Biology Department, Organismic and Evolutionary Biology Graduate Program, University of Massachusetts, Amherst, Massachusetts, USA.
Biology Department, Morrill Science Center, University of Massachusetts, Amherst, Massachusetts, USA.
Evol Dev. 2022 Aug;24(3-4):109-124. doi: 10.1111/ede.12409. Epub 2022 Jul 18.
The developmental process establishes the foundation upon which natural selection may act. In that same sense, it is inundated with numerous constraints that work to limit the directions in which a phenotype may respond to selective pressures. Extreme phenotypes have been used in the past to identify tradeoffs and constraints and may aid in recognizing how alterations to the Baupläne can influence the trajectories of lineages. The Bramidae, a family of Scombriformes consisting of 20 extant species, are unique in that five species greatly deviate from the stout, ovaloid bodies that typify the bramids. The Ptericlinae, or fanfishes, are instead characterized by relatively elongated body plans and extreme modifications to their medial fins. Here, we explore the development of Bramidae morphologies and examine them through a phylogenetic lens to investigate the concepts of developmental and evolutionary constraints. Contrary to our predictions that the fanfishes had been constrained by inherited properties of an ancestral state, we find that the fanfishes exhibit both increased rates of trait evolution and differ substantially from the other bramids in their developmental trajectories. Conversely, the remaining bramid genera differ little, both among one another and in comparison, to the sister family Caristiidae. In all, our data suggest that the fanfishes have broken constraints, thereby allowing them to mitigate trade-offs on distinctive aspects of morphology.
发育过程为自然选择可能产生的作用奠定了基础。从同样的意义上说,它充满了许多限制因素,这些限制因素限制了表型对选择压力的反应方向。极端表型过去曾被用来识别权衡和限制因素,并可能有助于识别对 Baupläne 的改变如何影响谱系的轨迹。Bramidae 是鲭形目(Scombriformes)的一个科,由 20 个现存物种组成,其独特之处在于,有 5 个物种的身体与典型的 Bramidae 一样粗壮、椭圆形的身体有很大的不同。Ptericlinae 或 fanfishes 的特征是相对细长的身体计划和对它们的中间鳍的极端修改。在这里,我们探索 Bramidae 形态的发育,并通过系统发育的视角来检查它们,以研究发育和进化限制的概念。与我们预测的 fanfishes 受到祖先状态遗传特性的限制相反,我们发现 fanfishes 表现出更高的特征进化率,并且在其发育轨迹上与其他 Bramidae 有很大的不同。相反,其余的 Bramidae 属彼此之间以及与姐妹科 Caristiidae 相比,差异很小。总之,我们的数据表明,fanfishes 已经打破了限制,从而使它们能够减轻在形态独特方面的权衡。