转录组
生物
人口
基因
进化生物学
计算生物学
细胞
遗传学
分子进化
细胞生物学
系统发育学
电池类型
基因表达谱
基因表达
作者
Tao Shi,Huiquan Shan,Haoping Wang,Xi Guo,Houcheng Li,Bo Han,Senlin Zhu,Fei Wang,Guanghui Tan,Zhannur Niyazbekova,Jilong Ren,Yaqi Zhou,Qi Zhang,Weijie Zheng,Minghui Jia,Ao Zhang,Xuesha Cao,Huizeng Sun,Dongxiao Sun,Lingzhao Fang
标识
DOI:10.1002/advs.202519346
摘要
ABSTRACT Cellular and molecular characterization of mammals with multi‐chambered stomachs is crucial to our understanding of evolution in digestive and metabolic systems. Here, we generate single‐cell transcriptomic atlases of 253,448 and 279,057 cells from 54 tissues in camels and cattle, discovering 124 cell types. Cross‐species comparisons at four developmental stages reveal a common evolutionary origin among camel glandular sac, third‐chambered stomach, and bovine abomasum, with the camel lineages uniquely harboring a cell population characterized by heightened expression of genes involved in cell proliferation. Also, the advantages of camel hepatocytes in prevention of excessive fat deposition are uncovered. Interestingly, the spatial transcriptomic analysis further reveals a unique population of S100A4 + vascular smooth muscle cells in camel rather than other mammalian kidneys, potentially involved in prevention of renal hypertension. Altogether, our study provides invaluable resources for evolutionary biology and highlights cellular innovations underlying mammalian adaptation.
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