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Evolution of Robustness and Plasticity under Environmental Fluctuation: Formulation in Terms of Phenotypic Variances

机译:环境波动下鲁棒性和可塑性的演变:表型差异的表述

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The characterization of plasticity, robustness, and evolvability, an important issue in biology, is studied in terms of phenotypic fluctuations. By numerically evolving gene regulatory networks, the proportionality between the phenotypic variances of epigenetic and genetic origins is confirmed. The former is given by the variance of the phenotypic fluctuation due to noise in the developmental process; and the latter, by the variance of the phenotypic fluctuation due to genetic mutation. The relationship suggests a link between robustness to noise and to mutation, since robustness can be defined by the sharpness of the distribution of the phenotype. Next, the proportionality between the variances is demonstrated to also hold over expressions of different genes (phenotypic traits) when the system acquires robustness through the evolution. Then, evolution under environmental variation is numerically investigated and it is found that both the adaptability to a novel environment and the robustness are made compatible when a certain degree of phenotypic fluctuations exists due to noise. The highest adaptability is achieved at a certain noise level at which the gene expression dynamics are near the critical state to lose the robustness. Based on our results, we revisit Waddington’s canalization and genetic assimilation with regard to the two types of phenotypic fluctuations.
机译:根据表型波动研究了可塑性,鲁棒性和可进化性(生物学中的重要问题)的表征。通过数字进化的基因调控网络,可以确定表观遗传和遗传起源的表型变异之间的比例。前者是由于发育过程中噪声引起的表型波动的方差。后者是由于基因突变引起的表型波动的差异。该关系表明鲁棒性与噪声和突变之间的联系,因为鲁棒性可以由表型分布的清晰度来定义。接下来,当系统通过进化获得鲁棒性时,方差之间的比例性也证明可以保留不同基因的表达(表型性状)。然后,对环境变化下的演化进行了数值研究,发现当由于噪声而存在一定程度的表型波动时,使对新环境的适应性和鲁棒性兼容。在一定的噪声水平下可获得最高的适应性,在该噪声水平下基因表达动力学接近临界状态以失去鲁棒性。根据我们的结果,我们就两种类型的表型波动重新审视了Waddington的渠道化和遗传同化。

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