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Developmental evolution of sexual ornamentation: model and a test of feather growth and pigmentation

机译:性装饰的发展演变:羽毛生长和色素沉着的模型和测试

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A tremendous diversity of avian color displays has stimulated numerous studies of natural and sexual selection. Yet, the developmental mechanisms that produce such diversification, and thus the proximate targets of selection pressures, are rarely addressed and poorly understood. In particular, because feathers are colored during growth, the dynamics of feather growth play a deterministic role in the variation in ornamentation. No study to date, however, has addressed the contribution of feather growth to the expression of carotenoid-based ornamentation. Here, we examine the developmental basis of variation in ornamental feather shapes in male house finches (Carpodacus mexicanus)—a species in which carotenoid displays are under strong natural and sexual selection. First, we use geometric morphometrics to partition the observed shape variation in fully grown feathers among populations, ages, degrees of elaboration, ornamental body parts, and individuals. Second, we use a biologically informed mathematical model of feather growth to predict variation in shape of ornamental feathers due to simulated growth rate, angle of helical growth of feather barbs, initial number of barb ridges, rate of addition of new barbs, barb diameter, and ramus-expansion angle. We find close concordance between among-individual variation in feather shape and hue of entire ornament, and show that this concordance can be attributed to a shared mechanism—growth rate of feather barbs. Predicted differences in feather shape due to rate of addition of barbs and helical angle of feather growth explained observed variation in ornamental area both among individuals and between populations, whereas differences in helical angle of growth and the number of barbs in the feather follicle explained differences in feather shape between ornamental parts and among males of different ages. The findings of a close association of feather growth dynamics and overall ornamentation identify the proximate targets of selection for elaboration of sexual displays. Moreover, the close association of feather growth and pigmentation not only can reinforce condition-dependence in color displays, but can also enable phenotypic and genetic accommodation of novel pigments into plumage displays providing a mechanism for the observed concordance of within-population developmental processes and between-population diversification of color displays.
机译:鸟类色彩显示的巨大多样性激发了许多关于自然和性选择的研究。然而,产生这种多样化的发展机制,以及因此产生的选择压力的目标,很少得到解决,人们对此知之甚少。特别是,由于羽毛在生长过程中会着色,因此羽毛生长的动力学在装饰变化中起决定性作用。然而,迄今为止,尚无研究探讨羽毛生长对基于类胡萝卜素的装饰物表达的贡献。在这里,我们研究了雄性家雀(Carpodacus mexicanus)中观赏羽毛形状变化的发展基础。该物种中的类胡萝卜素展示受到强烈的自然和有性选择。首先,我们使用几何形态计量学将完全生长的羽毛中观察到的形状变化划分为种群,年龄,精细程度,装饰性身体部位和个体。其次,我们使用生物学上已知的羽毛生长数学模型来预测由于模拟生长速率,羽毛倒刺的螺旋生长角度,倒刺脊的初始数量,新倒刺的添加速度,倒刺直径,和ramus扩展角。我们发现羽毛形状的个体差异与整个装饰物的色调之间存在紧密的一致性,并表明这种一致性可以归因于一种共同的机制-羽毛倒钩的生长速度。由于倒钩的添加速度和羽毛生长的螺旋角而导致的羽毛形状的差异解释了个体之间和种群之间观察到的装饰区域的变化,而螺旋生长角的差异和羽毛囊中倒钩的数量解释了差异。观赏部分之间以及不同年龄男性之间的羽毛形状。羽毛生长动力学和整体装饰的紧密联系的发现确定了拟定性展示的最接近选择目标。此外,羽毛的生长和色素沉着的紧密联系不仅可以增强彩色显示器中的条件依赖性,而且还可以使新色素的表型和遗传适应进入羽毛显示器,从而为观察到的种群内发育过程之间和之间的一致性提供了一种机制。 -彩色显示器的人口多样化。

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