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Combining ability and heterosis effect in hexaploid wheat group

机译:六倍体小麦群体的配合力和杂种优势

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The main goal of hybrid wheat breeding is the identification of parents with high specific combining ability for grain yield and other agronomic traits. This kind of data facilitate the development of hybrid combinations with high level of heterosis in first filial generation (F1 generation). The use of species from the hexaploid wheat group (e.g. Triticum spelta L. Triticum compactum HOST...) is representing an opportunity for the increase of heterosis level in the germplasm of common wheat (Triticum aestivum L.). The study of combining ability and heterosis effect in hexaploid wheat group was carried out using crosses between thirteen inbred lines of common wheat (6 lines x 7 testers) and inter-species crosses (T. aestivum L. × T. spelta L., T. aestivum L. × T. compactum HOST, T. aestivum L. × T. sphaerococcum PERCIV., T. aestivum L. × T. macha DEKAPR. et MENABDE, T. aestivum L. × T. petropavlovskyi UDACZ. et MIGUSCH, T. aestivum L. × T. vavilovii (THUM.) JAKUBZ.). The 42 common wheat F1 hybrids were tested during two seasons (2010/11 and 2011/12) on the Selection center Ptuj. The experiment was carried out in a randomized block design with four replications. The 43 interspecies F1 hybrids were tested on the same location in the season 2011/12 and the experiment was designed as an randomized block with three replications. The results were analyzed using statistical package AGROBASE generation II and STATGRAPHICS Centurion XVI. The analysis of variance was significant for both, GCA and SCA variances (P 0,01). Generally, SCA variances were lower than GCA variances. We could state, that the improvement of heterosis level in the common wheat germplasm through the use of relatives with the same genome (genome BAD) is possible. As an example we can point out the interspecies F1 hybrid between common wheat variety Garcia and an accession of the Triticum sphaerococcum PERCIV. species (accession number 01C0201227).
机译:杂交小麦育种的主要目标是鉴定对谷物产量和其他农艺性状具有高特异性结合能力的亲本。这种数据有助于在第一孝子代(F1代)中开发具有高度杂种优势的杂种组合。使用六倍体小麦组的物种(例如Triticum spelta L.Triticum compactum HOST ...)为提高普通小麦(Triticum aestivum L.)种质中的杂种优势水平提供了机会。利用13个普通小麦自交系(6系x 7个试验员)和种间杂交(普通小麦×斯佩尔塔小麦,T)对六倍体小麦组的配合力和杂种优势进行研究。小麦×紧凑型寄主,小麦×球形球菌PERCIV。,小麦×玛卡DEKAPR等人普通小麦×普通小麦(THUM。)JAKUBZ。)。 42个普通小麦F1杂种在选择中心Ptuj的两个季节(2010/11和2011/12)中进行了测试。实验是在随机区组设计中进行的,重复四次。在2011/12赛季中,在同一位置测试了43个种间F1杂种,并将该实验设计为具有三个重复的随机区组。使用统计软件包AGROBASE II和STATGRAPHICS Centurion XVI对结果进行了分析。 GCA和SCA方差的方差分析均很显着(P <0,01)。通常,SCA方差低于GCA方差。我们可以说,通过使用具有相同基因组的亲戚(基因组BAD)来改善普通小麦种质的杂种优势水平是可能的。例如,我们可以指出普通小麦品种加西亚与小麦白粉PERCIV的种间F1杂种。种(登录号01C0201227)。

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