首页> 外文期刊>Naturwissenschaften >Hot-blooded singers: endothermy facilitates crepuscular signaling in African platypleurine cicadas (Hemiptera: Cicadidae: Platypleura spp.)
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Hot-blooded singers: endothermy facilitates crepuscular signaling in African platypleurine cicadas (Hemiptera: Cicadidae: Platypleura spp.)

机译:热血的歌手:吸热促进非洲platypleurine蝉(半翅目:蝉科:Platypleura spp。)的肌间信号传递。

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摘要

The cicada genus Platypleura has a wide distribution across Africa and southern Asia. We describe endothermic thermoregulation in four South African species that show crepuscular signaling behavior. This is the first evidence of thermoregulation in platypleurine cicadas. Field measurements of body temperature (T b) show that these animals regulate T b through endogenous heat production. Maximum T b measured was 22.1°C above ambient temperature during calling activity at dusk. The mean T b during dusk activity did not differ from the mean T b during diurnal activity. A unique behavior for cicadas, a temperature-dependent telescoping pulsation of the abdomen, was observed in the laboratory during endogenous warm-up. This behavior is part of a unique method of heat generation in endothermic cicadas. Males generally call from trunks and branches within the canopy and appear to use endothermy even when the sun is available to elevate T b. Endothermy may provide the cicadas with the advantage of decreasing predation and acoustic competition by permitting calling from perches that most complement their cryptic coloration patterns and that ectotherms cannot use due to thermal constraints. In addition, endothermy may permit calling activity during crepuscular hours when atmospheric conditions are optimal for acoustic communication and predation risks are minimal.
机译:蝉属Platypleura在非洲和南亚分布广泛。我们描述了在四个南非物种中表现出吸热性温度调节,这些物种表现出黄昏信号传导行为。这是在平胸蝉中调温的第一个证据。体温(T b )的现场测量表明,这些动物通过内源性热量产生来调节T b 。黄昏通话期间测得的最高T b 比环境温度高22.1°C。黄昏活动期间的平均T b 与昼夜活动期间的平均T b 没有差异。在实验室内源性热身期间,观察到蝉的独特行为,即随温度变化的腹部伸缩脉动。这种行为是吸热蝉产生热量的独特方法的一部分。雄性通常从树冠内的树干和树枝呼唤,甚至在有阳光可以升高Tb的情况下似乎也使用吸热法。吸热可以通过允许栖息地进行呼叫来给蝉鸣提供减少捕食和声学竞争的优势,这些栖息地最能补充其隐秘的着色模式,并且由于温度的限制而无法使用等温线。另外,当大气条件最适合声学交流且捕食风险极低时,吸热可能会在夜间进行呼叫活动。

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