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首页> 外文期刊>The Madras Agricultural Journal >Diversity analysis in Indian mustard (Brassica juncea L. Czern & Coss).
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Diversity analysis in Indian mustard (Brassica juncea L. Czern & Coss).

机译:印度芥菜(Brassica juncea L. Czern&Coss)的多样性分析。

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The present investigation was conducted with forty-six Indian mustard genotypes involving B. juncea x B. juncea and related species i.e. B. juncea x B. carinata, B. juncea x B. napus and somaclone background. These were evaluated to identify the genetically diverse genotypes for exploitation in a breeding programme aimed at improving yield potential of Indian mustard. Amongst seven clusters formed (Mahalanobis D2, 1936), each of the cluster I and IV had the largest genotypes (nine) and cluster II with smallest (two genotypes). Maximum divergence was observed between cluster V and VI followed by cluster V and VII and cluster II and VI. The genotypes RAURD-166, RAURD-205, RAURD-241, RAURD-32, JD-6, RAURD-168, RAURD-78, RAURD-195, RAURD-246, RAURD-172, RAURD-25 and RAURD-34 were observed as more divergent. Cluster V recorded minimum for plant height with early flowering and maturity, cluster VI, had more for primary branches per plant, secondary branches per plant, number of siliqua per plant, number of seeds per siliqua, biological yield per plant and seed yield per plant. The cluster VII had high mean for length of main raceme, siliqua on main raceme and seed yield per plant and cluster II, had high mean value for siliqua density. The clusters VI, VII, V and II were observed as more divergent clusters with high seed yield. The probability of getting better segregants and promising recombinants is expected to be more, from selecting genotypes of these clusters.
机译:本研究对46种印度芥菜基因型进行了研究,这些基因型涉及芥菜芽胞杆菌x芥菜芽孢杆菌和相关物种,即芥菜芽胞杆菌x芥菜孢子虫,芥菜芽胞杆菌x芥菜油菜和松果克隆背景。在旨在提高印度芥菜单产潜力的育种计划中,对这些基因进行了评估,以鉴定可利用的遗传多样性基因型。在形成的七个聚类中(Mahalanobis D 2 ,1936年),聚类I和IV的基因型最大(九个),聚类II的基因型最小(两个基因型)。在群集V和VI之间观察到最大差异,其次是群集V和VII与群集II和VI。基因型为RAURD-166,RAURD-205,RAURD-241,RAURD-32,JD-6,RAURD-168,RAURD-78,RAURD-195,RAURD-246,RAURD-172,RAURD-25和RAURD-34。观察到更加分歧。聚类V记录了具有早花和成熟期的植物高度的最小值,聚类VI,每株初级分支,每株次级分支,每株硅棒数,每株种子数,每株植物的生物产量和每株种子的产量更高。 VII类群的主要总状花序的长度均值较高,siliqua上的主要总状花序和每株植物的种子产量,II类群的均值较高。观察到VI,VII,V和II簇是发散性更高,种子产量高的簇。通过选择这些簇的基因型,获得更好的分离子和有前途的重组体的可能性有望更高。

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