Principal Component Analysis and Genetic Association of Seed Related Traits in an Underutilized Pulse Crop, Ricebean (Vigna umbellata)

S. Anandhinatchiar, P. Jayamani, D. Kumaresan, K. Bhuvaneswari, M. Sudha
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Abstract

Background: Seed related traits are important since they directly draw consumer preference. But there are only limited numbers of studies with reference to seed related traits. Hence, the present study was undertaken to study the genetic diversity and genetic relationship among seed traits in ricebean. Methods: During Rabi, 2022-23, a set of 109 ricebean germplasm with seven checks were evaluated in Augmented design II at Department of Pulses, Centre for Plant Breeding and Genetics, Tamil Nadu Agricultural University, Coimbatore. Result: Morphological characterization of 109 genotypes revealed that green yellow was the predominant seed coat colour. Seed coat pattern was absent in most of the genotypes and in rest of the genotypes, speckled type was predominant. The traits viz., bulk density, seed volume and hundred seed weight exhibited high heritability with high genetic advance as per cent of mean. Seed volume, seed thickness, bulk density, seed length and seed breadth evidenced highly significant and positive association with hundred seed weight. PCA analysis revealed that the traits viz., length breadth ratio, bulk density, hundred seed weight, seed volume, seed length and seed thickness contributed to the maximum genetic variability. In addition, it also earmarked the best performing genotypes for each seed related trait. Hence, the above findings could be effectively utilized for the development of ricebean cultivars with ideal seed characteristics.
未充分利用的豆类作物黄豆种子相关性状的主成分分析及遗传关联
背景:种子相关性状很重要,因为它们直接决定了消费者的偏好。但有关种子相关性状的研究数量有限。因此,本研究旨在研究稻豆种子性状的遗传多样性和遗传关系。方法:在2022-23年拉比期间,在哥印拜陀泰米尔纳德邦农业大学植物育种与遗传中心豆类部进行扩增设计II,对109份经7项检查的水稻豆类种质进行评价。结果:109个基因型的形态特征显示,种皮颜色以黄绿色为主。大多数基因型不存在种皮花纹,其余基因型以斑点型为主。容重、种子体积、百粒重等性状遗传力高,遗传进步率高。种子体积、种子厚度、种子容重、种子长、种子宽与百粒重呈极显著正相关。主成分分析表明,长宽比、容重、百粒重、种子体积、种子长度和种子厚度对遗传变异贡献最大。此外,它还为每个种子相关性状指定了表现最好的基因型。因此,上述研究结果可有效地用于培育具有理想种子特性的稻豆品种。
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