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A direct hybridization approach to gene transfer from Aegilops tauschii Coss. to Triticum aestivum L

机译:一种直接杂交方法,用于从Taegchips tauschii Coss基因转移。普通小麦

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P>Aegilops tauschii Coss., the D-genome donor of bread wheat, represents a rich source of resistance and productivity traits for wheat improvement. In this study, a direct hybridization approach using Ae. tauschii as the female in crosses with Triticum aestivum resulted in about 50 times more F-1 plants than the reciprocal cross. In a set of five Ae. tauschii x T. aestivum crosses, an average of 35% of the pollinated florets resulted in embryo formation. Following embryo rescue on artificial medium, an average of 6.8 F-1 plants could be obtained for every 100 florets pollinated. Colchicine treatment of the F-1 plants greatly enhanced backcross seed formation (14.9 backcross seeds compared to an average of 0.47 seeds per 100 florets for untreated tillers). The efficacy of this gene transfer system was demonstrated by improved cell membrane stability and chlorophyll retention in BC1F4 lines derived from the crosses of three heat-tolerant accessions of Ae. tauschii with bread wheat cultivar 'PBW 550'.
机译:面包小麦的D基因组供体P> Aegilops tauschii Coss。是小麦改良的抗性和生产力性状的丰富来源。在这项研究中,使用Ae的直接杂交方法。 tauschii作为雌性与小麦的杂交产生的F-1植物比对等杂交多约50倍。在一套五个Ae。 tauschii x T. aestivum杂交时,平均35%的授粉小花导致了胚胎的形成。在人工培养基上进行胚拯救后,每授粉的100个小花平均可获得6.8株F-1植物。秋水仙碱对F-1植物的处理大大增强了回交种子的形成(14.9个回交种子,而未处理的分ers平均为每100小花0.47种子)。该基因转移系统的功效已通过改善细胞膜稳定性和源自Ae的三个耐热种的杂交后代的BC1F4系中的叶绿素保留来证明。与面包小麦品种'PBW 550'的tauschii。

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