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Developmental control of convergent floral pigmentation across evolutionary timescales

机译:进化时间尺度的会聚花卉色素沉着的发育控制

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Abstract Background Convergent phenotypic evolution has been widely documented across timescales, from populations, to species, to major lineages. The extent to which convergent phenotypes arise from convergent genetic and developmental mechanisms remains an open question, although studies to‐date reveal examples of both similar and different underlying mechanisms. This variation likely relates to a range of factors, including the genetic architecture of the trait and selective filtering of mutations over time. Here we focus on floral pigmentation, and examine the degree of developmental convergence between white‐flowered lineages and white morphs within pigmented species. Results Using the model clade Iochrominae, we find that white morphs and white‐flowered species are biochemically convergent, sharing an absence of colorful anthocyanin pigments. Regression analyses suggest that the expression levels of upstream genes are the strongest drivers of total pigmentation across species, although white species also show sharp down‐regulation of the downstream genes. The white morphs do not share this pattern and present overall expression profiles more similar to the pigmented species. Conclusions These results suggest that the mechanisms underlying variation within populations differ from those which give rise to fixed differences between species. Future work will aim to uncover the genetic changes responsible for this developmental non‐convergence.
机译:摘要背景收敛表型进化已被广泛记录到主要谱系中的时间尺度,从群体到物种。收敛表型从收敛遗传和发育机制产生的程度仍然是一个开放的问题,尽管研究迄今为止揭示了类似和不同的潜在机制的例子。这种变化可能涉及一系列因素,包括特征的遗传架构和随时间的突变选择性滤波。在这里,我们专注于花卉色素沉着,并在着色物种中检查白花谱系和白色变形之间的发育收敛程度。结果采用模型湿地伊莫纳胺,我们发现白色变形和白花物种是生物化学地收敛,共享缺乏多彩的花青素颜料。回归分析表明上游基因的表达水平是物种中总色素沉着的最强驱动因素,尽管白色物种也显示出下游基因的急剧下调。白色变形不共享这种模式,并呈现与着色物种更类似于颜料的整体表达曲线。结论这些结果表明,人群内部变异的机制不同于那些导致物种之间的固定差异的机制。未来的工作旨在揭示负责这种发展非收敛性的遗传变化。

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