首页> 外文期刊>Plant Genetic Resources Characterization and Utilization >Analysis of high-molecular-weight glutenin subunits in five amphidiploids and their parental diploid species Aegilops umbellulata and Aegilops uniaristata
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Analysis of high-molecular-weight glutenin subunits in five amphidiploids and their parental diploid species Aegilops umbellulata and Aegilops uniaristata

机译:5种二倍体及其亲本二倍体物种Aegilops umbellulata和Aegilops uniaristata的高分子量谷蛋白亚基分析

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摘要

Amphidiploids serve as a bridge for transferring genes from wild species into wheat. In this study, five amphidiploids with AABBUU and AABBNN genomes were produced by spontaneous chromosome doubling of unreduced triploid F-1 gametes from crosses between diploid Aegilops (A. umbellulata accessions CIae 29 and PI 226500, and A. uniaristata accession PI 554419) and tetraploid Triticum turgidum (ssp. durum cultivar Langdon and ssp. dicoccum accessions PI 94668 and PI 349045) species. The composition of high-molecular-weight glutenin subunits (HMW-GS) in these amphidiploids and in their parental A. umbellulata and A. uniaristata species was analysed. As expected, the amphidiploids from T. turgidum ssp. dicoccum accession PI 944668 or PI 349045 and A. umbellulata accession CIae 29 or PI 226500 and A. uniaristata accession PI 554419 showed the same HMW-GS patterns as those of their Aegilops parents, because HMW-GS genes were all silenced in the T. turgidum ssp. dicoccum parents. The amphidiploids from CIae 29 and Langdon inherited all of the HMW-GS genes from their parents except for the Uy type. Using 10 and 15% sodium dodecyl sulphate-polyacrylamide gel electrophoresis (SDS-PAGE) and 10% urea/SDS-PAGE, 11 Ux and ten Uy types in 16 combinations were observed in 48 A. umbellulata accessions, and two Nx and two Ny types in two combinations were detected in six A. uniaristata accessions. These novel HMW-GS variants may provide new genetic resources for improving the quality of wheat.
机译:二倍体作为将基因从野生物种转移到小麦的桥梁。在这项研究中,五倍体AABBUU和AABBNN基因组的二倍体是通过二倍体Aegilops(伞形目CIae 29和PI 226500以及A. uniaristata角质PI 554419)之间的杂交而未还原的三倍体F-1配子的自发染色体加倍产生的。小麦(Trumticum turgidum)(杜伦硬皮品种Langdon和双歧杆菌种PI 94668和PI 349045)种。分析了这些二倍体及其亲本A. umbellulata和A. uniaristata物种中的高分子量谷蛋白亚基(HMW-GS)的组成。如预期的那样,来自T. turgidum ssp的二倍体。双歧杆菌登录号PI 944668或PI 349045和伞形拟南芥登录号CIae 29或PI 226500和单壳拟南芥登录号PI 554419表现出与其Aegilops亲本相同的HMW-GS模式,因为HMW-GS基因在T中均被沉默。土生植物dicoccum父母。 CIae 29和Langdon的二倍体从他们的父母那里继承了所有的HMW-GS基因,除了Uy类型。使用10%和15%的十二烷基硫酸钠-聚丙烯酰胺凝胶电泳(SDS-PAGE)和10%尿素/ SDS-PAGE,在48个伞形参种中观察到16种组合中有11种Ux和10种Uy,以及2种Nx和2种Ny。在六个单孢曲霉种中检测到两种组合中的类型。这些新颖的HMW-GS变体可能为提高小麦品质提供新的遗传资源。

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