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Multimodal signaling in fiddler crab: waving to attract mates is condition-dependent but other sexual signals are not

机译:Fiddler Crab中的多模式信令:挥舞着吸引伴侣是条件相关的,但其他性信号不是

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Many animals utilize multimodal signals for mate attraction and courtship. Each one of these signals could possibly provide information to receivers about aspects of the sender’s quality. Demonstrating condition-dependence of each of the multiple signals may shed light on which are related to the sender’s quality. This is because condition-dependence can reliably convey the sender’s quality due to the costs associated with signal production; only males in good condition are able to pay the costs of producing the signal. Male fiddler crabs use multimodal signals to attract females from a distance (they build semidomes and produce attraction waves) and for courting the females once they have approached (they produce courtship waves and substrate vibrations). Here, we investigate condition-dependence of the multimodal signals produced by the fiddler crab Austruca lactea . We manipulated the food levels of focal crabs (added food, control, removed food) for approximately 2?weeks in the field. We then compared the intensity of the male’s signals and the male’s blood lactate level. We found that the number of attraction waves significantly differed among treatments; the number of the waves increased with food availability. Blood lactate concentration also increased in the food-addition treatment. However, other signal traits were not significantly affected by the level of food available. These results suggest that adding food facilitated an increase in the male’s ability to produce attraction waves, and this would impose higher energy costs. In this species, only attraction waving reflects male nutritional condition and so could potentially be used by females to distinguish between low- and high-quality males. Significant statement Animals often employ multimodal signals for mating. Here, we examine whether each of the multimodal signals is dependent on male condition in Austruca lactea . We compared the intensity of their multimodal signals, i.e., semidome, attraction waving, courtship waving, and vibration, among three nutritional treatments (food-addition, control, food-removal). Energy costs were additionally estimated by measuring blood lactate level. The number of attraction waves and the blood lactate level increased in food-adding treatment, while the frequency of semidome construction, rate of courtship waving, and pulse interval in vibrations were not influenced by nutritional condition. This suggests that additional food improved male condition and increased the number of attraction waving. Only attraction waving potentially conveys information about the male nutritional quality. Attraction waves could potentially be used by females to distinguish between low- and high-quality males.
机译:许多动物利用多模态信号来吸引配偶和求爱。这些信号中的每一个都可能向接收者提供有关发送者质量方面的信息。证明多个信号中每一个信号的条件依赖性可以揭示哪些信号与发送者的质量有关。这是因为由于与信号产生相关的成本,条件依赖可以可靠地传递发送者的质量;只有身体状况良好的男性才能支付产生信号的费用。雄性招潮蟹使用多模态信号从远处吸引雌性(它们建造半圆顶并产生吸引波),并在接近雌性后求偶(它们产生求偶波和基底振动)。在这里,我们研究了由招潮蟹Austruca lactea产生的多峰信号的条件依赖性。我们控制焦点螃蟹的食物水平(添加食物、控制、移除食物)大约2分钟?几周的野外训练。然后我们比较了男性的信号强度和男性的血乳酸水平。我们发现,不同处理的吸引波数量存在显著差异;海浪的数量随着食物的供应而增加。在食物添加处理中,血乳酸浓度也增加。然而,其他信号特征不受可用食物水平的显著影响。这些结果表明,添加食物有助于提高男性产生吸引波的能力,这会增加能量消耗。在这个物种中,只有吸引力波动反映了男性的营养状况,因此女性可能会利用吸引力波动来区分低质量和高质量的男性。重要声明动物通常使用多模态信号进行交配。在这里,我们检查是否每一个多模信号是依赖于男性的条件下,在澳洲乳菇。我们比较了三种营养疗法(添加食物、控制食物、去除食物)的多峰信号强度,即半圆顶、吸引波动、求爱波动和振动。此外,还通过测量血乳酸水平来估算能源成本。在添加食物的处理中,吸引波的数量和血乳酸水平增加,而半圆结构的频率、求偶波的频率和振动的脉冲间隔不受营养条件的影响。这表明,额外的食物改善了男性的健康状况,增加了挥舞吸引力的次数。只有吸引力才能传递男性营养品质的信息。吸引波可能被雌性用来区分低质量和高质量的雄性。

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