首页> 外文会议>International Conference on Advances in Natural Computation(ICNC 2005); 20050827-29; Changsha(CN) >Selection, Space and Diversity: What Can Biological Speciation Tell Us About the Evolution of Modularity?
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Selection, Space and Diversity: What Can Biological Speciation Tell Us About the Evolution of Modularity?

机译:选择,空间和多样性:关于形态的进化,生物物种能告诉我们什么?

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Modularity is a widespread form of organization in complex systems, but its origins are poorly understood. Here, I discuss the causes and consequences of modularity in evolutionary systems. Almost all living organisms engage in sexual exchange of genes, and those that do so are organized into discrete modules we call species. Gene exchange occurs within, but not between, species. This genetic segregation allows organisms to adapt to different niches and environments, and thereby evolve complex and long-lasting ecosystems. The process that generates such modularity, speciation, is therefore the key to understanding the diversity of life. Speciation theory is a highly developed topic within population genetics and evolutionary theory. I discuss some lessons from recent progress in speciation theory for our understanding of diversification and modularity in complex systems more generally, including possible applications in genetic algorithms, artificial life and social engineering.
机译:模块化是复杂系统中组织的一种普遍形式,但其起源却鲜为人知。在这里,我讨论了进化系统中模块化的原因和后果。几乎所有活生物体都参与基因的有性交换,而那些有性生物则被组织成离散的模块,我们称之为物种。基因交换发生在物种内部,而不发生在物种之间。这种遗传隔离使生物能够适应不同的生态位和环境,从而进化出复杂而持久的生态系统。因此,产生这种模块化,物种形成的过程是理解生活多样性的关键。物种形成理论是种群遗传学和进化论中一个高度发达的话题。为了更好地理解复杂系统中的多样性和模块化,我讨论了物种理论最新进展的一些教训,包括遗传算法,人工生活和社会工程学中的可能应用。

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