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跨哺乳动物器官发育的基因表达谱
作者:小柯机器人 发布时间:2019/7/30 10:22:47

近日,德国海德堡大学分子生物学中心的Henrik Kaessmann和Margarida Cardoso-Moreira团队合作报道了多种哺乳动物器官发育过程中的基因表达谱。2019年7月25日出版的《自然》发表了这项成果。

研究人员报道了来自人类、猕猴、小鼠、大鼠、兔子、负鼠和鸡的七种器官(大脑,小脑,心脏,肾脏,肝脏,卵巢和睾丸),在发育过程中从早期器官生成到成年的转录组。通过对基因表达模式的对比,研究人员鉴定了不同物种中对应的发育阶段,以及性腺发育过程中关键事件发生时间的差异。研究人员发现,基因表达的广度和基因纯化选择(负选择)的程度随着发育降低,而正选择的数量与新基因的表达则在增加。研究人员发现了不同物种中个体基因表达时间轨迹的差异,其中脑组织显示出最小的轨迹变化,而肝脏和睾丸变化最大。因此,这项工作提供了一个跨越7个物种的7个器官发育转录组的资源库,并为定义哺乳动物器官的发育与进化提供了比较性分析。

据了解,哺乳动物器官发育时基因表达的进化还知之甚少。

 

附:英文原文

Title: Gene expression across mammalian organ development

Author: Margarida Cardoso-Moreira, Jean Halbert, Delphine Valloton, Britta Velten, Chunyan Chen, Yi Shao, Anglica Liechti, Kelly Asceno, Coralie Rummel, Svetlana Ovchinnikova, Pavel V. Mazin, Ioannis Xenarios, Keith Harshman, Matthew Mort, David N. Cooper, Carmen Sandi, Michael J. Soares, Paula G. Ferreira, Sandra Afonso, Miguel Carneiro, James M. A. Turner, John L. VandeBerg, Amir Fallahshahroudi, Per Jensen, Rdiger Behr, Steven Lisgo, Susan Lindsay, Philipp Khaitovich, Wolfgang Huber, Julie Baker, Simon Anders,Yong E. Zhang, Henrik Kaessmann 

Issue&Volume: Volume 571 Issue 7766

Abstract: The evolution of gene expression in mammalian organ development remains largely uncharacterized. Here we report the transcriptomes of seven organs (cerebrum, cerebellum, heart, kidney, liver, ovary and testis) across developmental time points from early organogenesis to adulthood for human, rhesus macaque, mouse, rat, rabbit, opossum and chicken. Comparisons of gene expression patterns identified correspondences of developmental stages across species, and differences in the timing of key events during the development of the gonads. We found that the breadth of gene expression and the extent of purifying selection gradually decrease during development, whereas the amount of positive selection and expression of new genes increase. We identified differences in the temporal trajectories of expression of individual genes across species, with brain tissues showing the smallest percentage of trajectory changes, and the liver and testis showing the largest. Our work provides a resource of developmental transcriptomes of seven organs across seven species, and comparative analyses that characterize the development and evolution of mammalian organs.

DOI: 10.1038/s41586-019-1338-5

Source:https://www.nature.com/articles/s41586-019-1338-5

期刊信息

Nature:《自然》,创刊于1869年。隶属于施普林格·自然出版集团,最新IF:43.07
官方网址:http://www.nature.com/
投稿链接:http://www.nature.com/authors/submit_manuscript.html