Stability analysis to identify improved lines of cluster bean (Cyamopsis tetragonoloba L. Taub.)

Smaranika Mishra, Koundinya A.V.V., Aghora T.S., Senthil Kumar M.
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Abstract

To select a stable and best-performing cluster bean line over seasons, an experiment was carried out using five shortlisted advanced breeding lines of vegetable cluster bean in randomized block design with four replications in Kharif and Summer seasons of 2019–20 and 2020–21 at ICAR-Indian Institute of Horticultural Research, Bengaluru. Additive mean effect and multiplicative interaction analysis of variation indicated a significant genotype and environment (G × E) interaction for all the traits. A high environment effect of 33.73% of the total sum of squares was observed for the trait pods per cluster followed by yield per hectare, single pod weight, pods per plant and clusters per plant. The first two interactive principal component axes (IPCA) cumulatively contributed 87.9, 97.3, 94.6, 98.6 and 85.6% variations for yield per hectare, number of clusters per plant, pods per plant, pods per cluster and single pod weight, respectively, leaving a small but significant amount of variation in the third IPCA. A mean versus weighted average of absolute score (WAAS) biplot indicated that genotype IIHRCB 26-2-1 is stable and best for the trait clusters per plant (>20 clusters/plant) while, IIHRCB 22-1-1 is superior and stable (WAAS mean nearly 0.00) for pods per cluster with >5 pods/cluster, pods per plant with >90 pods/plant, single pod weight with >3.0 g and yield per hectare around 24 t/ha. For all the environments, genotype IIHRCB 22-1-1 was found ‘all-time winner’ for yield per hectare and single pod weight. Based on multitrait stability index, IIHRCB 22-1-1 was found the best performer and the most stable genotype.

通过稳定性分析确定团粒豆(Cyamopsis tetragonoloba L. Taub.)的改良品系
为了选育出稳定且表现最佳的四季豆品系,2019-20 年和 2020-21 年的 Kharif 季和夏季,在班加罗尔印度园艺研究所(ICAR-Indian Institute of Horticultural Research, Bengaluru),采用随机区组设计和四次重复的方法,利用五个入围的先进菜用四季豆育种品系进行了试验。加性平均效应和乘法交互作用变异分析表明,基因型和环境(G × E)对所有性状都有显著的交互作用。每簇结荚数这一性状的环境效应较高,占总平方和的 33.73%,其次是每公顷产量、单荚重、单株结荚数和单株簇数。前两个交互主成分轴(IPCA)对每公顷产量、每株簇数、每株荚数、每簇荚数和单株荚重的累计贡献率分别为 87.9%、97.3%、94.6%、98.6% 和 85.6%,第三个交互主成分轴的贡献率较小,但差异显著。平均值与加权平均绝对值(WAAS)双图表明,基因型 IIHRCB 26-2-1 在单株簇数(20 簇/株)这一性状上表现稳定且最佳,而 IIHRCB 22-1-1 在单株荚数(5 荚/簇)、单株荚数(90 荚/株)、单株荚重(3.0 克)和每公顷产量(24 吨/公顷左右)上表现优异且稳定(WAAS 平均值接近 0.00)。在所有环境中,基因型 IIHRCB 22-1-1 都是每公顷产量和单荚重的 "常胜将军"。根据多性状稳定指数,IIHRCB 22-1-1 是表现最好、最稳定的基因型。
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