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多代图灵模型再现杂种拟南芥中转位花瓣斑点表型。

A Multigenerational Turing Model Reproduces Transgressive Petal Spot Phenotypes in Hybrid Mimulus.

机构信息

Department of Applied Science, William & Mary, Williamsburg, VA, 23187, USA.

Department of Biology, Whitman College, Walla Walla, WA, 99362, USA.

出版信息

Bull Math Biol. 2023 Nov 1;85(12):120. doi: 10.1007/s11538-023-01223-7.

Abstract

The origin of phenotypic novelty is a perennial question of genetics and evolution. To date, few studies of biological pattern formation specifically address multi-generational aspects of inheritance and phenotypic novelty. For quantitative traits influenced by many segregating alleles, offspring phenotypes are often intermediate to parental values. In other cases, offspring phenotypes can be transgressive to parental values. For example, in the model organism Mimulus (monkeyflower), the offspring of parents with solid-colored petals exhibit novel spotted petal phenotypes. These patterns are controlled by an activator-inhibitor gene regulatory network with a small number of loci. Here we develop and analyze a model of hybridization and pattern formation that accounts for the inheritance of a diploid gene regulatory network composed of either homozygous or heterozygous alleles. We find that the resulting model of multi-generational Turing-type pattern formation can reproduce transgressive petal phenotypes similar to those observed in Mimulus. The model gives insight into how non-patterned parent phenotypes can yield phenotypically transgressive, patterned offspring, aiding in the development of empirically testable hypotheses.

摘要

表型新颖性的起源是遗传学和进化的一个长期问题。迄今为止,很少有研究专门探讨生物模式形成的多代遗传和表型新颖性方面。对于受许多分离等位基因影响的数量性状,后代的表型通常介于亲本表型之间。在其他情况下,后代的表型可能超出亲本表型。例如,在模式生物双色金鱼草(monkeyflower)中,双亲具有纯色花瓣的后代表现出新颖的斑点花瓣表型。这些图案受少数基因座的激活剂-抑制剂基因调控网络控制。在这里,我们开发并分析了一个杂交和模式形成的模型,该模型考虑了由纯合或杂合等位基因组成的二倍体基因调控网络的遗传。我们发现,由此产生的多代图灵型模式形成模型可以再现类似于在双色金鱼草中观察到的特化花瓣表型。该模型深入了解了无图案亲本表型如何产生表型特化的图案后代,有助于发展可通过经验检验的假设。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7f2d/10620303/82639afbfea4/11538_2023_1223_Fig1_HTML.jpg

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