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首页> 外文期刊>The Indian Journal of Agricultural Sciences >Relationship of molecular and phenotypic divergence with hybrid performance in Indian mustard (Brassica juncea)
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Relationship of molecular and phenotypic divergence with hybrid performance in Indian mustard (Brassica juncea)

机译:芥菜(芥菜)的分子和表型差异与杂种表现的关系

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Predicting hybrid performance from the parental generation could largely enhance the efficiency of hybrid breeding programmes. To determine the relationship of parental distances estimated from phenotypic traits and SSR markers with F-1 performance, average heterosis and heterobeltiosis in 44 indigenous and exotic genotypes of Indian mustard [Brassica juncea (L.) Czern. and Coss.], were studied. Jaccard's genetic distances (JD) and Manhattan genetic distances (MD) were taken as criteria to classify the genotypic pairs into four diversity groups, viz. high, intermediate high, intermediate low and low. Seventy crosses representing the four diversity groups each for JD and MD were evaluated. Placement of higher number of significantly better hybrids was in extreme diversity groups created using JD, while, it was higher in intermediate diversity groups generated through MD. Low regression values were observed between JD among genotypic pairs and mean performance (R-2= 0.02), average heterosis (R-2= 0.046) and heterobeltiosis (R-2 = 0.15). Similarly, low regression values were observed between MD among genotypic pairs and mean performance (R-2= 0.033), average heterosis (R-2= 0.046) and heterobeltiosis (R-2= 0.009). The slope of linear regression curve, placement of hybrids on the plot and low regression values in all the cases revealed that there is no significant association between genetic distance and hybrid performance. Therefore, desirable genetic diversity, in form of heterotic pools, needs to be identified from indigenous and exotic germplasm for expression of heterosis.
机译:从亲代预测杂种表现可大大提高杂种育种计划的效率。为了确定表型性状和SSR标记估计的亲本距离与印度芥菜[Brassica juncea(L.)Czern]的44种土著和外来基因型的F-1表现,平均杂种优势和杂种优势的关系。和Coss。],进行了研究。杰卡德(Jaccard)的遗传距离(JD)和曼哈顿的遗传距离(MD)被作为将基因型对分为四个多样性组的标准。高,中高,中低和低。评价了代表JD和MD的四个多样性组的70个杂交。在使用JD创建的极端多样性组中,较高数量的明显更好的杂种的位置较高,而在通过MD生成的中等多样性组中则较高。在基因型对之间的JD与平均表现(R-2 = 0.02),平均杂种优势(R-2 = 0.046)和异型骨病(R-2 = 0.15)之间观察到较低的回归值。同样,在基因型对之间的MD与平均表现(R-2 = 0.033),平均杂种优势(R-2 = 0.046)和异型骨病(R-2 = 0.009)之间观察到较低的回归值。在所有情况下,线性回归曲线的斜率,图上杂种的位置和低回归值都表明遗传距离与杂种表现之间没有显着关联。因此,需要从本地和外来种质中鉴定出以杂种池形式存在的理想遗传多样性,以表达杂种优势。

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