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A novel compensating wheat–Thinopyrum elongatum Robertsonian translocation line with a positive effect on flour quality

机译:一种新型的补偿小麦-伸长延寿草罗伯逊易位系,对面粉品质产生积极影响

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Wheat flours are used to produce bread, pasta, breakfast cereals, and biscuits; the various properties of these end-products are attributed to the gluten content, produced as seed storage proteins in the wheat endosperm. Thus, genes encoding gluten protein are major targets of wheat breeders aiming to improve the various properties of wheat flour. Here, we describe a novel compensating wheat– Thinopyrum elongatum Robertsonian translocation (T1AS.1EL) line involving the short arm of wheat chromosome 1A (1AS) and the long arm of Th. elongatum chromosome 1E (1EL); we developed this line through centric breakage-fusion. Compared to the common wheat cultivars Chinese Spring and Norin 61, we detected two additional 1EL-derived high-molecular-weight glutenin subunits (HMW-GSs) in the T1AS.1EL plants. Based on the results of an SDS-sedimentation volume to estimate the gluten strength of T1AS.1EL-derived flour, we predict that T1AS.1EL-derived flour is better suited to bread-making than Chinese Spring- and Norin 61-derived flour and that this is because of its greater gluten diversity. Also, we were able to assign 33 of 121 wheat PCR-based Landmark Unique Gene markers to chromosome 1E of Th. elongatum . These markers can now be used for further chromosome engineering of the Th. elongatum segment of T1AS.1EL.
机译:小麦粉用于生产面包,面食,早餐谷物和饼干。这些终产物的各种特性归因于面筋含量,其作为小麦胚乳中的种子贮藏蛋白产生。因此,编码面筋蛋白的基因是小麦育种者的主要目标,旨在改善小麦粉的各种特性。在这里,我们描述了一种新型的补偿小麦–伸长的Thinopyrum elongatum Robertsonian易位系(T1AS.1EL),涉及小麦1A染色体的短臂(1AS)和Th的长臂。伸长染色体1E(1EL);我们通过中心破损融合技术开发了这条生产线。与普通的小麦品种中国春和Norin 61相比,我们在T1AS.1EL植物中检测到另外两个1EL衍生的高分子量谷蛋白亚基(HMW-GSs)。根据SDS沉降量的结果来估算T1AS.1EL面粉的面筋强度,我们预测T1AS.1EL面粉比中国春季和Norin 61面粉更适合做面包。这是因为其面筋的多样性更大。同样,我们能够将121个基于小麦PCR的Landmark Unique Gene标记中的33个分配给Th的1E染色体。伸长。这些标记物现在可用于Th的进一步染色体工程。 T1AS.1EL的伸长片段。

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