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Evolutionary growth of genomes for the development and replication of multicellular organisms with indirect encoding

机译:基因组的进化生长,用于间接编码的多细胞生物的发育和复制

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The genomes of biological organisms are not fixed in size. They evolved and diverged into different species acquiring new genes and thus having different lengths. In a way, biological genomes are the result of a self-assembly process where more complex phenotypes could benefit by having larger genomes in order to survive and adapt. In the artificial domain, evolutionary and developmental systems often have static size genomes, e.g. chosen beforehand by the system designer by trial and error or estimated a priori with complicated heuristics. As such, the maximum evolvable complexity is predetermined, in contrast to open-ended evolution in nature. In this paper, we argue that artificial genomes may also grow in size during evolution to produce high-dimensional solutions incrementally. We propose an evolutionary growth of genome representations for artificial cellular organisms with indirect encodings. Genomes start with a single gene and acquire new genes when necessary, thus increasing the degrees of freedom and expanding the available search-space. Cellular Automata (CA) are used as test bed for two different problems: replication and morphogenesis. The chosen CA encodings are a standard developmental table and an instruction based approach. Results show that the proposed evolutionary growth of genomes' method is able to produce compact and effective genomes, without the need of specifying the full set of regulatory configurations.
机译:生物有机体的基因组大小不固定。他们进化并分化成获取新基因的不同物种,因此具有不同的长度。在某种程度上,生物基因组是自组装过程的结果,在这种过程中,更复杂的表型可以通过拥有更大的基因组来生存和适应而受益。在人工领域中,进化和发育系统通常具有静态大小的基因组,例如。由系统设计人员通过反复试验预先选择,或通过复杂的启发式方法进行先验估计。这样,与自然界中的开放式进化相反,最大可进化复杂度是预先确定的。在本文中,我们认为人工基因组的大小在进化过程中也可能会增长,从而逐步产生高维解。我们建议使用间接编码的人工细胞有机体的基因组表示的进化增长。基因组从单个基因开始,并在必要时获取新基因,从而增加了自由度并扩大了可用的搜索空间。细胞自动机(CA)用作两个不同问题的试验床:复制和形态发生。选择的CA编码是标准开发表和基于指令的方法。结果表明,提出的基因组进化生长方法能够产生紧凑而有效的基因组,而无需指定完整的调控结构。

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