Exploring Genetic Variability Parameters for Yield and Quality Traits in Urdbean Genotypes and Its Triple Test Cross F1 Hybrids

Tarun Rathore, R. K. Yadav, Sarvendra Kumar, L. Singh, Geeta Rai, C.L. Maurya
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Abstract

Pulses play a vital role in providing nutrition to billions of individuals globally. Improving yield in the urdbean faces a significant challenge due to its narrow genetic base and limited exploitable variation. This research explores the genetic variability, heritability, and genetic advance among 111 diverse lines of urdbean. 27 lines, three testers, and Eighty-one F1 hybrids were grown in a Randomized Block Design (RBD) with three replications during Kharif 2023 at the Crop Experimental Research Farm of Chandra Shekhar Azad University of Agriculture and Technology, Kalyanpur, Kanpur (U.P.). The analysis of variance for parents (27 lines and three testers) and their 81 triple test cross hybrids indicated highly significant genotypic differences across all traits under study. The PCV was higher compared to GCV for all the traits, While Maximum GCV and PCV were observed for primary branches per plant, number of pods per plant, seed yield per plant, biological yield per plant, and harvest index. Broad-sense heritability (h2b) was high for all the traits examined ranging from 73.27% to 98.05%. Further, high heritability coupled with high genetic advance as percent over mean were recorded for all the traits except day to 50% flowering, day to 75% maturity, and protein content, where high heritability is observed with moderate genetic advance. These findings suggest the involvement of additive genetic effects in shaping the inheritance of these traits and phenotypic selection of these characters would be effective for further breeding purposes.
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探索大豆基因型及其三重测交 F1 代杂交种产量和质量性状的遗传变异参数
豆类在为全球数十亿人提供营养方面发挥着至关重要的作用。由于遗传基础狭窄和可利用的变异有限,提高大豆产量面临着巨大挑战。这项研究探讨了 111 个不同的大豆品系的遗传变异性、遗传率和遗传进展。2023 年 Kharif 期间,在坎普尔(U.P.)卡扬普尔 Chandra Shekhar Azad 农业和技术大学的作物试验研究农场,以随机区组设计(RBD)和三次重复的方式种植了 27 个品系、3 个测试者和 81 个 F1 杂交种。对亲本(27 个品系和 3 个测试者)及其 81 个三重测试杂交种进行的方差分析表明,所研究的所有性状都存在非常显著的基因型差异。所有性状的 PCV 均高于 GCV,而每株主枝、每株豆荚数、每株种子产量、每株生物产量和收获指数的 GCV 和 PCV 均最大。所有性状的广义遗传率(h2b)都很高,从 73.27% 到 98.05%。此外,除开花至 50%日龄、成熟至 75%日龄和蛋白质含量外,其他所有性状的遗传率都很高,遗传进展也很高。这些研究结果表明,加性遗传效应参与了这些性状的遗传,对这些性状进行表型选择将对进一步育种非常有效。
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