococcum ssp. boeoticum accessions had the lowest RVA profiles, T. urartu accessions had an intermediate RVA profile, whereas T. monococcum ssp. monococcum showed the highest RVA profile. These differences could be associated with the numerous amino acid and structural changes evident among the SGP-1 proteins.
机译:淀粉合酶IIa,也称为淀粉颗粒蛋白1(SGP-1),在淀粉蛋白生物合成中起着关键作用。在谷物中没有SGP-1与谷物淀粉含量,结构和组合物的显着变化相关。本研究中对淀粉颗粒蛋白的广泛研究显示了SGP-1在两种小麦,小麦urartu和T. monocccum之间的电泳迁移率中的多态性;然而,这种蛋白质在所有其他小麦物种中保守,这些物种与祖先血管祖氏遗传物遗传。鉴定出两种不同的电泳谱:乌鲁塔图的SGP-A1蛋白质具有类似于四倍体和六倍体小麦物种的SDS-PAGE移动性;相反,ST. monocccum ssp的sgp-a1蛋白。 monocccum和ssp。 Boeoticum accessions显示出不同的电泳迁移率。分离出两种基因的整个编码区域并试图解释鉴定的多态性。鉴定了几种负责氨基酸变化的单一核苷酸多态性(SNP),但没有观察到吲哚多态性以解释电泳迁移率的差异。乌雷图,T. Monococcum SSP中,淀粉糖含量没有显着差异。 Boeoticum和T. monococcum ssp。 Monocccum,除了在SSP的一次加入中。 Beeoticum。相反,在粘度特性(使用这种谷物的快速Visco分析仪-RVA型材研究)的粘度性质中观察到几种间隙差异。 T. monococcum ssp。 Boeoticum accidums有最低的RVA型材,乌鲁塔图加入有一个中级RVA型材,而T. Monococcum SSP。 monocccum显示出最高的RVA型材。这些差异可能与SGP-1蛋白的许多氨基酸和结构变化有关。

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