Eynizadeh Peyman, Dehghani Hamid, Dehghani Ali
Plant Genetics and Breeding Department, Faculty of Agriculture, Tarbiat Modares University, 14115-336, Tehran, Iran.
Department of Plant Science, University of California, One Shields Avenue, Davis, CA, 95616, USA.
Plant Methods. 2023 Mar 13;19(1):25. doi: 10.1186/s13007-023-00992-5.
Selection is one of the essential skills whereby breeders reduce the population size and increase the chance of success. Various selection methods with special applications have been developed. Superior genotypes are assessed according to interesting traits, including univariate, multivariate, phenotypic, genotypic, etc. METHODS: Mathematical calculation of the traits' importance based on the genetic makeup of investigated population (average degree of dominance/additive involved in the action of genes) and arbitrary genetic parameters is functional. In this paper, a general model for multivariate selection has been presented whereby the selection can be made for (a) more than one interesting trait, (b) the trait(s) with complex inheritance, (c) finding superior genotypes from among a large-scale population, (d) finding superior genotypes in segregating generations and (f) finding tolerant genotypes to stresses. This model is developed based on biometric concepts in four steps. MATLAB script is provided for the model, and users can easily apply that to identify the most suitable genotypes after data collection according to the breeding purposes.
The main features of this model are simplicity, precision, repeatability, and speed (improving several traits simultaneously). All the steps and the analysis of the results are explained step by step in a case study.
选择是育种者减小群体规模并提高成功几率的关键技能之一。已开发出各种具有特殊应用的选择方法。根据包括单变量、多变量、表型、基因型等在内的感兴趣性状对优良基因型进行评估。
基于所研究群体的遗传组成(基因作用中涉及的平均显性度/加性)和任意遗传参数对性状重要性进行数学计算是可行的。本文提出了一种多变量选择的通用模型,通过该模型可以针对以下情况进行选择:(a)一个以上感兴趣的性状;(b)具有复杂遗传的性状;(c)从大规模群体中找出优良基因型;(d)在分离世代中找出优良基因型;以及(f)找出对胁迫具有耐受性的基因型。该模型基于生物统计学概念分四个步骤开发。为该模型提供了MATLAB脚本,用户在根据育种目的收集数据后可以轻松应用它来识别最合适的基因型。
该模型的主要特点是简单、精确、可重复性和速度快(可同时改善多个性状)。在一个案例研究中逐步解释了所有步骤和结果分析。