Genetic Variability Analysis of Gamma Irradiated M2 Populations for Higher Oleic Acid Content in TMV (Gn) 13 (Arachis hypogaea L.)

J.R. Jerish, S. Saravanan, K. Geetha, M. A. Pillai, J. Sheela, A. K. Pushpam, Suvendu Mondal
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Abstract

Background: Groundnut (Arachis hypogaea L.) is an important commercial crop augmenting protein and oil industry. Breeding for improved peanut crop with higher oleic acid content through induced mutagenesis could the best cooking oil in terms of health benefits. Further, the knowledge of the variability parameters and frequency distribution of desired traits could benefit plant breeders while developing selection criteria to maximising the genetic gain. Methods: The present study aimed to determine the mean lethal dose (LD 50) of gamma irradiation on groundnut TMV (Gn) 13) to create the genetic variability and to screen the putative mutants with allele specific primers based on phenotypic and agronomic traits. Result: Five traits viz., plant height, number of pods per plant, pod length, pod width and pod yield per plant had expressed significantly higher heritability coupled with high Genetic advance per cent of Mean substantiating the role of additive gene action. Also, the frequency distribution pointed out the positively skewed traits in both the populations. Further, molecular validation through AS-PCR assay revealed the presence of ahFAD2A mutant allele in 4 out of 155 putative mutants. As a result, these mutants have 43-45% oleic acid than the control TMV (Gn) 13, which has 35-39%.
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伽马辐照 M2 群体中油酸含量较高的 TMV (Gn) 13(Arachis hypogaea L.)的遗传变异分析
背景:落花生(Arachis hypogaea L.)是一种重要的商业作物,可增加蛋白质和油脂工业。通过诱导诱变培育油酸含量更高的改良花生作物,可生产出对健康有益的最佳食用油。此外,了解所需性状的变异参数和频率分布,对植物育种者制定最大化遗传增益的选择标准大有裨益。研究方法本研究旨在确定伽马辐照对落花生 TMV(Gn)13 的平均致死剂量(LD 50),以产生遗传变异,并根据表型和农艺性状用等位基因特异性引物筛选潜在突变体。结果植株高度、单株荚数、荚长、荚宽和单株荚产量这五个性状的遗传率明显较高,平均值的遗传进展率也较高,这证明了基因的加性作用。此外,频率分布也表明两个群体的性状都呈正偏态。此外,通过 AS-PCR 检测进行的分子验证发现,在 155 个假定突变体中,有 4 个存在 ahFAD2A 突变等位基因。因此,这些突变体的油酸含量为 43-45%,而对照 TMV (Gn) 13 的油酸含量为 35-39%。
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