首页> 外文期刊>Turkish Journal of Agriculture: Food Science and Technology >Correlation and Path Coefficient Analysis of Seed Yield and Yield Components of French Bean (Phaseolus vulgaris L.) Genotypes in Sub-tropical Region
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Correlation and Path Coefficient Analysis of Seed Yield and Yield Components of French Bean (Phaseolus vulgaris L.) Genotypes in Sub-tropical Region

机译:亚热带地区种子产量和法豆种子产量和产量组分的相关路径系数分析

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This research aims to determine the relationship between yield and yield components of French bean using multivariate statistical techniques. The study was conducted at Horticulture Research Station, Dailekh, Nepal for consecutive three year of 2016-2018. In this study, six French bean genotypes were used. The following measurements and observations were made: germination (%), pod length (cm), pod diameter (mm), individual pod weight and number of seeds pod-1 , number of dry pods plant-1, dry pod yield plant-1 and dry pod yield (t/ha), 100 seed weight (g) and seed yield (t/ha). Highly significant and positive correlation was recorded between seed yield and individual pod weight (r= 0.659***), number of seed pod-1 (r=0.548**) and pod length (0.459*). Conversely, pod diameter showed a negative and non-significant (-0.025) correlation on seed yield. Based on simple regression analysis, linear regression of individual pod weight, number of seed pod-1 and pod length leads to an increase in the seed yield (t/ha) by 0.188, 0.285 and 0.103 units respectively. From the path coefficient analysis maximum positive direct effect on seed yield was recorded by number of seeds pod-1 (0.767) followed by 100 seed weight (0.530) and individual pod weight (0.429). Also, stepwise multiple linear regression analysis revealed that three traits individual pod weight, 100 seed weight and number of dry pod plant-1 account for 68.22% of the total variation in seed yield, while only 31.78% was explained by rest of the variables. Summarizing outcomes of four statistical methods showed that individual pod weight appeared to be the most effective contributor of seed yield followed by the number of seed pod-1, 100 seed weight, and pod length. Therefore, focus should be laid on these characters in future breeding program while selecting genotypes for sub-tropics for improving the seed yield.
机译:本研究旨在使用多元统计技术确定法国豆产量和产量组分之间的关​​系。该研究在园艺研究站,Dailekh,尼泊尔连续三年进行了2016 - 2018年。在这项研究中,使用了六种法语豆类基因型。进行以下测量和观察结果:萌发(%),豆荚长度(cm),荚直径(mm),单个豆荚重量和种子豆荚数,干豆荚数量植物-1,干荚产量植物-1和干燥荚产率(T / HA),100种系重(G)和种子产率(T / Ha)。种子产量和单个豆荚重量(r = 0.659 ***)之间记录了高度显着和正相关性,种子POD-1(R = 0.548 **)和荚长(0.459 *)的数量。相反,豆荚直径显示出对种子产量的负面和非显着(-025)相关性。基于简单的回归分析,单个豆荚的线性回归,种子豆荚和荚长的数量分别导致种子产率(T / Ha)的增加0.188,0.285和0.103单位。从路径系数分析,通过种子POD-1(0.767)的数量记录对种子产率的最大直接效应,其次是100种种子重量(0.530)和单个豆荚重量(0.429)。此外,逐步多元线性回归分析显示,三种特征单个豆荚重量,100种种子重量和干荚植物的数量-1占种子产量总变化的68.22%,而只有31.78%的变量解释。四种统计方法的总结结果表明,个体荚重量似乎是种子产量最有效的种子产量贡献者,然后是种子荚-1,100种子重量和荚长的数量。因此,重点应该在未来的繁殖计划中铺设这些角色,同时选择用于提高种子产量的子热带基因型。

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