构建鸡骨骼肌单体型分辨率 3D 基因组图谱。

Building Haplotype-Resolved 3D Genome Maps of Chicken Skeletal Muscle.

机构信息

State Key Laboratory of Swine and Poultry Breeding Industry, College of Animal Science and Technology, Sichuan Agricultural University, Chengdu, 611130, China.

School of Pharmacy, Chengdu University, Chengdu, 610106, China.

出版信息

Adv Sci (Weinh). 2024 Jun;11(24):e2305706. doi: 10.1002/advs.202305706. Epub 2024 Apr 6.

Abstract

Haplotype-resolved 3D chromatin architecture related to allelic differences in avian skeletal muscle development has not been addressed so far, although chicken husbandry for meat consumption has been prevalent feature of cultures on every continent for more than thousands of years. Here, high-resolution Hi-C diploid maps (1.2-kb maximum resolution) are generated for skeletal muscle tissues in chicken across three developmental stages (embryonic day 15 to day 30 post-hatching). The sequence features governing spatial arrangement of chromosomes and characterize homolog pairing in the nucleus, are identified. Multi-scale characterization of chromatin reorganization between stages from myogenesis in the fetus to myofiber hypertrophy after hatching show concordant changes in transcriptional regulation by relevant signaling pathways. Further interrogation of parent-of-origin-specific chromatin conformation supported that genomic imprinting is absent in birds. This study also reveals promoter-enhancer interaction (PEI) differences between broiler and layer haplotypes in skeletal muscle development-related genes are related to genetic variation between breeds, however, only a minority of breed-specific variations likely contribute to phenotypic divergence in skeletal muscle potentially via allelic PEI rewiring. Beyond defining the haplotype-specific 3D chromatin architecture in chicken, this study provides a rich resource for investigating allelic regulatory divergence among chicken breeds.

摘要

迄今为止,尽管在各大洲,禽类养殖作为肉食消费的主要方式已经存在了数千年,但与禽类骨骼肌肉发育的等位基因差异相关的单倍型解析 3D 染色质结构仍未得到解决。在这里,我们针对三个发育阶段(孵化后第 15 天至第 30 天的胚胎)的鸡骨骼肌肉组织生成了高分辨率 Hi-C 二倍体图谱(最高分辨率为 1.2kb)。我们确定了控制染色体空间排列的序列特征,并描述了核内同源染色体配对的情况。多尺度分析表明,在胎儿成肌到孵化后肌纤维肥大的阶段之间,染色质的重排与相关信号通路的转录调控是一致的。进一步分析父本或母本来源特异性染色质构象表明,鸟类中不存在基因组印记。本研究还揭示了肉鸡和蛋鸡在骨骼肌肉发育相关基因中的启动子-增强子相互作用(PEI)差异与品种间的遗传变异有关,但只有少数品种特异性变异可能通过等位基因 PEI 重连对骨骼肌肉的表型分化产生影响。除了定义鸡的单倍型特异性 3D 染色质结构外,本研究还为研究鸡品种间等位基因调控差异提供了丰富的资源。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/feb4/11200017/254ac18315eb/ADVS-11-2305706-g004.jpg

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