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玉米(L.)杂交种农艺性状的遗传变异及基因型与环境互作

Genetic Variation and Genotype by Environment Interaction for Agronomic Traits in Maize ( L.) Hybrids.

作者信息

Alam Mohammad Ashraful, Rahman Marufur, Ahmed Salahuddin, Jahan Nasrin, Khan Mohammad Al-Amin, Islam Mohammad Rafiqul, Alsuhaibani Amnah Mohammed, Gaber Ahmed, Hossain Akbar

机构信息

Spices Research Centre, Bangladesh Agricultural Research Institute, Bogura 5810, Bangladesh.

Regional Station, Bangladesh Institute of Research and Training on Applied Nutrition, Rangapur 5470, Bangladesh.

出版信息

Plants (Basel). 2022 Jun 6;11(11):1522. doi: 10.3390/plants11111522.

Abstract

In order to develop high-yielding genotypes of adapted maize, multilocation trials of maize were performed including forty-five maize hybrids exploiting genetic variability, trait associations, and diversity. The experiments were laid out in an RCB design and data were recorded on eight yield and yield-contributing traits, viz., days to anthesis (AD), days to silking (SD), anthesis-silking interval (ASI), plant height (PH), ear height (EH), kernels per ear (KPE), thousand-kernel weight (TKW), and grain yield (GY). An analysis of variance (ANOVA) showed significant variation present among the different traits under study. The phenotypic coefficient of variance (PCV) showed a higher value than the genotypic coefficient of variance (GCV), indicating the environmental influence on the expression of the traits. High heritability coupled with high genetic advance was found for these traits, indicative of additive gene action. The trait associations showed that genotypic correlation was higher than phenotypic correlation. Based on genetic diversity, the total genotypes were divided into four clusters, and the maximum number of 16 genotypes was found in cluster IV. Among the eight yield and yield-contributing traits, PH, ASI, EH, and TKW were the important traits for variability creation and were mostly responsible for yield. Genotypes G5, G8, G27, G29, and G42 were in the top ranks based on grain yield over locations, while a few others showed region-centric performances; all these genotypes can be recommended upon validation for commercial release. The present findings show the existence of proper genetic variability and divergence among traits, and the identified traits can be used in a maize improvement program.

摘要

为了培育适应环境的高产玉米基因型,开展了玉米多点试验,包括45个利用遗传变异、性状关联和多样性的玉米杂交种。试验采用随机区组设计,记录了8个产量及产量构成性状的数据,即抽雄天数(AD)、吐丝天数(SD)、抽雄-吐丝间隔(ASI)、株高(PH)、穗位高(EH)、每穗粒数(KPE)、千粒重(TKW)和籽粒产量(GY)。方差分析(ANOVA)表明,所研究的不同性状之间存在显著差异。表型变异系数(PCV)的值高于基因型变异系数(GCV),表明环境对性状表达有影响。这些性状具有高遗传力和高遗传进展,表明存在加性基因作用。性状关联表明,基因型相关性高于表型相关性。基于遗传多样性,将所有基因型分为4个类群,第IV类群中基因型数量最多,为16个。在8个产量及产量构成性状中,株高、抽雄-吐丝间隔、穗位高和千粒重是产生变异的重要性状,对产量贡献最大。基于各地的籽粒产量,基因型G5、G8、G27、G29和G42名列前茅,其他一些基因型则表现出以区域为中心的特性;所有这些基因型经验证后可推荐用于商业推广。目前的研究结果表明,性状之间存在适当的遗传变异和差异,所确定的性状可用于玉米改良计划。

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