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多细胞模式生成模型中的基因型-表型关系——模式描述符被忽视的作用。

The genotype-phenotype relationship in multicellular pattern-generating models--the neglected role of pattern descriptors.

作者信息

Martens Harald, Veflingstad Siren R, Plahte Erik, Martens Magni, Bertrand Dominique, Omholt Stig W

机构信息

Centre for Integrative Genetics (CIGENE), Norwegian University of Life Sciences, N-1432 As, Norway.

出版信息

BMC Syst Biol. 2009 Sep 4;3:87. doi: 10.1186/1752-0509-3-87.

Abstract

BACKGROUND

A deep understanding of what causes the phenotypic variation arising from biological patterning processes, cannot be claimed before we are able to recreate this variation by mathematical models capable of generating genotype-phenotype maps in a causally cohesive way. However, the concept of pattern in a multicellular context implies that what matters is not the state of every single cell, but certain emergent qualities of the total cell aggregate. Thus, in order to set up a genotype-phenotype map in such a spatiotemporal pattern setting one is actually forced to establish new pattern descriptors and derive their relations to parameters of the original model. A pattern descriptor is a variable that describes and quantifies a certain qualitative feature of the pattern, for example the degree to which certain macroscopic structures are present. There is today no general procedure for how to relate a set of patterns and their characteristic features to the functional relationships, parameter values and initial values of an original pattern-generating model. Here we present a new, generic approach for explorative analysis of complex patterning models which focuses on the essential pattern features and their relations to the model parameters. The approach is illustrated on an existing model for Delta-Notch lateral inhibition over a two-dimensional lattice.

RESULTS

By combining computer simulations according to a succession of statistical experimental designs, computer graphics, automatic image analysis, human sensory descriptive analysis and multivariate data modelling, we derive a pattern descriptor model of those macroscopic, emergent aspects of the patterns that we consider of interest. The pattern descriptor model relates the values of the new, dedicated pattern descriptors to the parameter values of the original model, for example by predicting the parameter values leading to particular patterns, and provides insights that would have been hard to obtain by traditional methods.

CONCLUSION

The results suggest that our approach may qualify as a general procedure for how to discover and relate relevant features and characteristics of emergent patterns to the functional relationships, parameter values and initial values of an underlying pattern-generating mathematical model.

摘要

背景

在我们能够通过能够以因果连贯的方式生成基因型 - 表型图谱的数学模型来重现这种变异之前,无法深入理解生物模式形成过程中产生表型变异的原因。然而,多细胞环境中的模式概念意味着重要的不是每个单个细胞的状态,而是整个细胞聚集体的某些涌现特性。因此,为了在这样的时空模式设置中建立基因型 - 表型图谱,实际上必须建立新的模式描述符,并推导它们与原始模型参数的关系。模式描述符是一个变量,用于描述和量化模式的某个定性特征,例如某些宏观结构的存在程度。目前还没有关于如何将一组模式及其特征与原始模式生成模型的功能关系、参数值和初始值相关联的通用程序。在这里,我们提出了一种新的通用方法,用于对复杂模式模型进行探索性分析,该方法侧重于基本模式特征及其与模型参数的关系。该方法在一个现有的二维晶格上Delta-Notch侧向抑制模型中进行了说明。

结果

通过根据一系列统计实验设计进行计算机模拟、计算机图形学、自动图像分析、人类感官描述分析和多变量数据建模,我们得出了我们认为感兴趣的那些模式的宏观、涌现方面的模式描述符模型。该模式描述符模型将新的专用模式描述符的值与原始模型的参数值相关联,例如通过预测导致特定模式的参数值,并提供了通过传统方法难以获得的见解。

结论

结果表明,我们的方法可能符合一种通用程序,用于发现涌现模式的相关特征并将其与基础模式生成数学模型的功能关系、参数值和初始值相关联。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6dde/2749810/a3eeae2e29fb/1752-0509-3-87-1.jpg

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