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The evolution and functional diversification of animal microRNA genes 被引量:19
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作者 Na Liu Katsutomo Okamura David M Tyler Michael D Phillips Wei-Jen Chung Eric C Lai 《Cell Research》 SCIE CAS CSCD 2008年第10期985-996,共12页
microRNAs (miRNAs) are an abundant class of-22 nucleotide (nt) regulatory RNAs that are pervasive in higher eukaryotic genomes. In order to fully understand their prominence in genomes, it is necessary to elucidat... microRNAs (miRNAs) are an abundant class of-22 nucleotide (nt) regulatory RNAs that are pervasive in higher eukaryotic genomes. In order to fully understand their prominence in genomes, it is necessary to elucidate the molecular mechanisms that can diversify miRNA activities. In this review, we describe some of the many strategies that allow novel miRNA functions to emerge, with particular emphasis on how miRNA genes evolve in animals. These mechanisms include changes in their sequence, processing, or expression pattern; acquisition of miRNA^* functionality or antisense processing; and de novo gene birth. The facility and versatility of miRNAs to evolve and change likely underlies how they have become dominant constituents of higher genomes. 展开更多
关键词 MICRORNA EVOLUTION subfunctionalization NEOFUNCTIONALIZATION
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极点配置和状态观测器辅助设计工具开发
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作者 周灿丰 邓双成 +2 位作者 林顺英 张明昆 张微 《控制工程》 CSCD 2003年第z1期115-117,共3页
开发了一个运行于MATLAB环境的极点配置和状态观测器设计GUI辅助工具,帮助设计人员快捷、直观地完成相应的系统设计与仿真任务。在论述有关理论的基础上,以MatlabGUIDE为开发手段,进行该GUI辅助工具的设计。该设计的图形用户界面由GUID... 开发了一个运行于MATLAB环境的极点配置和状态观测器设计GUI辅助工具,帮助设计人员快捷、直观地完成相应的系统设计与仿真任务。在论述有关理论的基础上,以MatlabGUIDE为开发手段,进行该GUI辅助工具的设计。该设计的图形用户界面由GUIDE中的控件编辑、组合而成,控制算法通过调用ControlSystemToolbox中的命令函数来实现,为了实现不同控件callbacksubfunction代码之间的数据传输,采用global将要求共享的变量申明为全局变量。该GUI辅助工具可以做为MatlabSISODesignTool的有益补充。 展开更多
关键词 极点配置 状态观测器 GUI CALLBACK subfunction
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Exaptation at the molecular genetic level 被引量:1
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作者 Jürgen Brosius 《Science China(Life Sciences)》 SCIE CAS CSCD 2019年第4期437-452,共16页
The realization that body parts of animals and plants can be recruited or coopted for novel functions dates back to, or even predates the observations of Darwin. S.J. Gould and E.S. Vrba recognized a mode of evolution... The realization that body parts of animals and plants can be recruited or coopted for novel functions dates back to, or even predates the observations of Darwin. S.J. Gould and E.S. Vrba recognized a mode of evolution of characters that differs from adaptation. The umbrella term aptation was supplemented with the concept of exaptation. Unlike adaptations, which are restricted to features built by selection for their current role, exaptations are features that currently enhance fitness, even though their present role was not a result of natural selection. Exaptations can also arise from nonaptations; these are characters which had previously been evolving neutrally. All nonaptations are potential exaptations. The concept of exaptation was expanded to the molecular genetic level which aided greatly in understanding the enormous potential of neutrally evolving repetitive DNA—including transposed elements, formerly considered junk DNA—for the evolution of genes and genomes. The distinction between adaptations and exaptations is outlined in this review and examples are given. Also elaborated on is the fact that such distinctions are sometimes more difficult to determine; this is a widespread phenomenon in biology, where continua abound and clear borders between states and definitions are rare. 展开更多
关键词 EXAPTATION adaptation aptation NEOFUNCTIONALIZATION subfunctionalization non-protein coding RNA cooptation RECRUITMENT novel functional gene modules de novo GENES retrogenes
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