Association studies in pea for yield and yield attributing traits

4区 农林科学 Q3 Agricultural and Biological Sciences
Hardeep Kaur, R. Dhall, P. Sharma
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引用次数: 1

Abstract

The present study was conducted to find out correlation and path analysis for 10 yield and yield attributing traits using 159 diverse pea genotypes. Correlation studies revealed that the days to 50% flowering, node at which 1st pod appears, number of pods/plant, number of seeds/pod, pod length, pod weight and days to 1st picking had significant and positive correlation with total yield/plant while, plant height and shelling percentage were negatively correlated with total yield/plant. The inter-correlation was observed between days to 50% flowering, days to 1stpicking and node at which 1stpod appears; shelling percentage with number of seeds/pod and pod length; plant height with number of pods/plant and days to 1st picking. It is concluded that there is positive and inter-correlation of total yield/plant with the number of pods/plant, pod length, number of seeds/pod, days to 50% flowering, days to 1stpicking. The positive association suggested that selection should be oriented towards more number of pods per plant, pod length, more number of seeds per pod which would consequently leads to higher pod yield per plant. The Path analysis studies revealed that the number of pods per plant exhibit highest positive effect on yield per plant.
豌豆产量与产量性状的关联研究
本研究利用159个不同豌豆基因型,对10个产量和产量性状进行了相关分析和通径分析。相关研究表明,开花至50%的天数、第一个荚果出现的节点、荚果数/株、种子数/荚果、荚果长、荚果重、到第一次采摘的天数与总产量/株呈显著正相关,而株高和脱壳率与总产量/株呈显著负相关。开花至50%的天数、采穗至1穗的天数和出现1穗的节点之间存在显著的相关性;脱壳率随种子数/荚数和荚长变化;植株高度与荚数/株和天数到第一次采摘。结果表明,单株总产量与单株荚果数、荚果长、籽粒数、开花至50%天数、采收至1穗天数均呈正相关。正相关表明,选择应以单株荚果数多、荚果长、荚果粒数多为目标,从而获得更高的单株荚果产量。通径分析表明,单株荚果数对单株产量的正向影响最大。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Genetika-Belgrade
Genetika-Belgrade AGRONOMY-GENETICS & HEREDITY
CiteScore
1.80
自引率
0.00%
发文量
1
审稿时长
6-12 weeks
期刊介绍: The GENETIKA is dedicated to genetic studies of all organisms including genetics of microorganisms, plant genetics, animal genetics, human genetics, molecular genetics, genomics, functional genomics, plant and animal breeding, population and evolutionary genetics, mutagenesis and genotoxicology and biotechnology.
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