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Estimation of seed yield in oilseed rape to identify the potential of semi-resynthesized parents for the development of new hybrid cultivars

机译:估计油菜种子产量,以鉴定半合成亲本在开发新杂交品种中的潜力

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摘要

Resynthesized (RS) Brassica napus can be used to increase the genetic diversity of this important crop plant and to develop the heterotic gene pool required for successful hybrid breeding programmes. The level of heterosis in F1 hybrids depends on the individual performance of the parents and on the degree of genetic difference between them. However, RS forms obtained from crosses of B. rapa ssp. with B. oleracea ssp. possess many undesirable agronomic traits, such as low quality of seeds, low yield and seed oil content, high erucic acid level in the oil and high glucosinolate content in seed meal. Therefore, RS oilseed rape needs to be improved by crossing with natural double-low oilseed rape, leading to selected double-low quality semi-RS lines that can be used for breeding. In this study, we evaluated the seed yield potential of F1 hybrids derived from crosses between Ogura cytoplasmic male-sterility (CMS) lines and doubled haploid (DH) semi-RS lines with restorer gene in three locations in Poland. The genotype by environment interaction (GE interaction) and general combining ability (GCA) of the restorer and CMS line effects, as well as the effects of heterosis, were also assessed. The results of the study provide the first insights into the use of semi-RS lines as components for the development of new hybrid cultivars. Even the introduction of 50% of the RS oilseed rape genotype to natural restorer lines resulted in a marked heterosis effect, with seed yield ranging from 4.56% to 90.17% more than that of the better parent. The yield of the best hybrid amounted to 108.6% of the seed yield of the open-pollinated cultivar Monolit and 94.4% of that of the hybrid cultivar Arsenal. The best DH semi-RS line S1, which had a significantly positive GCA for seed yield, can be recommended as a possible parent for inclusion in breeding programmes aimed at developing new hybrid cultivars.
机译:重新合成的甘蓝型油菜可用于增加这种重要农作物的遗传多样性,并开发成功的杂交育种计划所需的杂种基因库。 F1杂种的杂种优势水平取决于亲本的个体表现以及它们之间的遗传差异程度。然而,RS形式是从B. rapa ssp的杂交获得的。与B. oleracea ssp。具有许多不良的农艺特性,例如种子质量低,产量和种子油含量低,油中芥酸含量高以及种子粉中芥子油苷含量高。因此,需要通过与天然双低油菜杂交来改良RS油菜,从而导致选择出的双低质半RS系可以用于育种。在这项研究中,我们评估了来自Ogura细胞质雄性不育(CMS)系和具有恢复基因的双倍单倍体(DH)半RS系之间杂交的F1杂种的种子产量潜力,该三个系在波兰。还评估了环境相互作用(GE相互作用)和恢复子和CMS品系效应的总体结合能力(GCA)以及杂种优势的基因型。研究结果为使用半RS系作为新杂交品种开发的组成部分提供了初步见解。甚至将50%的RS油菜子基因型引入自然恢复系也导致了显着的杂种优势效应,种子产量比优良亲本高出4.56%至90.17%。最佳杂交品种的产量为开放授粉品种Monolit的种子产量的108.6%,为杂交品种Arsenal的94.4%。最好的DH半RS系S1的种子产量具有明显的GCA阳性,可以推荐为可能的亲本,以纳入旨在开发新杂交品种的育种计划。

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