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估算遗传参数以实施商业昆虫生产中的选择性育种。

Estimation of genetic parameters for the implementation of selective breeding in commercial insect production.

机构信息

Center for Quantitative Genetics and Genomics, Aarhus University, C F Møllers Allé 3, 8000, Aarhus, Denmark.

Department of Chemistry and Bioscience, Aalborg University, Fredrik Bajers Vej 7H, 9220, Aalborg, Denmark.

出版信息

Genet Sel Evol. 2024 Mar 25;56(1):21. doi: 10.1186/s12711-024-00894-7.

Abstract

BACKGROUND

There is a burgeoning interest in using insects as a sustainable source of food and feed, particularly by capitalising on various waste materials and by-products that are typically considered of low value. Enhancing the commercial production of insects can be achieved through two main approaches: optimising environmental conditions and implementing selective breeding strategies. In order to successfully target desirable traits through selective breeding, having a thorough understanding of the genetic parameters pertaining to those traits is essential. In this study, a full-sib half-sib mating design was used to estimate variance components and heritabilities for larval size and survival at day seven of development, development time and survival from egg to adult, and to estimate correlations between these traits, within an outbred population of house flies (Musca domestica), using high-throughput phenotyping for data collection.

RESULTS

The results revealed low to intermediate heritabilities and positive genetic correlations between all traits except development time and survival to day seven of development and from egg to adulthood. Surprisingly, larval size at day seven exhibited a comparatively low heritability (0.10) in contrast to development time (0.25), a trait that is believed to have a stronger association with overall fitness. A decline in family numbers resulting from low mating success and high overall mortality reduced the amount of available data which resulted in large standard errors for the estimated parameters. Environmental factors made a substantial contribution to the phenotypic variation, which was overall high for all traits.

CONCLUSIONS

There is potential for genetic improvement in all studied traits and estimates of genetic correlations indicate a partly shared genetic architecture among the traits. All estimates have large standard errors. Implementing high-throughput phenotyping is imperative for the estimation of genetic parameters in fast developing insects, and facilitates age synchronisation, which is vital in a breeding population. In spite of endeavours to minimise non-genetic sources of variation, all traits demonstrated substantial influences from environmental components. This emphasises the necessity of thorough attention to the experimental design before breeding is initiated in insect populations.

摘要

背景

利用昆虫作为可持续的食物和饲料来源的兴趣日益浓厚,特别是通过利用各种通常被认为价值较低的废物和副产品。通过两种主要方法可以提高昆虫的商业生产:优化环境条件和实施选择性育种策略。为了通过选择性育种成功针对理想性状,必须充分了解与这些性状相关的遗传参数。在这项研究中,使用全同胞半同胞交配设计来估计方差分量和幼虫大小和发育第 7 天的存活率、发育时间和从卵到成虫的存活率的遗传力,并估计这些性状之间的相关性,在使用高通量表型分析进行数据收集的家蝇(Musca domestica)的异交种群中。

结果

结果表明,除了发育时间和从卵到成虫的存活率以及第 7 天的幼虫大小外,所有性状的遗传力均较低至中等,且遗传相关性为正。令人惊讶的是,第 7 天的幼虫大小的遗传力相对较低(0.10),而发育时间的遗传力(0.25)较高,发育时间与整体适应性更强相关。由于交配成功率低和总体死亡率高,导致家系数量减少,从而减少了可用数据量,导致估计参数的标准误差较大。环境因素对表型变异有很大贡献,所有性状的表型变异总体较高。

结论

所有研究性状都有遗传改良的潜力,遗传相关估计表明这些性状之间存在部分共同的遗传结构。所有估计的标准误差都较大。在快速发育的昆虫中,实施高通量表型分析对于遗传参数的估计至关重要,并且有助于年龄同步化,这在繁殖种群中至关重要。尽管努力最小化非遗传来源的变异,但所有性状都受到环境因素的显著影响。这强调了在开始对昆虫种群进行繁殖之前,必须彻底注意实验设计。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d5f0/10962107/5dd940eb419f/12711_2024_894_Fig1_HTML.jpg

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