首页> 外文期刊>Evolutionary Bioinformatics >A Unifying Mathematical Framework for Genetic Robustness, Environmental Robustness, Network Robustness and their Trade-off on Phenotype Robustness in Biological Networks Part I: Gene Regulatory Networks in Systems and Evolutionary Biology
【24h】

A Unifying Mathematical Framework for Genetic Robustness, Environmental Robustness, Network Robustness and their Trade-off on Phenotype Robustness in Biological Networks Part I: Gene Regulatory Networks in Systems and Evolutionary Biology

机译:遗传稳健性,环境稳健性,网络稳健性及其在生物网络中表型稳健性之间的权衡的统一数学框架第一部分:系统和进化生物学中的基因调控网络

获取原文
       

摘要

Robust stabilization and environmental disturbance attenuation are ubiquitous systematic properties observed in biological systems at different levels. The underlying principles for robust stabilization and environmental disturbance attenuation are universal to both complex biological systems and sophisticated engineering systems. In many biological networks, network robustness should be enough to confer intrinsic robustness in order to tolerate intrinsic parameter fluctuations, genetic robustness for buffering genetic variations, and environmental robustness for resisting environmental disturbances. With this, the phenotypic stability of biological network can be maintained, thus guaranteeing phenotype robustness. This paper presents a survey on biological systems and then develops a unifying mathematical framework for investigating the principles of both robust stabilization and environmental disturbance attenuation in systems and evolutionary biology. Further, from the unifying mathematical framework, it was discovered that the phenotype robustness criterion for biological networks at different levels relies upon intrinsic robustness + genetic robustness + environmental robustness ≤ network robustness. When this is true, the phenotype robustness can be maintained in spite of intrinsic parameter fluctuations, genetic variations, and environmental disturbances. Therefore, the trade-offs between intrinsic robustness, genetic robustness, environmental robustness, and network robustness in systems and evolutionary biology can also be investigated through their corresponding phenotype robustness criterion from the systematic point of view.
机译:稳定的稳定性和环境扰动衰减是在生物系统中不同级别普遍观察到的系统特性。鲁棒稳定和环境干扰衰减的基本原理对于复杂的生物系统和复杂的工程系统都是通用的。在许多生物网络中,网络的鲁棒性应足以赋予固有的鲁棒性,以便忍受固有的参数波动,缓冲遗传变异的遗传鲁棒性和抵抗环境干扰的环境鲁棒性。这样,可以维持生物网络的表型稳定性,从而保证表型的鲁棒性。本文介绍了对生物系统的调查,然后建立了一个统一的数学框架来研究系统和进化生物学中鲁棒稳定和环境干扰衰减的原理。此外,从统一的数学框架中发现,不同级别的生物网络的表型鲁棒性标准依赖于内在鲁棒性+遗传鲁棒性+环境鲁棒性≤网络鲁棒性。当这是真的时,尽管存在固有参数波动,遗传变异和环境干扰,仍可以保持表型的鲁棒性。因此,还可以从系统的角度通过系统和进化生物学的内在鲁棒性,遗传鲁棒性,环境鲁棒性和网络鲁棒性之间的权衡取舍。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号