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Single Cell Quantification of Reporter Gene Expression in Live Adult Caenorhabditis elegans Reveals Reproducible Cell-Specific Expression Patterns and Underlying Biological Variation

机译:成人成年秀丽隐杆线虫报告基因表达的单细胞定量显示可再现的细胞特异性表达模式和潜在的生物学变异。

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摘要

In multicellular organisms such as Caenorhabditis elegans, differences in complex phenotypes such as lifespan correlate with the level of expression of particular engineered reporter genes. In single celled organisms, quantitative understanding of responses to extracellular signals and of cell-to-cell variation in responses has depended on precise measurement of reporter gene expression. Here, we developed microscope-based methods to quantify reporter gene expression in cells of Caenorhabditis elegans with low measurement error. We then quantified expression in strains that carried different configurations of Phsp-16.2-fluorescent-protein reporters, in whole animals, and in all 20 cells of the intestine tissue, which is responsible for most of the fluorescent signal. Some animals bore more recently developed single copy Phsp-16.2 reporters integrated at defined chromosomal sites, others, “classical” multicopy reporter gene arrays integrated at random sites. At the level of whole animals, variation in gene expression was similar: strains with single copy reporters showed the same amount of animal-to-animal variation as strains with multicopy reporters. At the level of cells, in animals with single copy reporters, the pattern of expression in cells within the tissue was highly stereotyped. In animals with multicopy reporters, the cell-specific expression pattern was also stereotyped, but distinct, and somewhat more variable. Our methods are rapid and gentle enough to allow quantification of expression in the same cells of an animal at different times during adult life. They should allow investigators to use changes in reporter expression in single cells in tissues as quantitative phenotypes, and link those to molecular differences. Moreover, by diminishing measurement error, they should make possible dissection of the causes of the remaining, real, variation in expression. Understanding such variation should help reveal its contribution to differences in complex phenotypic outcomes in multicellular organisms.
机译:在诸如秀丽隐杆线虫(Caenorhabditis elegans)等多细胞生物中,复杂表型(例如寿命)的差异与特定基因工程报道基因的表达水平相关。在单细胞生物中,对细胞外信号反应和反应中细胞间变化的定量理解取决于报告基因表达的精确测量。在这里,我们开发了基于显微镜的方法来量化线虫秀丽隐杆线虫细胞中报道基因的表达,且测量误差低。然后,我们在整个动物和肠道组织的所有20个细胞中量化了在携带Phsp-16.2-荧光蛋白报告基因的不同构型的菌株中的表达,这是造成大多数荧光信号的原因。一些动物的新近发展出的单拷贝Phsp-16.2报告基因在确定的染色体位点整合,另一些动物则在随机的位点整合了“经典”多拷贝报告基因阵列。在整个动物的水平上,基因表达的变化是相似的:具有单拷贝报告基因的菌株与多拷贝报告基因的菌株显示出相同数量的动物间差异。在细胞水平上,在具有单拷贝报告基因的动物中,组织内细胞中的表达模式是高度定型的。在具有多拷贝报告子的动物中,细胞特异性表达模式也被定型,但彼此不同,并且变化更大。我们的方法足够快速和温和,可以定量分析成年动物在不同时间在同一细胞中的表达。他们应允许研究人员将组织中单个细胞中报告基因表达的变化用作定量表型,并将其与分子差异联系起来。此外,通过减少测量误差,他们应该可以剖析剩余的,真实的,表达变化的原因。了解这种变异应有助于揭示其对多细胞生物复杂表型结局差异的贡献。

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