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Variation of anal fin egg-spots along an environmental gradient in a haplochromine cichlid fish

机译:肛门蛋白蛋壳在Haplochromine CICHLID鱼中的环境梯度变化

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摘要

Male secondary sexual traits are targets of inter- and/or intrasexual selection, but can vary due to a correlation with life-history traits or as by-product of adaptation to distinct environments. Trade-offs contributing to this variation may comprise conspicuousness toward conspecifics versus inconspicuousness toward predators, or between allocating resources into coloration versus the immune system. Here, we examine variation in expression of a carotenoid-based visual signal, anal-fin egg-spots, along a replicate environmental gradient in the haplochromine cichlid fish Astatotilapia burtoni. We quantified egg-spot number, area, and coloration; applied visual models to estimate the trait's conspicuousness when perceived against the surrounding tissue under natural conditions; and used the lymphocyte ratio as a measure for immune activity. We find that (1) males possess larger and more conspicuous egg-spots than females, which is likely explained by their function in sexual selection; (2) riverine fish generally feature fewer but larger and/or more intensely colored egg-spots, which is probably to maintain signal efficiency in intraspecific interactions in long wavelength shifted riverine light conditions; and (3) egg-spot number and relative area correlate with immune defense, suggesting a trade-off in the allocation of carotenoids. Taken together, haplochromine egg-spots feature the potential to adapt to the respective underwater light environment, and are traded off with investment into the immune system.
机译:男性中学性状是间接和/或胃部选择的目标,但由于与寿命历史特征的相关性或作为适应不同环境的副产物的相关性而有所不同。促进这种变化的权衡可能包括对捕食者的抗遍性的显着性,或者将资源分配给着色与免疫系统之间。在这里,我们研究了沿Haplochromine CiChlid鱼类Astatotilapia Burtoni的复制环境梯度表达基于类动物素的视觉信号,肛门翅片斑点的变化。我们量化了蛋清数量,面积和着色;应用视觉模型以在自然条件下对周围组织感染时估计特征的显着性;并使用淋巴细胞比例作为免疫活性的措施。我们发现(1)男性比女性更大,更为显着的卵子斑,这可能通过其在性选择中的功能解释; (2)河流鱼通常具有更少但更大和/或更强烈的鸡蛋斑,这可能是在长波长移位的河流光线条件下保持信号效率。 (3)蛋清斑数和相对区域与免疫防御相关,表明在类胡萝卜素的分配中进行权衡。携带在一起,Haplochromine蛋点具有适应各自的水下光环境的可能性,并在投资中交易到免疫系统。

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