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首页> 外文期刊>Molecular Breeding >Introgression of a novel Thinopyrum intermedium St-chromosome-specific HMW-GS gene into wheat.
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Introgression of a novel Thinopyrum intermedium St-chromosome-specific HMW-GS gene into wheat.

机译:一个新的中间Thin麦草St-染色体特异的HMW-GS基因渗入小麦。

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摘要

Thinopyrum intermedium has been hybridized extensively with wheat (Triticum aestivum L.) and several genes for disease resistance have been introgressed to cultivated wheat. However, there are very few reports about the Th. intermedium-derived seed storage protein genes which have been transferred into a wheat background by chromosome manipulation. Our aim is to identify several wheat-Th. intermedium ssp. trichophorum derivatives, and document these lines by genomic in situ hybridization (GISH), molecular markers and seed storage protein analysis. We found that a novel Th. intermedium 1St#2 chromosome-specific high-molecular-weight glutenin subunit (HMW-GS) was transferred to the wheat-Thinopyrum derivative lines. The genomic sequence of the Thinopyrum-derived HMW-GS was characterized and designated Glu-1St#2x, since it resembled x-type glutenins in both the N-terminal domain and C-terminal domain. It is much shorter than that of reported HMW-GS genes. The Glu-1St#2x sequence was successfully expressed in Escherichia coli and resulted in the identical weight to the native protein. The GISH and newly developed chromosome Thinopyrum-specific DNA markers enabled physically location of Glu-1St#2x to the region FL0.60-1.00 on Th. intermedium 1St#2L chromosome arm. Phylogenetic analysis revealed that the Glu-1St#2x evolved earlier than other x-type HMW-GS homoeologues in modern wheat genomes. The effect of Glu-1St#2x on protein content, sodium dodecyl sulphate sedimentation value and improvement of solvent retention capacity in wheat background suggested that Th. intermedium chromosome 1St#2 may have potential for improvement of wheat end-product quality
机译:中间麦草已与小麦(Triticum aestivum L.)广泛杂交,并且已将几种抗病基因导入栽培小麦中。但是,关于Th的报道很少。中间来源的种子贮藏蛋白基因,已通过染色体操作转移到小麦背景中。我们的目的是确定几种小麦Th。中间媒介毛滴虫衍生物,并通过基因组原位杂交(GISH),分子标记和种子贮藏蛋白分析来记录这些品系。我们发现了一部小说《 Th。中间1St#2染色体特异性高分子量谷蛋白亚基(HMW-GS)被转移到小麦-Thinopyrum衍生系。表征了源自Thin麦草的HMW-GS的基因组序列,并将其命名为Glu-1St#2x,因为它在N端结构域和C端结构域均类似于x型谷蛋白。它比报道的HMW-GS基因短得多。 Glu-1St#2x序列已在大肠杆菌中成功表达,其重量与天然蛋白质相同。 GISH和新开发的染色体薄壁酵母特异性DNA标记使Glu-1St#2x能够物理定位到Th上的FL0.60-1.00区域。中间1St#2L染色体臂。系统发育分析表明,Glu-1St#2x在现代小麦基因组中的进化要早于其他x型HMW-GS同源物。 Glu-1St#2x对小麦本底蛋白质含量,十二烷基硫酸钠沉降值和溶剂保留能力的提高影响。中间染色体1St#2可能具有改善小麦最终产品质量的潜力

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