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电泳蛋白分析鉴定 1A-1R、1B-1R 小麦-黑麦双易位系,并评估其遗传稳定性。

Electrophoretic protein analysis for the identification of doubled haploid 1A-1R, 1B-1R wheat-rye double translocation lines and for the assessment of their genetic stability.

机构信息

KAI-e.V. Projectgroup Biotechnique Bernburg, Strenzfelder Allee, D-O 4351, Bernburg, Germany.

出版信息

Theor Appl Genet. 1993 Jun;86(5):547-56. doi: 10.1007/BF00838707.

Abstract

Eighteen available doubled haploid wheat lines with a cytologically proven 1A-1R, 1B-1R double translocation, which where derived via anther culture from four crosses of the 1A-1R wheat-rye translocation cv "Amigo" with several 1B-1R wheat-rye translocation forms, were subjected to electrophoretic seed protein analysis. Besides, the five parents used in the crosses and some other wheat cultivars and doubled haploid lines (19 with a 1B-1R single translocation, 10 with a 1A-1R translocation and 7 without any 1R translocation) were also included in the investigation. It was found that the gliadin patterns visualized after SDS polyacrylamide gel electrophoresis of alcohol-soluble seed protein extracts can differentiate not only 1B-1R and 1A-1R translocation forms from wheats without any 1R-translocation chromosome, but also 1B-1R and 1A-1R wheats from each other. Moreover, 1A-1R, 1B-1R double translocation lines can be distinguished as well due to characteristic differences revealed between 1A-1R and 1B-1R translocation forms. Thus, all of tested dh1- and dh2-grains of the double translocation lines showed the expected doublet: the 1A-1R translocation ("Amigo")-typical rye band and the 1B-1R translocation ("Kawkas")-typical rye band. Consequently, gliadin patterns estimated after SDS electrophoresis may be used as markers for the fast detection of the desired 1A-1R, 1B-1R double translocation forms among 1A-1R single translocation lines, 1B-1R single translocation lines and lines without any 1R-translocation in the progenies of appropriate crosses. Furthermore, by means of gliadin tests on the dh2-generation the excellent stability of the double translocation 1A-1R, 1B-1R during more than one propagation phase has been proven. Estimations of high-molecular weight (HMW) glutenin subunits coded by 1A and 1B chromosomes are compatible with the double translocation constitution. A few deviating results can be explained by crossing-over events. Seed protein analysis revealed that it is possible to produce 1A-1R, 1B-1R double translocation lines with good glutenin compositions provided that adequate favourable parents are used.

摘要

十八个经细胞学证实的具有 1A-1R、1B-1R 双易位的双单倍体小麦品系,是通过对四个 1A-1R 小麦-黑麦易位系“Amigo”与几种 1B-1R 小麦-黑麦易位形式的杂交的花药培养获得的,进行了电泳种子蛋白分析。此外,还包括杂交中使用的五个亲本以及一些其他小麦品种和双单倍体品系(19 个具有 1B-1R 单易位,10 个具有 1A-1R 易位,7 个没有任何 1R 易位)。结果发现,经 SDS 聚丙烯酰胺凝胶电泳对醇溶性种子蛋白提取物进行电泳后,谷蛋白图谱不仅可以区分具有 1B-1R 和 1A-1R 易位形式的小麦与不含任何 1R 易位染色体的小麦,还可以区分具有 1B-1R 和 1A-1R 的小麦。此外,由于 1A-1R 和 1B-1R 易位形式之间的特征差异,也可以区分 1A-1R、1B-1R 双易位品系。因此,双易位系的所有 dh1-和 dh2-粒均显示出预期的二联体:1A-1R 易位(“Amigo”)-典型黑麦带和 1B-1R 易位(“Kawkas”)-典型黑麦带。因此,SDS 电泳后估计的谷蛋白图谱可作为快速检测适当杂交后代中所需的 1A-1R、1B-1R 双易位形式的标记,包括 1A-1R 单易位系、1B-1R 单易位系和不含任何 1R 易位的系。此外,通过 dh2-代的谷蛋白测试,证明了双易位 1A-1R、1B-1R 在多个繁殖阶段的优异稳定性。由 1A 和 1B 染色体编码的高分子量(HMW)谷蛋白亚基的估计与双易位结构一致。一些偏离的结果可以用交叉事件来解释。种子蛋白分析表明,只要使用合适的有利亲本,就有可能产生具有良好谷蛋白组成的 1A-1R、1B-1R 双易位系。

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