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首页> 外文期刊>Physiological Entomology >Rates of metabolism in diapausing and reproductively active tropical butterflies, Euploea core and Euploea sylvester (Lepidoptera: Nymphalidae).
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Rates of metabolism in diapausing and reproductively active tropical butterflies, Euploea core and Euploea sylvester (Lepidoptera: Nymphalidae).

机译:滞育和繁殖活跃的热带蝴蝶,大叶plo核和大叶Eu(鳞翅目:y科)的代谢率。

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摘要

Although the ecology of diapause has been widely studied in the field, the underlying physiological responses occurring in tropical diapausing insects remain virtually unexplored. This is especially the case with rates of respiration in diapausing tropical insect species. The present study compares rates of metabolism, as assessed by measurement of carbon dioxide production, between two species of diapausing and reproductively active tropical butterflies, Euploea core (W.S Macleay) and Euploea sylvester (Fabricius), independent of temperature. Measurement of metabolism over a day-timeight-time regime confirms that these tropical butterflies display a diurnal rhythm in accordance with many other tropical and temperate insect species, regardless of developmental state. In addition, diapausing Euploea butterflies display rates of carbon dioxide production only 28% lower than those of reproductively active butterflies, and can terminate diapause within days of receiving the correct cues. Maintaining a similar metabolic rate throughout diapause, as well as a rapid termination of diapause, would enable these tropical butterflies to respond immediately to larval host plant resources, without the disadvantage of missing optimum conditions, allowing the species to maximize their reproductive potential..
机译:尽管滞育的生态学已在该领域进行了广泛研究,但实际上在热带滞育昆虫中发生的潜在生理反应仍未得到开发。滞育热带昆虫物种的呼吸速率尤其如此。本研究比较了两种具滞育和繁殖活性的热带蝴蝶Euploea core(W.S Macleay)和Euploea sylvester(Fabricius)之间的代谢速率,该速率通过测量二氧化碳的产生来评估,与温度无关。在白天/夜间进行的新陈代谢测量结果证实,这些热带蝴蝶与许多其他热带和温带昆虫物种一样,无论发育状态如何,其昼夜节律都与日俱增。此外,滞育性Euploea蝴蝶的二氧化碳生成率仅比繁殖活跃的蝴蝶低28%,并且可以在收到正确提示后几天内停止滞育。在整个滞育期保持相似的代谢率,并迅速终止滞育,将使这些热带蝴蝶能够立即对幼虫寄主植物资源作出反应,而不会失去最佳条件的缺点,从而使该物种能够最大程度地繁殖。

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