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与牛科动物性别限制生殖性状相关的基因组区域和生物途径。

Genomic regions and biological pathways associated with sex-limited reproductive traits in bovine species.

机构信息

The University of Queensland, School of Chemistry and Molecular Biosciences, Saint Lucia Campus, Brisbane, QLD, 4072, Australia.

Ag and Food, CSIRO Agriculture and Food, Saint Lucia, QLD, 4067, Australia.

出版信息

J Anim Sci. 2024 Jan 3;102. doi: 10.1093/jas/skae085.

Abstract

Many animal species exhibit sex-limited traits, where certain phenotypes are exclusively expressed in one sex. Yet, the genomic regions that contribute to these sex-limited traits in males and females remain a subject of debate. Reproductive traits are ideal phenotypes to study sexual differences since they are mostly expressed in a sex-limited way. Therefore, this study aims to use local correlation analyses to identify genomic regions and biological pathways significantly associated with male and female sex-limited traits in two distinct cattle breeds (Brahman [BB] and Tropical Composite [TC]). We used the Correlation Scan method to perform local correlation analysis on 42 trait pairs consisting of six female and seven male reproductive traits recorded on ~1,000 animals for each sex in each breed. To pinpoint a specific region associated with these sex-limited reproductive traits, we investigated the genomic region(s) consistently identified as significant across the 42 trait pairs in each breed. The genes found in the identified regions were subjected to Quantitative Trait Loci (QTL) colocalization, QTL enrichment analyses, and functional analyses to gain biological insight into sexual differences. We found that the genomic regions associated with the sex-limited reproductive phenotypes are widely distributed across all the chromosomes. However, no single region across the genome was associated with all the 42 reproductive trait pairs in the two breeds. Nevertheless, we found a region on the X-chromosome to be most significant for 80% to 90% (BB: 33 and TC: 38) of the total 42 trait pairs. A considerable number of the genes in this region were regulatory genes. By considering only genomic regions that were significant for at least 50% of the 42 trait pairs, we observed more regions spread across the autosomes and the X-chromosome. All genomic regions identified were highly enriched for trait-specific QTL linked to sex-limited traits (percentage of normal sperm, metabolic weight, average daily gain, carcass weight, age at puberty, etc.). The gene list created from these identified regions was enriched for biological pathways that contribute to the observed differences between sexes. Our results demonstrate that genomic regions associated with male and female sex-limited reproductive traits are distributed across the genome. Yet, chromosome X seems to exert a relatively larger effect on the phenotypic variation observed between the sexes.

摘要

许多动物物种表现出性别限制特征,某些表型仅在一个性别中表达。然而,导致雄性和雌性中这些性别限制特征的基因组区域仍然是一个争论的话题。生殖特征是研究性差异的理想表型,因为它们主要以性别限制的方式表达。因此,本研究旨在使用局部相关分析来鉴定与两个不同牛品种(婆罗门牛[BB]和热带复合牛[TC])中雄性和雌性性别限制特征显著相关的基因组区域和生物学途径。我们使用相关扫描方法对 42 对表型进行局部相关分析,其中包括在每个品种的每个性别中记录的 6 个雌性和 7 个雄性生殖特征。为了精确定位与这些性别限制生殖特征相关的特定区域,我们研究了在每个品种的 42 对表型中一致被鉴定为显著的基因组区域。鉴定区域中的基因进行了数量性状基因座(QTL)共定位、QTL 富集分析和功能分析,以深入了解性别差异的生物学机制。我们发现,与性别限制生殖表型相关的基因组区域广泛分布在所有染色体上。然而,在两个品种中,没有一个基因组区域与所有 42 个生殖特征对都相关。尽管如此,我们在 X 染色体上发现了一个与 80%到 90%(BB:33 和 TC:38)的总 42 个生殖特征对最相关的区域。该区域中的许多基因是调节基因。仅考虑对 42 对表型中至少 50%有意义的基因组区域,我们观察到更多的区域分布在常染色体和 X 染色体上。鉴定的所有基因组区域都高度富集与性别限制特征相关的特定特征 QTL(正常精子百分比、代谢体重、平均日增重、胴体重、初情期年龄等)。从这些鉴定区域创建的基因列表富含有助于观察到的性别差异的生物学途径。我们的结果表明,与雄性和雌性性别限制生殖特征相关的基因组区域分布在整个基因组中。然而,X 染色体似乎对两性之间观察到的表型变异有相对较大的影响。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f22f/11135212/44fd4ac3caf4/skae085_fig1.jpg

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