Department of Ecology & Evolutionary Biology, University of Arizona, Tucson, AZ, 85721, USA.
Liberal Studies, New York University, New York, NY, 10003, USA.
Nat Commun. 2020 Jun 26;11(1):3254. doi: 10.1038/s41467-020-16938-7.
Robustness against environmental fluctuations within an adaptive state should preclude exploration of new adaptive states when the environment changes. Here, we study transitions between adaptive associations of feather structure and carotenoid uptake to understand how robustness and evolvability can be reconciled. We show that feather modifications induced by unfamiliar carotenoids during a range expansion are repeatedly converted into precise coadaptations of feather development and carotenoid accommodation as populations persist in a region. We find that this conversion is underlain by a uniform and coordinated increase in the sensitivity of feather development to local carotenoid uptake, indicative of cooption and modification of the homeostatic mechanism that buffers feather growth in the evolution of new adaptations. Stress-buffering mechanisms are well placed to alternate between robustness and evolvability and we suggest that this is particularly evident in adaptations that require close integration between widely fluctuating external inputs and intricate internal structures.
在适应状态下,对环境波动的稳健性应该排除在环境变化时探索新的适应状态的可能性。在这里,我们研究羽毛结构和类胡萝卜素摄取之间适应性关联的转变,以了解稳健性和可进化性如何协调。我们表明,在种群在一个地区持续存在的过程中,范围扩张期间由不熟悉的类胡萝卜素诱导的羽毛修饰会反复转化为羽毛发育和类胡萝卜素适应的精确协同适应。我们发现,这种转化的基础是羽毛发育对当地类胡萝卜素摄取的敏感性的一致且协调的增加,表明在新适应进化过程中缓冲羽毛生长的内稳态机制的共适应和修饰。应激缓冲机制在稳健性和可进化性之间交替的位置很好,我们认为这在需要广泛波动的外部输入和复杂内部结构之间紧密整合的适应中尤为明显。