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迈向模式生物信息学:理解调节形态发生的计算方法。

Towards a bioinformatics of patterning: a computational approach to understanding regulative morphogenesis.

机构信息

Tufts Center for Regenerative and Developmental Biology, and Department of Biology, Tufts University , 200 Boston Avenue, Suite 4600, Medford, MA 02155 , USA.

出版信息

Biol Open. 2013 Feb 15;2(2):156-69. doi: 10.1242/bio.20123400. Epub 2012 Nov 26.

Abstract

The mechanisms underlying the regenerative abilities of certain model species are of central importance to the basic understanding of pattern formation. Complex organisms such as planaria and salamanders exhibit an exceptional capacity to regenerate complete body regions and organs from amputated pieces. However, despite the outstanding bottom-up efforts of molecular biologists and bioinformatics focused at the level of gene sequence, no comprehensive mechanistic model exists that can account for more than one or two aspects of regeneration. The development of computational approaches that help scientists identify constructive models of pattern regulation is held back by the lack of both flexible morphological representations and a repository for the experimental procedures and their results (altered pattern formation). No formal representation or computational tools exist to efficiently store, search, or mine the available knowledge from regenerative experiments, inhibiting fundamental insights from this huge dataset. To overcome these problems, we present here a new class of ontology to encode formally and unambiguously a very wide range of possible morphologies, manipulations, and experiments. This formalism will pave the way for top-down approaches for the discovery of comprehensive models of regeneration. We chose the planarian regeneration dataset to illustrate a proof-of-principle of this novel bioinformatics of shape; we developed a software tool to facilitate the formalization and mining of the planarian experimental knowledge, and cured a database containing all of the experiments from the principal publications on planarian regeneration. These resources are freely available for the regeneration community and will readily assist researchers in identifying specific functional data in planarian experiments. More importantly, these applications illustrate the presented framework for formalizing knowledge about functional perturbations of morphogenesis, which is widely applicable to numerous model systems beyond regenerating planaria, and can be extended to many aspects of functional developmental, regenerative, and evolutionary biology.

摘要

某些模式物种再生能力的机制对于基本的形态发生模式理解至关重要。复杂的生物,如扁形虫和蝾螈,具有从切断的部分再生完整身体区域和器官的非凡能力。然而,尽管分子生物学家和生物信息学家从下到上进行了杰出的努力,专注于基因序列水平,但没有一个全面的机制模型可以解释再生的一个或两个方面以上。缺乏灵活的形态表示形式和用于存储实验过程及其结果(改变的形态发生)的存储库,阻碍了有助于科学家识别模式调节建设性模型的计算方法的发展。没有正式的表示形式或计算工具可以有效地存储、搜索或挖掘来自再生实验的可用知识,从而阻碍了从这个巨大数据集获得的基本见解。为了克服这些问题,我们在这里提出了一种新的本体论类别,以便正式且明确地对各种可能的形态、操作和实验进行编码。这种形式主义将为再生的全面模型发现铺平道路。我们选择了扁形虫再生数据集来说明这种新的形态生物信息学的原理证明;我们开发了一个软件工具来促进扁形虫实验知识的形式化和挖掘,并修复了一个包含扁形虫再生主要出版物中所有实验的数据库。这些资源可供再生社区免费使用,并将有助于研究人员识别扁形虫实验中的特定功能数据。更重要的是,这些应用程序说明了用于对形态发生的功能干扰进行形式化知识的提出的框架,该框架广泛适用于除再生扁形虫以外的许多模式系统,并且可以扩展到功能发育、再生和进化生物学的许多方面。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/fbe9/3575650/710067b38cc0/bio-02-02-156-f01.jpg

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