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Genetic variability in quantitative traits of field pea (Pisum sativum L.) genotypes

机译:豌豆(Pisum Sativum L.)基因型定量性状的遗传变异

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摘要

The field pea is very important when it comes to the nutrition of domestic animals, due to a high content of proteins in its grains and aboveground biomass. The aim of this study was to examine genetic variability in quantitative traits of newly created field pea hybrids. The researchers studied two cultivars, one line and their F-3 and F-4 hybrids. The following quantitative traits were analysed: number of pods per plant, number of grains per pod, 1000 seed weight and grain yield. The largest number of pods per plant was recorded for the Baccara x L-CC line hybrid, with a statistically significantly larger (P < 0.01) number of pods per plant than all the other investigated genotypes, lines and hybrids. L-CC line x Baccara, and Sasa x L-CC line had a significantly larger (P < 0.05) number of grains per pod. The smallest number of grains per pod was recorded for the Sasa and Baccara x Sasa hybrid. The genotype vs. year interaction had a significant (P < 0.05) influence on 1000 seed weight. Significantly higher (P < 0.05) 1000 seed weight was recorded for the Baccara genotype, when compared with all other investigated genotypes, lines and hybrids. The lowest 1000 seed weight was recorded for the L-CC line. The genotype x year interaction had a significant influence on the seed yield of field pea. During this research, high seed yields were achieved by the Baccara genotype and Baccara x L-CC line and Baccara x Sasa hybrids.
机译:由于其谷物中的蛋白质和地上生物量高,豌豆在涉及国内动物的营养时非常重要。本研究的目的是研究新创建的野生豌豆杂交种的定量性状的遗传变异。研究人员研究了两种品种,一条线及其F-3和F-4杂种。分析了以下定量性状:每株植物的豆荚数,每种豆荚的晶粒数,1000种种子重量和谷物产量。为Baccara X L-CC线杂种记录每株植物数量最多,统计学上显着更大(P <0.01)每个植物数量的豆荚,而不是所有其他研究的基因型,线和杂种。 L-CC线X Baccara,SASA X L-CC系列具有显着更大的(P <0.05)每个POD的晶粒。为SASA和Baccara X SASA混合动力记录每个豆荚的最小数量的谷物。基因型与年相互作用对1000种种子重量的显着(P <0.05)。与所有其他研究的基因型,线和杂种相比,将百乐基因型记录百乐基因型的较高(P <0.05)1000种子重量。为L-CC线记录最低1000种种子重量。基因型X年相互作用对豌豆的种子产量产生了重大影响。在本研究期间,百乐基因型和百乐X X-CC线和Baccara X Sasa杂交种实现了高种子产量。

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