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Selection of Superior Lentil (Lens esculenta M.) Genotypes by Assessing Character Association and Genetic Diversity

机译:通过评估性状关联和遗传多样性选择优良扁豆(Lens esculenta M.)基因型

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摘要

Lentil is one of the most important pulse crops in the world as well as in Bangladesh. It is now considered a main component for training and body building practising in first world countries. Yield varies tremendously from year to year and location to location. Therefore, it is very important to find genotypes that perform consistently well even in ecological farming systems without any intercultural operations. Twenty lentil genotypes were tested during the period from November 2010 to March 2011 and from December 2011 to March 2012 with three replicates in each season to determine genetic variability, diversity, characters association, and selection indices for better grain yield. The experiment was conducted at the breeding field of the Department of Genetics and Plant Breeding, Bangladesh Agricultural University, Mymensingh. This study revealed that all the genotypes possess a high amount of genetic diversity. Plant height and 100-grain weight showed significant positive correlation with grain yield plant−1 that was also confirmed by path analysis as the highest direct effect on grain yield. The genotypes BM-513 and BM-941 were found to be the best performer in both the seasons and were considered as consistent genotype. The genotypes were grouped into four clusters based on Euclidean distance following Ward's method and RAPD analysis. However, discriminant function analysis revealed a progressive increase in the efficiency of selection and BM-70 ranked as the best followed by the genotypes BM-739, BM-680, BM-185, and BM-513. These genotypes might be recommended for farmers' cultivation in ecological farming in Bangladesh.
机译:小扁豆是世界上以及孟加拉国最重要的豆类作物之一。现在,它被视为第一世界国家训练和健身实践的主要组成部分。每年和不同地点的产量差异很大。因此,找到即使在没有任何跨文化操作的生态农业系统中始终表现良好的基因型也非常重要。在2010年11月至2011年3月以及2011年12月至2012年3月期间测试了20种小扁豆基因型,每个季节重复三次,以确定遗传变异性,多样性,性状关联和选择指数,以提高谷物产量。该实验是在孟加拉国农业大学Mymensingh遗传与植物育种系的育种场进行的。这项研究表明,所有基因型都具有很高的遗传多样性。株高和100粒重与籽粒产量 -1 具有显着的正相关关系,通径分析也证实其对籽粒产量的最大直接影响。发现基因型BM-513和BM-941在两个季节中表现最好,被认为是一致的基因型。根据沃德方法和RAPD分析,基于欧氏距离将基因型分为四个聚类。然而,判别功能分析显示选择效率逐步提高,而BM-70排名最高,其次是基因型BM-739,BM-680,BM-185和BM-513。这些基因型可能被推荐用于孟加拉国生态农业中的农民种植。

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