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基因表达的可变性是不完全外显的基础。

Variability in gene expression underlies incomplete penetrance.

机构信息

Department of Physics, Massachusetts Institute of Technology, Cambridge, Massachusetts 02139, USA.

出版信息

Nature. 2010 Feb 18;463(7283):913-8. doi: 10.1038/nature08781.

Abstract

The phenotypic differences between individual organisms can often be ascribed to underlying genetic and environmental variation. However, even genetically identical organisms in homogeneous environments vary, indicating that randomness in developmental processes such as gene expression may also generate diversity. To examine the consequences of gene expression variability in multicellular organisms, we studied intestinal specification in the nematode Caenorhabditis elegans in which wild-type cell fate is invariant and controlled by a small transcriptional network. Mutations in elements of this network can have indeterminate effects: some mutant embryos fail to develop intestinal cells, whereas others produce intestinal precursors. By counting transcripts of the genes in this network in individual embryos, we show that the expression of an otherwise redundant gene becomes highly variable in the mutants and that this variation is subjected to a threshold, producing an ON/OFF expression pattern of the master regulatory gene of intestinal differentiation. Our results demonstrate that mutations in developmental networks can expose otherwise buffered stochastic variability in gene expression, leading to pronounced phenotypic variation.

摘要

个体生物之间的表型差异通常可归因于潜在的遗传和环境变异。然而,即使在同质环境中遗传相同的生物体也会发生变异,这表明发育过程中的随机性,如基因表达,也可能产生多样性。为了研究多细胞生物中基因表达变异性的后果,我们研究了线虫秀丽隐杆线虫中的肠道特化,在这种线虫中,野生型细胞命运是不变的,由一个小的转录网络控制。该网络元件的突变可能具有不确定的影响:一些突变体胚胎无法发育肠道细胞,而另一些则产生肠道前体细胞。通过计算该网络中基因的转录本在单个胚胎中的含量,我们发现一个冗余基因的表达在突变体中变得高度可变,并且这种变异性受到一个阈值的限制,从而产生肠道分化的主调控基因的 ON/OFF 表达模式。我们的结果表明,发育网络中的突变可以揭示基因表达中原本受到缓冲的随机变异性,从而导致明显的表型变异。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ac93/2836165/8f3888020a8c/nihms167246f1.jpg

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