Combining ability, main performance and Superiority percentages of maize (Zea mays L.) inbred lines using line x testers analysis

Mohamed A.M. El Ghonemy, H. Aboyousef, A. Abu Shosha, Hautham M. EL- Shahed, M. S. Shalof
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Abstract

Three field experiments were carried out during 2022 summer season at three diverse locations of Gemmeiza, Sakha and Mallawy Experimental Stations of Agricultural Research Center (ARC), Egypt. Thirty crosses (ten inbred lines crossed with three testers inbred line Sd. 7, Sk. 5 and SC 130) and four standard checks SC 10, SC 2031, TWC 321 and TWC 324 were evaluated for yield and yield related traits to evaluate using line × tester mating design. Analysis of variance revealed significant differences among genotypes for most traits indicating existence of variability among genotypes. Results showed that maternal parents play the most important role. The general combining ability effect showed that Gm. 1031, Gm.62 and Sk.5 are good combiners for earliest, shortened and lower ear placement. Four inbred lines (Gm. 267, Gm. 50, Gm.66 and Gm. 64) and testers Sk.5 were good general combiner for grain yield. The crosses (Gm. 62×Sc. 130), (Gm. 66× Sk.5) and (Gm. 64×sd. 7) had significant values of SCA for plant and ear height and the cross (Gm. 52 × SC. 130) had significant values of SCA for grain yield. Most of all crosses had better performance than check varieties for earliness, short plant and lower ear placement. The two crosses (Gm. 64×Sk.5) and (Gm. 64×SC. 130) were better than all check varieties for grain yield. For grain yield, the cross (Gm. 66×Sd. 7) had a significant superiority percentage over check (SC 2031) while the two crosses (Gm. 52×SC. 130) and (Gm. 64 × SC.130) had significant superiority percentages over checks (TWC321 and TWC324). Therefore, Identify superior crosses to improve the yielding ability in maize breeding programs.
玉米(Zea mays L.)自交系配合力、主要性能及优势率分析
于2022年夏季在埃及农业研究中心(ARC) Gemmeiza、Sakha和Mallawy实验站的三个不同地点进行了三项田间试验。以30个自交系(10个自交系与3个试验自交系Sd. 7、Sk. 5和SC . 130杂交)和4个标准自交系SC 10、SC 2031、TWC 321和TWC 324进行产量和产量相关性状的评价,采用系×试验配型设计进行评价。方差分析显示,多数性状在基因型间存在显著差异,表明基因型间存在变异。结果表明,父母母亲在其中起着最重要的作用。综合配合力效应表明,Gm. 1031、Gm.62和Sk.5是早期、缩短耳位和下耳位配合力较好的组合。4个自交系(Gm 267、Gm 50、Gm 66和Gm 64)和试验材料Sk.5是较好的籽粒产量综合组合。十字架(Gm. 62×Sc.)(Gm. 66× Sk.5)和(Gm. 64×sd. 5)。7)株高和穗高的SCA值显著,杂交(Gm. 52 × SC. 130)籽粒产量的SCA值显著。大多数杂交品种在早熟、株短和穗下放置方面均优于对照品种。两个杂交(Gm. 64×Sk.5)和(Gm. 64×SC)。130)在粮食产量上优于所有对照品种。就粮食产量而言,杂交(Gm. 66×Sd)。7)对对照(SC 2031)的优势率显著高于对照(Gm. 52×SC;(Gm. 64 × SC.130)和(Gm. 64 × SC.130)比(TWC321和TWC324)具有显著的优势。因此,在玉米育种计划中,筛选优良杂交品种以提高产量。
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