Phenotypic simulation for fruit-related traits in F1 progenies of chili peppers (Capsicum annuum) using genomic prediction based solely on parental information.

IF 2.3 3区 生物学 Q3 BIOCHEMISTRY & MOLECULAR BIOLOGY
Fumiya Kondo, Yui Kumanomido, Mariasilvia D'Andrea, Valentino Palombo, Nahed Ahmed, Shino Futatsuyama, Kazuhiro Nemoto, Kenichi Matsushima
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引用次数: 0

Abstract

Chili pepper (Capsicum spp.) fruits are used as vegetables, spices, and ornamental plants, necessitating various fruit characteristics. However, their genetic improvement is challenging through conventional crossbreeding due to the quantitative traits, which makes it difficult to predict phenotypes in the progeny. As a breakthrough, we focused on phenotypic simulation via genomic prediction (GP) and aimed to clarify its utility for fruit-related traits in chili peppers. The present study used 291 C. annuum accessions, including two populations: inbred lines and F1 accessions derived from 20 inbred parents. We collected data of fruit length, width, shape index (length/width), weight, and pericarp thickness, and obtained single nucleotide polymorphism data via multiplexed inter-simple sequence repeat genotyping by sequencing. We simulated the fruit-related traits in the F1 accessions by inputting their estimated genotypes (based on their parents) into the GP model using the GBLUP-GAUSS model, which was shown to be the most accurate regardless of population or trait differences in the present study. As a result, we observed strong positive correlations (r = 0.833-0.908) between the simulated and observed phenotypic values across all traits, suggesting that accurate ranking of F1 progenies based on fruit-related traits can be achieved using parental information. This is the first report demonstrating the utility of phenotypic simulation via GP in chili pepper breeding, offering valuable insights for its application in this field.

仅基于亲本信息的基因组预测对辣椒F1后代果实相关性状的表型模拟
辣椒(Capsicum spp.)果实被用作蔬菜、香料和观赏植物,需要多种水果特性。然而,由于数量性状的限制,传统的杂交育种对其遗传改良具有挑战性,这使得对后代表型的预测变得困难。作为一项突破,我们将重点放在通过基因组预测(GP)进行表型模拟,旨在阐明其在辣椒果实相关性状中的应用。本研究使用291份黄杨材料,包括2个群体:自交系和来自20个自交系亲本的F1材料。采集果实长度、宽度、形状指数(长/宽)、重量和果皮厚度等数据,通过测序获得单核苷酸多态性数据。我们利用GBLUP-GAUSS模型模拟了F1材料的果实相关性状,将其估计的基因型(基于亲本)输入到GP模型中,该模型在本研究中被证明是最准确的,无论群体或性状差异如何。结果表明,所有性状的模拟值与实际表型值呈正相关(r = 0.833-0.908),表明利用亲本信息可以实现基于果实相关性状的F1后代准确排序。本文首次报道了GP表型模拟在辣椒育种中的应用,为其在该领域的应用提供了有价值的见解。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Molecular Genetics and Genomics
Molecular Genetics and Genomics 生物-生化与分子生物学
CiteScore
5.10
自引率
3.20%
发文量
134
审稿时长
1 months
期刊介绍: Molecular Genetics and Genomics (MGG) publishes peer-reviewed articles covering all areas of genetics and genomics. Any approach to the study of genes and genomes is considered, be it experimental, theoretical or synthetic. MGG publishes research on all organisms that is of broad interest to those working in the fields of genetics, genomics, biology, medicine and biotechnology. The journal investigates a broad range of topics, including these from recent issues: mechanisms for extending longevity in a variety of organisms; screening of yeast metal homeostasis genes involved in mitochondrial functions; molecular mapping of cultivar-specific avirulence genes in the rice blast fungus and more.
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