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A Silicon Olfactome

机译:硅嗅觉组

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In this issue of Chemical Senses, Galizia et al publish an important new tool for the chemosensory research community in general and for olfactory-oriented scientist in particular. The primary aim of the tool is to make it possible to compare results regarding the response specificity of Drosophila melanogaster olfactory receptors (DOrs) from different laboratories. These results have often been arrived at by the use of varying stimulation paradigms and different response registration methods. By building an impressive algorithm, the authors have created a web-based resource, where all extant response spectra have been entered, already now providing a very comprehensive overview of key ligands and tuning width of the DOrs. The web resource is highly attractive, as the authors make it freely available to the scientific community, with an open structure allowing new results to be entered as they emerge. The general structure of the program also allows its application to other species, such as other drosophilids, mice, and humans. Even though the application, as the authors themselves point out, still has its shortcomings, we find it to be a very important step forward in correlating the strong universal effort in understanding Drosophila olfaction.
机译:在本期《化学感官》中,Galizia等人发布了一种重要的新工具,适用于一般的化学传感研究领域,尤其是面向嗅觉科学家。该工具的主要目的是可以比较来自不同实验室的果蝇嗅觉受体(DOrs)的响应特异性结果。这些结果通常是通过使用不同的刺激范例和不同的响应配准方法得出的。通过构建令人印象深刻的算法,作者创建了一个基于Web的资源,在其中输入了所有现有的响应光谱,现在已经提供了对关键配体和DOrs调整宽度的非常全面的概述。该网络资源具有极大的吸引力,因为作者将其免费提供给科学界,其开放结构允许在出现新结果时输入新结果。该程序的一般结构还允许将其应用于其他物种,例如其他果蝇,小鼠和人类。正如作者自己指出的那样,尽管该应用程序仍然存在缺点,但我们发现它是将理解果蝇嗅觉的强大的普遍努力联系起来的非常重要的一步。

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