Combining Ability and Heterosis Analysis for Seed Yield Related Traits in Brassica Napus

N. Fatima, M. Hassan, Sehrish Sarwar, Huma Qamar, F. Khan
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Abstract

Brassica napus L. is important oilseed crop, having higher oil contents (40%) with low contents of glucosinolate and erucic acid, make it perfect for edible purpose. Ten Brassica napus L. genotypes were crossed in line × tester mating design. Seven high yielding female lines were crossed with 3 low yielding testers. The 21 F1’s along with parents were evaluated in Randomized Complete Block Design with three repetitions in the field of Department of Plant Breeding and genetics, UAF. Out of thirteen attributes, eleven attributes (plant height, days taken to flower initiation, days taken to 50% flower initiation, number of primary branches, number of secondary branches, number of siliques per plant, siliqua length, seed yield per plant, 100-seed weight, seed yield per plot and oil content) showed significant results for all genotypes under study while two attributes (seed per siliqua and protein content) were non-significant. The parent ZN-M-9 was chosen as excellent overall combiner for plant height, days taken to flower initiation, days to 50% flowering and number of siliques plant-1 and ZM-M-6 and Rainbow identified as the excellent general combiner for the seed yield plant-1 and seed yield per plot, respectively. The cross ZN-M-9 × ZMR-3 & DGL × ZN-R-1 identified as good specific combiners for seed yield plant-1 and seed yield plot-1, respectively. The cross ZM-M-6 × ZMR-3 was selected as best for days taken to first flower beginning, days taken to 50% flowering, and oil content on the basis of better parent heterosis. The genetic information obtained in this research will be helpful for the breeder during their future breeding program
甘蓝型油菜种子产量相关性状配合力及杂种优势分析
甘蓝型油菜(Brassica napus L.)是重要的油料作物,含油量高(40%),硫代葡萄糖苷和芥酸含量低,适合食用。采用系×试配设计对10个甘蓝型油菜基因型进行杂交。7个高产母系与3个低产试验品系杂交。采用随机完全区组设计,对21个F1基因及其亲本进行3次重复评价。在13个性状中,11个性状(株高、开花所需天数、50%开花所需天数、一次枝数、次枝数、单株角果数、角果长度、单株种子产量、百粒重、亩产和含油量)对所有基因型均有显著性影响,而2个性状(角果粒数和蛋白质含量)无显著性影响。选择亲本ZN-M-9作为株高、开花天数、50%开花天数和单株数的优秀综合组合,将ZM-M-6和Rainbow分别确定为籽粒产量和单株产量的优秀综合组合。杂交组合ZN-M-9 × ZMR-3和DGL × ZN-R-1分别被鉴定为高产株-1和高产小区-1的良好特异性组合。以ZM-M-6 × ZMR-3为杂交组合,在较好的亲本杂种优势基础上,选择ZM-M-6 × ZMR-3为开花天数、50%开花天数和含油量最佳组合。本研究所获得的遗传信息将为今后的育种工作提供参考
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