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缺陷缓冲细胞可塑性提高后生动物胚胎发生的稳健性。

Defect-buffering cellular plasticity increases robustness of metazoan embryogenesis.

机构信息

State Key Laboratory of Molecular Developmental Biology, Institute of Genetics and Developmental Biology, Chinese Academy of Sciences, Beijing 100101, China; University of Chinese Academy of Sciences, Beijing 100049, China.

State Key Laboratory of Molecular Developmental Biology, Institute of Genetics and Developmental Biology, Chinese Academy of Sciences, Beijing 100101, China.

出版信息

Cell Syst. 2022 Aug 17;13(8):615-630.e9. doi: 10.1016/j.cels.2022.07.001. Epub 2022 Jul 25.

Abstract

Developmental processes are intrinsically robust so as to preserve a normal-like state in response to genetic and environmental fluctuations. However, the robustness and potential phenotypic plasticity of individual developing cells under genetic perturbations remain to be systematically evaluated. Using large-scale gene perturbation, live imaging, lineage tracing, and single-cell phenomics, we quantified the phenotypic landscape of C. elegans embryogenesis in >2,000 embryos following individual knockdown of over 750 conserved genes. We observed that cellular genetic systems are not sufficiently robust to single-gene perturbations across all cells; rather, gene knockdowns frequently induced cellular defects. Dynamic phenotypic analyses revealed many cellular defects to be transient, with cells exhibiting phenotypic plasticity that serves to alleviate, correct, and accommodate the defects. Moreover, potential developmentally related cell modules may buffer the phenotypic effects of individual cell position changes. Our findings reveal non-negligible contributions of cellular plasticity and multicellularity as compensatory strategies to increase developmental robustness.

摘要

发育过程本质上是稳健的,以便在应对遗传和环境波动时保持类似正常的状态。然而,单个发育细胞在遗传扰动下的稳健性和潜在表型可塑性仍有待系统评估。通过大规模基因扰动、活细胞成像、谱系追踪和单细胞表型分析,我们在超过 750 个保守基因的单个敲低后,对 >2000 个秀丽隐杆线虫胚胎的表型景观进行了定量分析。我们观察到,细胞遗传系统在所有细胞中都不能充分抵抗单个基因的扰动;相反,基因敲低经常会引起细胞缺陷。动态表型分析显示,许多细胞缺陷是短暂的,细胞表现出表型可塑性,可以缓解、纠正和适应缺陷。此外,潜在的与发育相关的细胞模块可能会缓冲单个细胞位置变化的表型效应。我们的发现揭示了细胞可塑性和多细胞性作为补偿策略的重要贡献,以增加发育稳健性。

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