标题: | 酵母菌与爪蟾属青蛙蛋之基因调控网路:改良型基因演算法 Genetic Regulatory Network of Yeast / Xenopus Frog Egg:Improved Genetic Algorithm |
作者: | 周家贤 Chia-Hsien Chou 李祖添 吴幸珍 Tsu-Tian Lee Shinq-Jen Wu 电控工程研究所 |
关键字: | 基因调控网路;酵母菌;爪蟾属青蛙蛋;改良型基因演算法;Genetic Regulatory Network;Yeast;Xenopus Frog Egg;Improved Genetic Algorithm |
公开日期: | 2005 |
摘要: | 利用改良型基因演算法,针对酵母菌与爪蟾属青蛙蛋分别做基因调控网路modified power-law model与S-system建模。藉由酵母菌实验和爪蟾属 Michaelis-Menten model所得到的时间点资料集做训练,以获取最佳化的参数,因为modified power-law model和S-system可以清楚地描述基因在生成或消耗反应时是催化作用还是抑制作用,鉴于两者的特色,对酵母菌的细胞周期与在爪蟾属青蛙蛋细胞周期中的有丝分裂控制,能明瞭其基因的反应情形。具有迁移作用的改良型基因演算法不但可以做到全域搜寻,还可以精英主义的概念取得最佳的个体。最终得到的基因调控网路可以提供给生物学家在酵母菌和爪蟾属青蛙蛋细胞周期方面做更深入的研究。 An improved genetic algorithm is proposed to achieve gene regulatory network modeling of Xenopus frog egg in S-system and yeast in modified power-law model respectively. Via the time-course datasets from experiment of yeast and Michaelis-Menten model of Xenopus, the optimal parameters are learned. The modified power-law model and S-system can clearly describe activative and inhibitory interaction between genes as generating and consuming process. We concern cell cycle of yeast and the mitotic control in cell cycle of Xenopus frog egg to realize gene reactions. The proposed improved genetic algorithm can achieve global search with migration and keep the best individual with elitism operation. The generated gene regulatory networks can provide biological researchers for further experiments in yeast and Xenopus frog egg cell cycle. |
URI: | http://140.113.39.130/cdrfb3/record/nctu/#GT009312623 http://hdl.handle.net/11536/78314 |
显示于类别: | Thesis |
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