Heterosis and combining ability of highland adapted maize (Zea mays. L) DH lines for desirable agronomic traits

Zeleke Keimeso, Demissew Abakemal, W. Gebreselassie
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引用次数: 9

Abstract

Maize (Zea mays L.) is one of the cereals that provide calorie requirements in the majority of Ethiopians diet. The national average maize yield in Ethiopia is low and thus knowledge of combining ability and heterosis is a prerequisite to develop high yielding maize varieties. The objective of the present study is to estimate combining abilities of double haploid (DH) maize inbred lines for grain yield and related agronomic traits, and to identify crosses with higher standard heterosis. A total of 36 diallel crosses generated by crossing nine maize DH lines using half diallel mating scheme and four standard checks were studied for different desirable agronomic traits during 2017 cropping season at Ambo and Kulumsa Agricultural Research Centers. The genotypes were evaluated in alpha lattice design replicated twice in both locations. Analyses of variances showed significant mean squares due to crosses for most traits studied. The highest grain yields were obtained from crosses L1 x L3, L3 x L8, L4 x L8 and L8 x L9. GCA mean squares were significant for all studied traits, while SCA mean squares were significant only for grain yield, days to anthesis, ear per plant and ear diameter. Relatively larger GCA over SCA variances were observed in the current study for most studied traits revealing the predominance of additive gene action in controlling these traits. Of the DH inbred lines, L3 and L8 were the best general combiners for grain yield, and hence are promising parents for hybrid development. Inbred lines  L2, L4, L6, L7 and L8 were good combiners for earliness whereas, L1, L2 and L6 showed negative and significant GCA effects for plant and ear height. In this study, none of the crosses showed positive and significant standard heterosis for grain yield.   Key words: Combining ability, general combining ability, highland maize, standard heterosis, specific combining ability.
高原适应玉米(Zea mays)杂种优势与配合力。L)具有理想农艺性状的DH系
玉米(Zea mays L.)是大多数埃塞俄比亚人饮食中提供热量需求的谷物之一。埃塞俄比亚全国平均玉米产量较低,因此了解配合力和杂种优势是培育高产玉米品种的先决条件。本研究的目的是评价双单倍体玉米自交系在产量和相关农艺性状方面的配合力,并鉴定具有较高标准杂种优势的杂交组合。在Ambo和Kulumsa农业研究中心,对2017年种植季9个玉米DH系采用半双列杂交方案和4次标准检验所产生的36个双列杂交进行了不同理想农艺性状的研究。在两个位置重复两次的α晶格设计中评估基因型。方差分析表明,由于杂交,大多数性状的均方根显著。籽粒产量最高的组合是L1 × L3、L3 × L8、L4 × L8和L8 × L9。GCA均方差对所有性状均显著,而SCA均方差仅对籽粒产量、开花天数、单株穗数和穗径显著。在目前的研究中,大多数被研究性状的GCA比SCA的差异相对较大,这表明加性基因作用在控制这些性状方面占主导地位。在DH自交系中,L3和L8是籽粒产量最好的一般组合,是很有前途的杂交亲本。自交系L2、L4、L6、L7和L8是早熟性较好的组合,而L1、L2和L6对株高和穗高的GCA效应为负且显著。在本研究中,没有一个杂交品种在籽粒产量上表现出正的、显著的标准杂种优势。关键词:配合力,一般配合力,高原玉米,标准杂种优势,特异配合力
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