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Cross-disciplinary investigation of pattern formation in Zebrafish using spatially extended mathematical models with volume exclusion

Cross-disciplinary investigation of pattern formation in Zebrafish using spatially extended mathematical models with volume exclusion
使用具有体积排除的空间扩展数学模型对斑马鱼图案形成进行跨学科研究
批准号:
1864779
负责人:
金额:
$0.0万
依托单位:
依托单位国家:
英国
项目类别:
Studentship
财政年份:
2016
资助国家:
英国
项目状态:
已结题
起止时间:
2016 至 --

项目摘要

项目成果

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中文摘要
翻译
大量的理论和实验研究--提出了图灵型反应扩散机制可能是斑马鱼条纹色素图案的原因的假说。然而,最近的实验研究表明,这种机制使用的是细胞与细胞之间的相互作用,而不是经典的前模式生成相互作用的、可扩散的配体对。实际上,Yamanaka和Kondo(2014)提出,黄色素和黑素载体的不对称相互作用和不同的移动速率-导致逃逸-追逐行为-可以诱导模式的形成。最近,第三种细胞类型-虹膜载体-也被认为对斑马鱼图案的形成至关重要。最后,我们确定Agti信号肽(ASIP)是另一种构图成分,可能与条纹形成机制平行。数学建模在阐明斑马鱼条纹机制方面发挥了重要作用。描述这一现象的框架通常使用确定性连续偏微分方程组(PDE)。这些基于二种群偏微分方程的模型未能恰当地捕捉潜在的生物学,主要有四个原因:(I)它们没有考虑生物系统固有的波动;(Ii)有限细胞尺寸的影响被忽略;这个项目的中心目标是建立一个框架来研究随机性和有限的细胞尺寸对包括虹膜载体和ASIP信号在内的图案形成模型的影响,并将其应用于斑马鱼皮肤图案的研究。我将构建一个细胞与相邻细胞相互作用并向相邻晶格位置移动的晶格排斥过程模型。将详细研究模型中关键长度尺度、系统大小和隔室大小之间的关系,以及它们对形成的图案的影响。随后,关于色素细胞相互作用的假设将被明确地编码在这个框架中,以探索该模型复制野生型和突变型鱼类模式的潜力。这些理论研究将与实验研究交替进行。在模型输出的指导下,我将生成数据来测试模型的有效性。数据将从文献和引导性实验研究中获得,我们与Rotllant和Cerda-Reverter的持续合作将是无价的。实验研究将涉及对色素细胞模式的重要属性的直接定量测量,例如,可能包括动态细胞-细胞距离和密度;配对相关函数;基因表达(例如,在皮肤样本上使用qRT-PCR);以及RT-PCR比较不同阶段的皮肤样本。
英文摘要
Considerable theoretical and experimental investigations-have prompted hypotheses that a Turing-type reaction-diffusion mechanism may be responsible for the striped pigment pattern of zebrafish. However, recent experimental studies suggest that the mechanism uses cell-cell interactions, rather than the classic pre-pattern- generating pair of interacting, diffusible ligands.Indeed, Yamanaka and Kondo (2014) have suggested that the asymmetric interactions and differential movement rates of xanthophores and melanophores - leading to escape-pursuit behaviour - can induce pattern formation. Recently a third cell type - iridophores - have also been suggested as critically important for zebrafish pattern formation. Finally, we have identified Agouti Signalling Peptide (ASIP) as a further patterning component, likely acting in parallel to the stripe-forming mechanism.Mathematical modelling has played an important role in the elucidation of zebrafish striping mechanisms. The framework typically employed to represent this phenomenon utilises deterministic continuum partial differential equations (PDEs). These two-species PDE-based models fail to capture the underlying biology appropriately for four main reasons: (i) they do not account for the fluctuations inherent in biological systems; (ii) finite cell size effects are neglected; the crucial role of (iii) iridophores and (iv) ASIP signalling are ignored.The central goal of this project is to generate a framework to investigate the effects of stochasticity and finite cell size upon pattern formation models which include iridophores and ASIP signalling, and to apply it to the study of zebrafish skin patterning.I will construct an on-lattice exclusion-process model in which cells interact with neighbours, and move to neighbouring lattice sites. A detailed investigation of the relationship between key length scales in the model, the system size and compartment size, and their impact on the patterns formed, will be carried out. Subsequently hypotheses on pigment cell interactions will be explicitly encoded in this framework to explore the potential of the model to replicate the patterns on both wild-type and mutant fish.These theoretical studies will alternate with experimental investigations. Guided by the modelling outputs, I will generate data to test the models efficacy. Data will be obtained from the literature and guided experimental studies for which our ongoing collaboration with Rotllant and Cerda-Reverter will be invaluable. Experimental studies will involve direct quantitative measurements of important properties of the pigment cell pattern, e.g. perhaps including dynamic cell-cell distances and density; pair correlation functions; gene expression (e.g. using qRT-PCR on skin samples); and RT-PCR comparing skin samples at different stages.
期刊论文(2)
专著(0)
科研奖励(0)
会议论文
DOI: 10.1002/bies.201600234
发表时间: 2017-03-01
期刊: BIOESSAYS
影响因子: 4
作者: [Kelsh, Robert N., Sosa, Karen C., Yates, Christian A.]
通讯作者: Yates, Christian A.
DOI: 10.1103/physreve.97.062104
发表时间: 2018-06-04
期刊: PHYSICAL REVIEW E
影响因子: 2.4
作者: [Gavagnin, Enrico, Owen, Jennifer P., Yates, Christian A.]
通讯作者: Yates, Christian A.
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