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首页> 外文期刊>Journal of genetics >Genetic estimation of grain yield and its attributes in three wheat ( Triticum aestivum L.) crosses using six parameter model
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Genetic estimation of grain yield and its attributes in three wheat ( Triticum aestivum L.) crosses using six parameter model

机译:三个小麦(Triticum Aestivum L.)六个参数模型的遗传估计及其三个小麦(Triticum aestivum L.)的遗传估算

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Grain yield is a complex polygenic trait representing a multiplicative end product of contributing yield attributes governed by simple to complex gene interactions. Deciphering the genetics and inheritance of traits/genes influencing yield is a prerequisite to harness the yield potential in any crop species. The objective of the present investigation was to estimate genetic variance components and type ofgene action controlling yield and its component traits using six populations (P 1 , P 2 , F 1 , F 2 , BC 1 and BC 2 ) of the three bread wheat crosses. Cross I (25th HRWSN 2105 X WH 1080), cross II (22ndSAWYT323 X RSP 561) and cross III (22ndSAWYT333 X WH 1080) involving elite stripe rust resistant wheat genetic stocks in combination with commercial check varieties were used for analysis. A combination of morpho-physiological, biochemical and disease influencing traits were evaluated, thus exploring the possibility of multi-trait integration infuture. Results revealed that the estimated mean effects (m) were highly significant for all the traits in all crosses, indicating that selected traits were quantitatively inherited. The estimate of dominant gene effect was highly significant for plant height, number of tillers per plant in all the three crosses. Grain yield per plant was highly significant in the cross II while total protein content was highly significant in both crosses II and III. Glycine betaine content showed significant additive genes effect. Duplicate epistasis was the most significant for traits like plant height, total protein content and grain yield per plant. Dominance gene effect was more important than additive gene effects in the inheritance of grain yield and most other traits studied. The magnitude of additive X additive gene effects was high and positively significant whereas dominance X dominance was negatively significant for most of the traits studied in the three crosses. Additive X dominance gene effects was of minor significance, thus indicating that selection for grain yield and its components should be delayed to later generations of breeding.
机译:谷物产量是一种复杂的多基因特征,代表一种乘法末期产物,其促进通过简单至复杂的基因相互作用来治理的产量属性。破译影响产量的特征/基因的遗传和遗传是在任何作物物种中利用屈服潜力的先决条件。本研究的目的是使用三个面包小麦十字架的六个群体(P 1,P 2,F 1,F 2,BC 1和BC 2)估计遗传方差组分和型基因作用控制产量及其组分特征。交叉I(第25个HRWSN 2105 x WH 1080),交叉II(22NDSAWYT323 X RSP 561)和涉及Elite条纹防锈小麦遗传股的交叉III(22NDSAWYT333 X WH 1080)与商业检查品种结合进行分析。评估了均相生理,生化和疾病影响性状的组合,从而探讨了多特质融合的可能性。结果表明,估计的平均效应(M)对于所有交叉口中的所有特征非常重要,表明所选性状是定量遗传的。显性基因效应的估计对于植物高度非常显着,所有三个交叉中每株植物的分蘖数量非常重要。十字架II中,每株植物的谷物产量非常显着,而III和III的交叉II和III的总蛋白质含量非常显着。甘氨酸甜菜碱含量显示出显着的添加剂基因效应。重复的简化是植物高度,总蛋白质含量和每株籽粒产量最重要的。优势基因效应比籽粒产量的遗传和研究的大多数其他性状中的添加剂基因效应更重要。添加剂X添加剂基因效应的幅度高且呈正显着,而优势X优势对于三个十字架中研究的大多数性状产生负面意义。添加剂x优势基因效应具有较小的意义,因此表明谷物产量及其组分的选择应延迟到后代的育种。

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