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在杂交母鸡卵巢中具有非加性表达的微小RNA靶向富集于关键生殖途径的基因,这些途径可能影响产蛋性状的杂种优势。

MicroRNAs with non-additive expression in the ovary of hybrid hens target genes enriched in key reproductive pathways that may influence heterosis for egg laying traits.

作者信息

Isa Adamu Mani, Sun Yanyan, Li Yunlei, Wang Yuanmei, Ni Aixin, Yuan Jingwei, Ma Hui, Shi Lei, Tesfay Hailai Hagos, Fan Jing, Wang Panlin, Chen Jilan

机构信息

Key Laboratory of Animal (Poultry) Genetics Breeding and Reproduction, Ministry of Agricultural and Rural Affairs, Institute of Animal Science, Chinese Academy of Agricultural Sciences, Beijing, China.

Department of Animal Science, Usmanu Danfodiyo University, Sokoto, Nigeria.

出版信息

Front Genet. 2022 Sep 30;13:974619. doi: 10.3389/fgene.2022.974619. eCollection 2022.

Abstract

Heterosis has been extensively exploited in chicken breeding to improve laying traits in commercial hybrid stock. However, the molecular mechanisms underlying it remains elusive. This study characterizes the miRNAome in the pre-hierarchical follicles of purebred and hybrid laying hens, and investigate the functions of miRNAs with non-additive expression in the pre-hierarchical follicles as they modulate heterosis for egg number and clutch size. To achieve that aim, White Leghorn and Rhode Island Red chicken lines were reciprocally crossed to generate hybrids. The crossbreds demonstrated heterosis for egg number and clutch size, and pre-hierarchical follicles from 4 birds of each genotype were collected at 53 weeks of age. Mode of miRNA expression was characterized after miRNA sequencing. A total of 50 miRNAs including 30 novel ones, were found to exhibit non-additive expression. Dominance was the predominant mode of expression exhibited by majority of the miRNAs. Functional analysis of target genes of the known miRNAs with non-additive expression revealed Gene Ontology terms related to regulation of transcription, metabolic processes and gene expression. KEGG and REACTOME pathways including hedgehog, cellular senescence, wnt, TGF-β, progesterone-mediated oocyte maturation, oocyte meiosis, GnRH signaling, signal transduction and generic transcription, which can be linked to primordial follicle activation, growth and ovulation, were significantly enriched by target genes of miRNAs with non-additive expression. Majority of the genes enriched in these biological pathways were targeted by gga-miR-19a, gga-miR-19b, gga-miR-375, gga-miR-135a, and gga-miR-7 and 7b, thus, revealing their synergistic roles in enhancing processes that could influence heterosis for egg number and clutch size in hybrid hens.

摘要

杂种优势已在鸡育种中得到广泛应用,以改善商业杂交鸡群的产蛋性状。然而,其潜在的分子机制仍不清楚。本研究对纯种和杂交蛋鸡的前等级卵泡中的miRNA组进行了表征,并研究了在前等级卵泡中具有非加性表达的miRNA的功能,因为它们调节产蛋数和窝蛋数的杂种优势。为实现这一目标,白来航鸡和罗德岛红鸡品系进行了正反交以产生杂种。杂交后代在产蛋数和窝蛋数方面表现出杂种优势,并且在53周龄时从每种基因型的4只鸡中收集前等级卵泡。通过miRNA测序对miRNA表达模式进行了表征。共发现50个miRNA(包括30个新的miRNA)表现出非加性表达。优势是大多数miRNA表现出的主要表达模式。对具有非加性表达的已知miRNA的靶基因进行功能分析,揭示了与转录调控、代谢过程和基因表达相关的基因本体术语。KEGG和REACTOME通路,包括刺猬、细胞衰老、wnt、TGF-β、孕酮介导的卵母细胞成熟、卵母细胞减数分裂、GnRH信号传导、信号转导和通用转录,这些通路可与原始卵泡激活、生长和排卵相关,被具有非加性表达的miRNA的靶基因显著富集。这些生物学通路中富集的大多数基因被gga-miR-19a、gga-miR-19b、gga-miR-375、gga-miR-135a以及gga-miR-7和7b靶向,因此,揭示了它们在增强可能影响杂交母鸡产蛋数和窝蛋数杂种优势的过程中的协同作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e57a/9563710/a36847282fff/fgene-13-974619-g001.jpg

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