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有袋类和真兽类转录组揭示了新皮层发育时间的趋异进化。

Divergent evolution of developmental timing in the neocortex revealed by marsupial and eutherian transcriptomes.

机构信息

Queensland Brain Institute, The University of Queensland, Brisbane, QLD 4072, Australia.

School of Biomedical Sciences, Faculty of Medicine, The University of Queensland, Brisbane, QLD 4072, Australia.

出版信息

Development. 2022 Feb 1;149(3). doi: 10.1242/dev.200212. Epub 2022 Feb 10.

DOI:10.1242/dev.200212
PMID:35005774
Abstract

Only mammals evolved a neocortex, which integrates sensory-motor and cognitive functions. Significant diversifications in the cellular composition and connectivity of the neocortex occurred between the two main therian groups: marsupials and eutherians. However, the developmental mechanisms underlying these diversifications are largely unknown. Here, we compared the neocortical transcriptomes of Sminthopsis crassicaudata, a mouse-sized marsupial, with those of eutherian mice at two developmentally equivalent time points corresponding to deeper and upper layer neuron generation. Enrichment analyses revealed more mature gene networks in marsupials at the early stage, which reverted at the later stage, suggesting a more precocious but protracted neuronal maturation program relative to birth timing of cortical layers. We ranked genes expressed in different species and identified important differences in gene expression rankings between species. For example, genes known to be enriched in upper-layer cortical projection neuron subtypes, such as Cux1, Lhx2 and Satb2, likely relate to corpus callosum emergence in eutherians. These results show molecular heterochronies of neocortical development in Theria, and highlight changes in gene expression and cell type composition that may underlie neocortical evolution and diversification. This article has an associated 'The people behind the papers' interview.

摘要

只有哺乳动物进化出了新皮层,它整合了感觉-运动和认知功能。在两个主要的有袋类和真兽类群体之间,新皮层的细胞组成和连接发生了显著的多样化。然而,这些多样化的发育机制在很大程度上是未知的。在这里,我们比较了鼠尾袋鼠(Sminthopsis crassicaudata)和真兽类小鼠的新皮层转录组,这两种动物在两个发育上相当的时间点,对应于更深层和上层神经元的产生。富集分析显示,在早期阶段,有袋类动物的成熟基因网络更多,而在后期阶段则恢复,这表明相对于皮质层的出生时间,有袋类动物的神经元成熟程序更早但更持久。我们对不同物种中表达的基因进行了排序,并确定了物种间基因表达排序的重要差异。例如,已知在皮质上层投射神经元亚型中富集的基因,如 Cux1、Lhx2 和 Satb2,可能与真兽类的胼胝体出现有关。这些结果表明,在真兽类中,新皮层的发育存在分子异时性,并强调了基因表达和细胞类型组成的变化,这些变化可能是新皮层进化和多样化的基础。本文有一个相关的“论文背后的人物”采访。

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Development. 2022 Feb 1;149(3). doi: 10.1242/dev.200212. Epub 2022 Feb 10.
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Strategies for Dissecting the Genetic Driving of Conserved Noncoding-Elements for Evolutionary Development of the Corpus Callosum.剖析保守非编码元件对胼胝体进化发育的遗传驱动作用的策略。
Neurosci Bull. 2024 Jul;40(7):1025-1027. doi: 10.1007/s12264-024-01198-y. Epub 2024 Apr 3.
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Non-uniform temporal scaling of developmental processes in the mammalian cortex.
哺乳动物皮层发育过程的非均匀时间缩放。
Nat Commun. 2023 Sep 23;14(1):5950. doi: 10.1038/s41467-023-41652-5.
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Cortical activity emerges in region-specific patterns during early brain development.皮质活动在早期大脑发育过程中以特定区域的模式出现。
Proc Natl Acad Sci U S A. 2023 May 30;120(22):e2208654120. doi: 10.1073/pnas.2208654120. Epub 2023 May 22.
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Cortical activity emerges in region-specific patterns during early brain development.在大脑发育早期,皮质活动以区域特异性模式出现。
bioRxiv. 2023 Apr 8:2023.02.18.529078. doi: 10.1101/2023.02.18.529078.
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Evolution of genetic mechanisms regulating cortical neurogenesis.调控皮质神经发生的遗传机制的进化。
Dev Neurobiol. 2022 Jul;82(5):428-453. doi: 10.1002/dneu.22891. Epub 2022 Jun 22.