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首页> 外文期刊>Current Journal of Applied Science and Technology >Genetic Divergence and Variability Studies for Yield and Quality Traits in Elite Rice (Oryza sativa L.) Genotypes
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Genetic Divergence and Variability Studies for Yield and Quality Traits in Elite Rice (Oryza sativa L.) Genotypes

机译:Elite Rice(Oryza Sativa L.)基因型中产量和质量性状的遗传分解与变异性研究

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Genetic divergence and variability was assessed among 33 elite germplasm lines which were evaluated in RBD at Regional Agricultural Research Station, Warangal with an objective to classify? and understand the nature and magnitude of genetic diversity and variability? with regard to grain yield, yield components and quality traits using Mahalanobis D~(2) statistics. Genotypes were grouped into eight clusters and cluster I was the largest comprised of 23 genotypes followed by cluster II which consists of 4 genotypes and rest of the clusters from cluster III to cluster VIII contain one genotype each. The maximum cluster distance was found between cluster II and cluster IV (2178.98) followed by cluster III and cluster VIII (2160.16). The minimum inter cluster distance was observed between cluster I and cluster III (540.96). The intra cluster distance was maximum for cluster II (354.1) indicating existence of variability within the cluster. A perusal of results on cluster means revealed that cluster VIII recorded highest cluster mean for yield/plant, panicle length, test weight, plant height, volume expansion ratio, kernel length after cooking, length/breadth ratio, kernel length and kernel width, The most important trait causing maximum divergence was plant height (31.8) which ranked 168 times first followed by alkali spreading value, days to 50% flowering and test weight were responsible for differentiating the genotypes studied. Phenotypic coefficient of variation (PCV) was slightly higher than genotypic coefficient of variation (GCV) for all the traits. Moderate GCV and PCV estimates were observed for filled seeds/panicle, test weight, alkali spreading value, volume expansion ratio, yield/plant, water uptake and head rice recovery. High heritability coupled with moderate genetic advance as percent of mean was observed for test weight (98.5:46.62), filled seeds/panicle (92.6:46.26), alkali spreading value (90.9:43.15), yield/plant (78;35.30), head rice recovery (78.9:27.46) and volume expansion ratio (69.1:37.3). In this study the genotypes WGL 1143, WGL 1150, WGL 1149, Tellahamsa in cluster II and WGL 1062 in cluster IV and WGL 915 in cluster VIII were widely divergent and crosses may be effected among the genotypes of the clusters to get more heterosis and subsequently better recombinants in segregating generations.
机译:在RBD在区域农业研究站评估的33种Elite种质系中评估了遗传分歧和变异性,以令人生畏分类?并了解遗传多样性和变异性的性质和程度?关于籽粒产量,产量组分和使用Mahalanobis D〜(2)统计的质量性状。将基因型分为八个簇,簇I是由23种基因型组成的最大组成,然后由4个基因型组成,其中来自簇III的群体群体含有一种基因型,含有一种基因型。在群集II和群集IV(2178.98)之间发现最大簇距离,然后是集群III和群集VIII(2160.16)。在群集I和群集III之间观察到最小群集距离(540.96)。集群II(354.1)的群集距离最大为表示群集中的变异性的存在。群体的结果术语揭示了培养物/植物,穗长,试验重量,植物高度,体积膨胀比,粒度,长度/宽度,内核长度和核宽度的最高簇群。导致最大分歧的最重要的性状是植物高度(31.8),排名为168次,然后排名168次,然后进行碱性蔓延值,开花和试验重量的天数负责区分所研究的基因型。所有特征的表型变异系数(PCV)略高于基因型变异系数(GCV)。填充种子/穗,试验重量,碱涂布值,体积膨胀比,产量/植物,水吸收和头部恢复,观察到中度GCV和PCV估计。与中等遗传提前相结合的高遗传性,因为观察到试验重量的平均值的百分比(98.5:46.62),填充种子/穗(92.6:46.26),碱涂布值(90.9:43.15),产量/植物(78; 35.30),头部水稻恢复(78.9:27.46)和膨胀率(69.1:37.3)。在该研究中,基因型WGL 1143,WGL 1150,WGL 1149,Cliot II中的簇II和WGL 1062中的Tellahamsa在簇VIII中的簇II和WGL 1062中被广泛发散,并且可以在簇的基因型中进行杂交,以获得更多的杂种物和随后的杂种在分离世代的更好的重组剂。

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