K. Pramanik, M. Kumari, G.S. Sahu, G.C. Acharya, P. Tripathy, M. Dash, C. Jena
{"title":"Assessment of Transgressive Segregants for Yield and its Component Traits in French Bean (Phaseolus vulgaris L.)","authors":"K. Pramanik, M. Kumari, G.S. Sahu, G.C. Acharya, P. Tripathy, M. Dash, C. Jena","doi":"10.18805/lr-5301","DOIUrl":null,"url":null,"abstract":"Background: Extreme phenotypes carried on by transgressive segregation are, moreover, heritably stable in contrast to heterosis. It has been hypothesized that the development of extreme or “transgressive” traits in segregating hybrid populations assists in the adaptive divergence of hybrid taxa. The investigation on French bean was experimented to evaluate transgressive segregants generated in the F2 generation for yield and related traits. Methods: The present study on French bean was conducted during rabi 2019 to 2022 to elicit data on transgressive segregants produced for yield and related traits in F2 generation. Fertile F1 hybrids were developed from three crosses: IC 632961 × Arka Sukomal, IC 632961 × Arka Arjun and Arka Arjun × IC 63296. Heterosis was estimated for yield and related traits in these hybrids. The F2 progeny were evaluated in open field condition. Mean, standard deviation and percentage of transgressive segregants were estimated for quantitative traits under investigation. Result: Transgressive segregants were observed in all three crosses, with the highest number of transgressive segregants for yield traits found in the progeny of the cross IC 632961 × Arka Sukomal. The identification and isolation of such transgressive segregants indicate that the parents possess favourable alleles and genes governing the traits of interest, which can be consolidated into a single or a few genotypes through stringent selection. Superior and desirable transgressive segregants were observed for all sixteen yield and its component traits, except for leaf length, in the two cross combinations Arka Arjun × IC 632961 and IC 632961 × Arka Arjun. The highest percentage of transgressive segregation was observed for the number of inflorescences per plant (79.49%), followed by the number of pods per plant (78.46%) and pod yield per plant (75.61%) in the F2 generation.\n","PeriodicalId":17998,"journal":{"name":"LEGUME RESEARCH - AN INTERNATIONAL JOURNAL","volume":"84 7","pages":""},"PeriodicalIF":0.0000,"publicationDate":"2024-05-13","publicationTypes":"Journal Article","fieldsOfStudy":null,"isOpenAccess":false,"openAccessPdf":"","citationCount":"0","resultStr":null,"platform":"Semanticscholar","paperid":null,"PeriodicalName":"LEGUME RESEARCH - AN INTERNATIONAL JOURNAL","FirstCategoryId":"1085","ListUrlMain":"https://doi.org/10.18805/lr-5301","RegionNum":0,"RegionCategory":null,"ArticlePicture":[],"TitleCN":null,"AbstractTextCN":null,"PMCID":null,"EPubDate":"","PubModel":"","JCR":"","JCRName":"","Score":null,"Total":0}
引用次数: 0
Abstract
Background: Extreme phenotypes carried on by transgressive segregation are, moreover, heritably stable in contrast to heterosis. It has been hypothesized that the development of extreme or “transgressive” traits in segregating hybrid populations assists in the adaptive divergence of hybrid taxa. The investigation on French bean was experimented to evaluate transgressive segregants generated in the F2 generation for yield and related traits. Methods: The present study on French bean was conducted during rabi 2019 to 2022 to elicit data on transgressive segregants produced for yield and related traits in F2 generation. Fertile F1 hybrids were developed from three crosses: IC 632961 × Arka Sukomal, IC 632961 × Arka Arjun and Arka Arjun × IC 63296. Heterosis was estimated for yield and related traits in these hybrids. The F2 progeny were evaluated in open field condition. Mean, standard deviation and percentage of transgressive segregants were estimated for quantitative traits under investigation. Result: Transgressive segregants were observed in all three crosses, with the highest number of transgressive segregants for yield traits found in the progeny of the cross IC 632961 × Arka Sukomal. The identification and isolation of such transgressive segregants indicate that the parents possess favourable alleles and genes governing the traits of interest, which can be consolidated into a single or a few genotypes through stringent selection. Superior and desirable transgressive segregants were observed for all sixteen yield and its component traits, except for leaf length, in the two cross combinations Arka Arjun × IC 632961 and IC 632961 × Arka Arjun. The highest percentage of transgressive segregation was observed for the number of inflorescences per plant (79.49%), followed by the number of pods per plant (78.46%) and pod yield per plant (75.61%) in the F2 generation.
背景:通过转性分离产生的极端表型在遗传上是稳定的,这与杂交形成鲜明对比。据推测,杂交群体中极端或 "转性 "性状的发展有助于杂交类群的适应性分化。对四季豆的调查是为了评估在 F2 代中产生的转基因分离株的产量和相关性状。研究方法本研究是在 2019 年至 2022 年秋季对四季豆进行的,目的是获得 F2 代中产生的产量和相关性状的转基因分离株的数据。从三个杂交种中培育出了可育的 F1 代杂交种:IC 632961 × Arka Sukomal、IC 632961 × Arka Arjun 和 Arka Arjun × IC 63296。对这些杂交种的产量和相关性状进行了杂交估计。在露地条件下对 F2 后代进行了评估。对所研究的数量性状的平均值、标准偏差和转性分离株的百分比进行了估算。结果在所有三个杂交种中都观察到了转基因分离株,其中产量性状转基因分离株数量最多的是 IC 632961 × Arka Sukomal 杂交后代。这类转基因分离株的鉴定和分离表明,亲本具有调控相关性状的有利等位基因和基因,通过严格的选择,这些等位基因和基因可以整合成一个或几个基因型。在 Arka Arjun × IC 632961 和 IC 632961 × Arka Arjun 这两个杂交组合中,除了叶长外,所有 16 个产量及其组成性状都观察到了优良和理想的转基因分离株。在 F2 代中,每株花序数的转基因分离率最高(79.49%),其次是每株豆荚数(78.46%)和每株豆荚产量(75.61%)。