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适应中海拔半湿润农业生态区的高产玉米自交系的配合力和遗传距离分析

Combining ability and genetic distance analysis of mid altitude sub-humid agroecology adapted maize inbred lines for high grain yield.

作者信息

Engida Bitew Tilahun, Wegary Dagne, Keno Tolera, Mekonnen Tesfaye Walle

机构信息

National Maize Breeding Program, Ethiopian Institute of Agricultural Research, P.O. Box 2003, Addis Ababa, Ethiopia.

Global Maize Program, International Maize and Wheat Improvement Center (CIMMYT), Harare, Zimbabwe.

出版信息

Heliyon. 2024 May 31;10(11):e32267. doi: 10.1016/j.heliyon.2024.e32267. eCollection 2024 Jun 15.

Abstract

Understanding the combining ability effects, heterosis, and genetic relationships between parental lines would be helpful in the maize breeding program to develop high-yielding and genetically stable maize varieties for various contrasting environments. Hence, the objective of this study was to estimate combining ability effects, heterosis, genetic distance (GD) and associations for grain yield and other agronomic traits. Forty-five F diallel crosses, four commercial checks, and ten inbred lines were evaluated at Bako and Jima Agricultural Research Centers, Ethiopia. Significant differences were observed among environments, genotypes and genotype by environment interaction for grain yield and almost all studied agronomic traits. Combining ability analysis showed both additive and non-additive gene effects significantly controlled grain yield and all other studied traits. The preponderance of general combining ability (GCA) effects indicates the importance of additive gene action inheriting most agronomic traits. Lines L2, L7, and L9 were the best combiners for grain yield, whereas lines L3 and L4 had desirable GCA values to improve days to flowering and plant height. Among the top ten crosses, L6 × L9, L6 × L7 and L4 × L9 were good specific combiners and had 18.8 %, 17.2 % and 16.2 % grain yield advantage over the best check, BH546. These hybrids also had high mid and better-parent heterosis compared with other crosses. The associations of GD with mean of F and SCA effects were positive and highly significant for grain yield and some other traits. In contrast, correlations of GD with mid and better parent heterosis were non-significant for grain yield and most other traits. The results of this study are particularly useful for breeders who envisage combining conventional and molecular methods.

摘要

了解亲本系之间的配合力效应、杂种优势和遗传关系,将有助于玉米育种计划培育出适合各种不同环境的高产且遗传稳定的玉米品种。因此,本研究的目的是估计配合力效应、杂种优势、遗传距离(GD)以及籽粒产量和其他农艺性状的关联。在埃塞俄比亚的巴科和吉马农业研究中心,对45个F双列杂交组合、4个商业对照品种和10个自交系进行了评估。在籽粒产量和几乎所有研究的农艺性状方面,环境、基因型以及基因型与环境的互作之间均观察到显著差异。配合力分析表明,加性和非加性基因效应均显著控制籽粒产量和所有其他研究性状。一般配合力(GCA)效应占优势,表明加性基因作用在遗传大多数农艺性状方面的重要性。L2、L7和L9系是籽粒产量的最佳配合系,而L3和L4系具有理想的GCA值,可用于改善开花天数和株高。在前十的杂交组合中,L6×L9、L6×L7和L4×L9是优良的特殊配合系,比最佳对照品种BH546具有18.8%、17.2%和16.2%的籽粒产量优势。与其他杂交组合相比,这些杂交种还具有较高的中亲优势和超亲优势。GD与F均值和特殊配合力(SCA)效应之间的关联对于籽粒产量和其他一些性状呈正相关且高度显著。相比之下,GD与中亲优势和超亲优势的相关性对于籽粒产量和大多数其他性状不显著。本研究结果对设想结合常规和分子方法的育种者特别有用。

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