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The Details in the Distributions: Why and how to study phenotypicvariability

机译:分布中的细节:为什么以及如何研究表型变化性

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摘要

Phenotypic variability is present even when genetic and environmental differences between cells are reduced to the greatest possible extent. For example, genetically identical bacteria display differing levels of resistance to antibiotics, clonal yeast populations demonstrate morphological and growth-rate heterogeneity, and mouse blastomeres from the same embryo have stochastic differences in gene expression. However, the distributions of phenotypes present among isogenic organisms are often overlooked; instead, many studies focus on population aggregates such as the mean. The details of these distributions are relevant to major questions in diverse fields, including the evolution of antimicrobial-drug and chemotherapy resistance. We review emerging experimental and statistical techniques that allow rigorous analysis of phenotypic variability and thereby may lead to advances across the biological sciences.
机译:即使细胞之间的遗传和环境差异减小到最大程度,也存在表型变异。例如,遗传上相同的细菌显示出不同的抗药性水平,克隆酵母种群表现出形态和生长速率异质性,并且来自同一胚胎的小鼠卵裂球的基因表达具有随机差异。然而,在同基因生物之间存在的表型分布常常被忽略。取而代之的是,许多研究关注人口总数,例如均值。这些分布的细节与各个领域的主要问题有关,包括抗菌药物的演变和化学疗法的耐药性。我们回顾了新兴的实验和统计技术,这些技术可以对表型变异性进行严格的分析,从而可能导致整个生物科学领域的进步。

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