Using of GGE biplot in determination of genetic structure and heterotic groups in wheat (Triticum aestivum L.)

Q3 Agricultural and Biological Sciences Acta Biologica Szegediensis Pub Date : 2021-01-01 DOI:10.14232/abs.2021.1.17-27
E. E. Shamsabadi, H. Sabouri, H. Soughi, S. J. Sajadi, A. Dadras
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引用次数: 2

Abstract

The present study was undertaken to analyze diallel data using GGE biplot model to gather information about genetic interrelationships among parents and identification of heterotic combinations for yield and yield components in bread wheat varieties. For this purpose, 8 bread wheat genotypes tested across in half-diallel crosses design, GGE biplot technique was used. Parents included the genotypes of Kouhdasht, Karim, Ehsan, Mehregan, N-92-9, Line 17, N80-19 and Atrak. The hybrids obtained from the one-way cross (28 hybrids) in agricultural years of 2016-17 were evaluated as randomized complete block design in two replications on the research farm of Gonbad Kavous University. The evaluated traits included the grain yield, weight of spike grains, number of grains in spike and number of spikes. Additive main effects and genotype × environment interaction (GGE) were employed in the evaluation of genotypes; analyses showed significant (P< 0.01) G × E, (genotype × environment interaction) with respect to plant seed yield. GGE biplot analysis showed that Karim was as the best general combiners for grain yield, number grain per spike and grain weight per spike, whereas Ehsan had the highest GCA effects for number of spikes. Ehsan and Karim had higher specific combining ability than other genotypes. The studied genotypes for this trait were divided into two heterotic groups where the first group included the genotypes of Kouhdasht, N-92-9, N80-19 and Atrak and the second group contained the genotypes of Line 17, Mehregan and Karim. Mehregan line had a weak combining ability with all testers and N-92-9 had also more power than others. Based on the biplot, the Karim genotype with high general adaptation was introduced as the ideal genotype in terms of grain yield, spike number, grain number per spike and grain weight, so the Karim genotype can be adapted to obtain high yield hybrids.
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利用GGE双标图测定小麦遗传结构和杂种优势群
本研究采用GGE双标图模型分析双列杂交资料,以了解面包小麦品种亲本间的遗传相互关系,并鉴定产量和产量成分的杂种组合。为此,采用半双列杂交设计,采用GGE双图技术对8个面包小麦基因型进行杂交。亲本包括Kouhdasht、Karim、Ehsan、Mehregan、N-92-9、Line 17、N80-19和Atrak基因型。在贡巴德卡沃斯大学研究农场,采用2个重复的随机完全区组设计对2016-17农年单交获得的28个杂交种进行评价。评价性状包括产量、穗粒重、穗粒数和穗数。采用加性主效应和基因型×环境相互作用(GGE)评价基因型;结果表明,G × E(基因型×环境互作)对种子产量影响显著(P< 0.01)。GGE双图分析表明,Karim在产量、穗粒数和穗粒重方面具有最佳的综合配合量,而Ehsan在穗数方面具有最佳的综合配合量。Ehsan和Karim的特异性配合力高于其他基因型。将该性状的基因型分为两个杂种优势组,第一组为Kouhdasht、N-92-9、N80-19和Atrak基因型,第二组为17号系、Mehregan和Karim基因型。Mehregan系与所有品系的配合力较弱,而N-92-9系的配合力也高于其他品系。在此基础上,从籽粒产量、穗数、穗粒数、粒重等方面介绍了具有较高普遍适应性的Karim基因型,认为Karim基因型可用于获得高产杂交种。
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来源期刊
Acta Biologica Szegediensis
Acta Biologica Szegediensis Agricultural and Biological Sciences-Agricultural and Biological Sciences (all)
CiteScore
1.00
自引率
0.00%
发文量
14
期刊介绍: Acta Biologica Szegediensis (ISSN 1588-385X print form; ISSN 1588-4082 online form), a member of the Acta Universitatis Szegediensis family of scientific journals (ISSN 0563-0592), is published yearly by the University of Szeged. Acta Biologica Szegediensis covers the growth areas of modern biology and publishes original research articles and reviews, involving, but not restricted to, the fields of anatomy, embryology and histology, anthropology, biochemistry, biophysics, biotechnology, botany and plant physiology, all areas of clinical sciences, conservation biology, ecology, genetics, microbiology, molecular biology, neurosciences, paleontology, pharmacology, physiology and pathophysiology, and zoology.
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