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时空转录组动态协调核心作物功能在“泌乳”鸽子中的快速转变。

Spatio-temporal transcriptome dynamics coordinate rapid transition of core crop functions in 'lactating' pigeon.

机构信息

Livestock and Poultry Multi-omics Key Laboratory of Ministry of Agriculture and Rural Affairs, College of Animal Science and Technology, Sichuan Agricultural University, Chengdu, China.

Animal Breeding and Genetics Key Laboratory of Sichuan Province, Institute of Animal Genetics and Breeding, Sichuan Agricultural University, Chengdu, China.

出版信息

PLoS Genet. 2023 Jun 8;19(6):e1010746. doi: 10.1371/journal.pgen.1010746. eCollection 2023 Jun.

Abstract

Pigeons (Columba livia) are among a select few avian species that have developed a specialized reproductive mode wherein the parents produce a 'milk' in their crop to feed newborn squabs. Nonetheless, the transcriptomic dynamics and role in the rapid transition of core crop functions during 'lactation' remain largely unexplored. Here, we generated a de novo pigeon genome assembly to construct a high resolution spatio-temporal transcriptomic landscape of the crop epithelium across the entire breeding stage. This multi-omics analysis identified a set of 'lactation'-related genes involved in lipid and protein metabolism, which contribute to the rapid functional transitions in the crop. Analysis of in situ high-throughput chromatin conformation capture (Hi-C) sequencing revealed extensive reorganization of promoter-enhancer interactions linked to the dynamic expression of these 'lactation'-related genes between stages. Moreover, their expression is spatially localized in specific epithelial layers, and can be correlated with phenotypic changes in the crop. These results illustrate the preferential de novo synthesis of 'milk' lipids and proteins in the crop, and provides candidate enhancer loci for further investigation of the regulatory elements controlling pigeon 'lactation'.

摘要

鸽子(Columba livia)是少数几种具有特殊生殖方式的鸟类之一,其父母会在嗉囊中产生一种“奶”来喂养新生雏鸽。然而,在“哺乳期”核心作物功能快速转变过程中的转录组动态及其作用在很大程度上仍未得到探索。在这里,我们生成了一个鸽子的从头基因组组装,以构建整个繁殖阶段的作物上皮细胞的高分辨率时空转录组图谱。这项多组学分析确定了一组与脂质和蛋白质代谢相关的“哺乳”相关基因,这些基因有助于作物的快速功能转变。对原位高通量染色质构象捕获(Hi-C)测序的分析揭示了与这些“哺乳”相关基因在不同阶段之间的动态表达相关的启动子-增强子相互作用的广泛重排。此外,它们的表达在特定的上皮层中具有空间定位,并与作物的表型变化相关。这些结果说明了“奶”脂质和蛋白质在作物中的优先从头合成,并为进一步研究控制鸽子“哺乳”的调节元件提供了候选增强子基因座。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d006/10249823/e9a0a46dc6a8/pgen.1010746.g001.jpg

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