首页> 外文期刊>African Journal of Biotechnology >Diallel analysis to study the genetic makeup of spike and yield contributing traits in wheat(Triticum aestivum L.)
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Diallel analysis to study the genetic makeup of spike and yield contributing traits in wheat(Triticum aestivum L.)

机译:用Diallel分析研究小麦(Triticum aestivum L.)穗部性状和产量贡献性状的遗传组成。

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Five wheat genotypes were crossed in complete diallel fashion for gene action studies of spike length, spikelets per spike, grains per spike, grain weight per spikeand grain yield per plant. Analysis of variance reveals?significant differences for all the traits. The significant deviation of joint regression value “b” from zero and non significance of “t” square value, suggested the absence of epistasis for all traits which in turn attested fitness of the data for simple additive dominance model. Additive genetic component (D) proved to be significant for all traits under consideration except grain weight spike?per?spike, but dominant component H1?and H2?was higher in magnitude than additive (D) for spike length and grain yield per plant, illustrating the prevalence of dominance genetic effects. The additive genetic component was more imperative for genetic manipulation of number of spikeletsper?spike?and number of grains per spike. Dominant genes at most of the loci were in excess than recessive genes for spike length and grain yield per plant which was firmly supported by the positive value of F and further strengthened by the value of (4DH1)0. 5+F/ (4DH1)?0. 5-F which was greater than unity for these two traits. The component that was strongly influenced by?the?environment was spikelets per spike. High magnitude of narrow sense heritability (h2n.s) was noticed for spikelets per spike (79%), and grains per spike (88%) thus illustrated fixable and additive heritable variation for these traits. The operation of over dominance was observed for spike length, grain weight per spike and grain yield per plant, whereas, spikelets per spike and grains per spike?were under additive type of gene action with partial dominance, implying that spikelets per spike and grains per spike?can significantly be improve by pursuing pedigree method while heterosis can be exploited for spike length, grain weight per spike and grain yield per plant.
机译:五个小麦基因型以完全的二联体方式进行杂交,以研究穗长度,穗的小穗,穗的粒数,穗的粒重和单株的产量。方差分析揭示了所有特征的显着差异。联合回归值“ b”相对于零的显着偏差以及“ t”平方值的不显着性,表明所有性状都没有上位性,这反过来证明了简单加性优势模型数据的适用性。事实证明,添加的遗传成分(D)对于所考虑的所有性状均具有重要意义,除了穗粒重穗外,但主要成分H1和H2在穗长和单株籽粒产量方面都比添加剂(D)高,说明优势遗传效应的普遍性。对于小穗的小穗数和每个穗的籽粒数的遗传操作,加成遗传成分更为重要。大多数基因座的显性基因在每株植物的穗长和籽粒产量上都比隐性基因过量,这由F的正值坚定地支持,而(4DH1)0值则进一步加强。 5 + F /(4DH1)= 0。 5-F大于这两个特征的统一性。受环境影响最大的组件是每个峰值的小峰值。对于每个穗的小穗(79%)观察到高度的狭义遗传力(h2n​​.s),因此每个穗的谷粒(88%)可以说明这些性状的固定和加性遗传变异。穗长,穗粒重和单株籽粒产量观察到过高的操作,而每个穗粒小穗和每穗粒的谷粒处于具有部分优势的基因作用的加性类型下,这意味着每个穗粒和每粒穗粒的小穗穗谱可以通过采用系谱方法得到显着改善,而杂种优势可以用于穗长,穗粒重和单株产量的利用。

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