Stochastic variation: from single cells to superorganisms.

Hfsp Journal Pub Date : 2009-12-01 Epub Date: 2009-10-09 DOI:10.2976/1.3223356
Maria L Kilfoil, Paul Lasko, Ehab Abouheif
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引用次数: 25

Abstract

Observed phenotype often fails to correspond with genotype. Although it is well established that uncontrolled genetic modifier effects and environmental variability can affect phenotype, stochastic variation in gene expression can also contribute to phenotypic differences. Here we examine recent work that has provided insights into how fundamental physical properties of living cells, and the probabilistic nature of the chemical reactions that underlie gene expression, introduce noise. We focus on instances in which a stochastic decision initiates an event in the development of a multicellular organism and how that decision can be subsequently fixed. We present an example indicating that a similar interplay between an initial stochastic decision and subsequent fixation may underlie the regulation of reproduction in social insects. We argue, therefore, that stochasticity affects biological processes from the single-gene scale through to the complex organization of an ant colony, and represents a largely neglected component of phenotypic variation and evolution.

Abstract Image

随机变异:从单细胞到超级有机体。
观察到的表型往往与基因型不一致。虽然不受控制的基因修饰效应和环境可变性可以影响表型,但基因表达的随机变异也可以导致表型差异。在这里,我们检查了最近的工作,这些工作提供了对活细胞的基本物理特性以及基因表达背后的化学反应的概率性质如何引入噪音的见解。我们关注的是一个随机决策在多细胞生物发展过程中引发事件的实例,以及该决策随后如何被修正。我们提出了一个例子,表明在最初的随机决定和随后的固定之间的类似相互作用可能是社会性昆虫繁殖调节的基础。因此,我们认为,随机性影响着从单基因规模到蚁群复杂组织的生物过程,并且代表了表型变异和进化的一个很大程度上被忽视的组成部分。
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Hfsp Journal
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