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首页> 外文期刊>Genetics and molecular biology: publication of the Sociedade Brasileira de Genetica >Partitioning genetic effects due to embryo, cytoplasm and maternal parent for oil content in oilseed rape (Brassica napus L.)
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Partitioning genetic effects due to embryo, cytoplasm and maternal parent for oil content in oilseed rape (Brassica napus L.)

机译:由于油菜籽中油含量的不同,由胚胎,细胞质和母本造成的遗传效应分配

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摘要

Analysis of genetic main effects and genotype x environment (GE) interaction effects on the oil content of oilseed rape (Brassica napus L.) was conducted by using a genetic model for the quantitative traits of seeds in diploid plants. The experiments were carried out over two years with 8 parents and a diallel mating design, which produced F1 and F2 generations. We found that the oil content of rape was simultaneously controlled by embryo genetic effect, cytoplasmic effects and maternal genetic effect as well as GE interaction effects, with the cytoplasmic and maternal effects playing the main role. The results indicate that selection of maternal plants for high oil content would be more efficient than selection based on single seeds. Since the GE interaction effects accounted for 73.69% of the total genetic effects and were more important than the genetic main effects it seems that selection might be influenced by environmental conditions. The estimate of narrow-sense heritability for oil content was 73.52% with the interaction heritability being larger than the general heritability, indicating that the early generations can be used for selection for high oil content. The prediction of genetic effects suggested that the parent cultivars Youcai 601 and Gaoyou 605 were better than the other cultivars for increasing oil content during the breeding of B. napus. The implications for the quantitative trait loci mapping of seed traits interfered by these three genetic systems is also discussed.
机译:利用遗传模型对二倍体植物种子的数量性状进行了遗传主要效应和基因型x环境(GE)相互作用对油菜(Brassica napus L.)含油量的影响。该实验是在8个亲本和一种Dialelel交配设计下进行的,历时两年,产生了F1和F2代。我们发现,油菜的含油量同时受胚胎遗传效应,细胞质效应和母体遗传效应以及GE相互作用的影响,其中细胞质和母体效应起主要作用。结果表明,选择高含油量的母本植物比基于单粒种子的选择更为有效。由于GE相互作用效应占总遗传效应的73.69%,比遗传主要效应更重要,因此似乎选择可能受到环境条件的影响。含油量的狭义遗传力估计为73.52%,相互作用的遗传力比一般的遗传力大,表明早期可以用于选择高含油量。遗传效应的预测表明,在油菜的育种中,油菜601和高油605的亲本品种在增加油含量方面优于其他品种。还讨论了受这三个遗传系统干扰的种子性状的数量性状基因座作图的意义。

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