bioRxiv Science⌕ Search

Biology subjects

Lv, F.-H.

Publications and source records attributed to Lv, F.-H..

2 recordsLinked to original sources

A time-resolved multi-omics atlas of transcriptional regulation in response to high-altitude hypoxia across whole-body tissues

High-altitude hypoxia acclimatization requires whole-body physiological regulation in highland immigrants, but the underlying genetic mechanism has not been clarified. Here we used sheep as an animal model for plain-to-plateau transplantation. We generated multi-omics data including time-resolved bulk RNA-Seq, ATAC-Seq and single-cell RNA-Seq from multiple tissues as well as phenotypic data from 20 bio-indicators. We characterized transcriptional changes of all genes in each tissue, and examined multi-tissue temporal dynamics and transcriptional interactions among genes. In particular, we identified critical functional genes regulating the short response to hypoxia in each tissue (e.g., PARG in the cerebellum and HMOX1 in the colon). We further identified TAD-constrained cis-regulatory elements, which suppressed the transcriptional activity of most genes under hypoxia. Phenotypic and transcriptional evidence indicated that antenatal hypoxia could improve hypoxia tolerance in offspring. Furthermore, we provided time-series expression data of candidate genes associated with human mountain sickness (e.g., BMPR2) and high-altitude adaptation (e.g., HIF1A). Our study provides valuable resources and insights for future hypoxia-related studies in mammals.

genetics↗

Genomic analyses of Asiatic Mouflon in Iran provide insights into the domestication and evolution of sheep

BackgroundAsiatic mouflon (O. gmelini) consists of several subspecies mainly distributed in Armenia, southern Azerbaijan, Cyprus, northern, southern, and western regions of Iran, and eastern and central regions of Turkey nowadays. Genome analyses of Asiatic mouflon in Iran revealed that they could have diverged from the direct ancestor of domestic sheep, and showed genetic introgression into domestic sheep after domestication. However, the impact of the Asiatic mouflon subspecies in Iran on sheep domestication remains unclear. ResultsHere, we conducted a comprehensive population genomics analysis of Asiatic mouflons in Iran with 780 whole-genome sequences, 767 whole mitogenomes, and 239 Y chromosomes. Whole-genome sequence analyses revealed two subpopulations of the Asiatic mouflons in Iran: O. gmelini_2 limited in Kabudan and O. gmelini_1 over a wide geographic area. Phylogenetic analyses of the Asiatic mouflons in Iran based on uniparental variants revealed a monophyletic lineage with the mitochondrial haplogroups C+E, and clustered into a monophyletic with Y-chromosomal lineage HY2 of sheep. Additionally, introgression tests detected significant signals of genetic introgression from O. gmelini_2 to four sheep populations (e.g., Garut, Garole, Bangladeshi, and Sumatra) in South and Southeast Asia. In the four sheep populations, selective tests and introgression signals revealed that the wild introgression could have contributed to their small body size and local adaptation to the hot and humid environments in the Indian Peninsula. ConclusionsOur results suggested that the maternal haplogroups C+E and paternal lineage HY2 could have originated from the Asiatic mouflon in Iran. Also, our findings provide new insights into sheep domestication and subsequent introgressions from wild ancestors to domestic populations.

evolutionary biology↗