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基于系×测交分析的一般和特殊配合力杂种杂种的杂种组合。

Heterotic grouping of wheat hybrids based on general and specific combining ability from line × tester analysis.

机构信息

Field Crops Department, Agricultural Faculty, Namık Kemal University, Tekirdağ, Turkey.

Field Crops Department, Agricultural Faculty, Osmangazi University, Eskişehir, Turkey.

出版信息

PeerJ. 2024 Sep 25;12:e18136. doi: 10.7717/peerj.18136. eCollection 2024.

Abstract

The most important step in plant breeding is the correct selection of parents, and it would be wise to use heterotic groups for this. The purpose of this study is to analyse yield and its components as well as genetic diversity in line × tester wheat populations. It also seeks to present a coherent framework for the isolation of early superior families and the development of heterotic groups in bread wheat. F and F generations of 51 genotypes, including 36 combinations between 12 lines and three testers and 15 parents, were evaluated for yield and its components in a three-replication experiment according to the randomized block design. Line ×  tester analysis of variance, general and specific combining abilities, heterosis, heterobeltiosis and inbreeding depression were calculated. Heterotic groups created based on general and specific combining abilities were compared with each other. The results showed that there was sufficient genetic variation in the population and that further genetic calculations could be made. The selections made based on general and specific combining abilities, heterosis values and average performance of genotypes without heterotic grouping indicated different genotypes for each feature. The creation of heterotic groups made it possible to select genotypes that were superior in terms of all the criteria listed. It was concluded that heterotic groups created based on specific combining abilities may be more useful for breeding studies.

摘要

植物育种中最重要的步骤是正确选择亲本,明智的做法是使用杂种优势群。本研究旨在分析小麦品系×测验种群体的产量及其构成以及遗传多样性。本研究还旨在为早期优良家系的分离和面包小麦杂种优势群的发展提供一个连贯的框架。根据随机区组设计,在三次重复试验中评估了包括 12 个系和 3 个测验种的 36 个组合以及 15 个亲本在内的 51 个基因型的 F 和 F2 代的产量及其构成。计算了系×测验种方差分析、一般和特殊配合力、杂种优势、超亲优势和近交衰退。比较了基于一般和特殊配合力的杂种优势群。结果表明,群体中存在足够的遗传变异,可以进行进一步的遗传计算。基于一般和特殊配合力、杂种优势值以及基因型的平均表现进行的选择,针对每个特征都指示了不同的基因型。杂种优势群的创建使得能够选择在所有列出的标准下都表现优异的基因型。得出的结论是,基于特殊配合力创建的杂种优势群可能更有助于育种研究。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8369/11438435/baf5bededd5f/peerj-12-18136-g001.jpg

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