首页> 外文期刊>The Journal of Experimental Biology >Hypoxia-induced compression in the tracheal system of the tobacco hornworm caterpillar, Manduca sexta.
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Hypoxia-induced compression in the tracheal system of the tobacco hornworm caterpillar, Manduca sexta.

机译:低氧诱导的烟草天蛾幼虫气管系统受压。

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摘要

Abdominal pumping in caterpillars has only been documented during molting. Using synchrotron X-ray imaging in conjunction with high-speed flow-through respirometry, we show that Manduca sexta caterpillars cyclically contract their bodies in response to hypoxia, resulting in significant compressions of the tracheal system. Compression of tracheae induced by abdominal pumping drives external gas exchange, as evidenced by the high correlation between CO2 emission peaks and body movements. During abdominal pumping, both the compression frequency and fractional change in diameter of tracheae increased with body mass. However, abdominal pumping and tracheal compression were only observed in larger, older caterpillars (>0.2 g body mass), suggesting that this hypoxic response increases during ontogeny. The diameters of major tracheae in the thorax increased isometrically with body mass. However, tracheae in the head did not scale with mass, suggesting that there is a large safety margin for oxygen delivery in the head in the youngest animals. Together, these results highlight the need for more studies of tracheal system scaling and suggest that patterns of tracheal investment vary regionally in the body.
机译:仅在蜕皮期间才记录到毛虫的腹部抽水。使用同步加速器X射线成像结合高速流通式呼吸测定法,我们显示了Manduca sexta毛毛虫周期性地收缩身体以应对缺氧,从而导致气管系统的显着压缩。腹腔抽气引起的气管压缩驱动外部气体交换,这证明了CO 2 排放峰值与人体运动之间的高度相关性。在腹部抽气过程中,气管的压缩频率和直径的分数变化都随体重而增加。然而,仅在较大的,较老的毛毛虫(体重> 0.2 g)中观察到腹部抽气和气管压迫,表明​​这种缺氧反应在个体发育过程中增加。胸腔中主要气管的直径与体重成比例地增加。但是,头部的气管并没有随质量变化,这表明在最小的动物中,头部的氧气输送具有很大的安全裕度。总之,这些结果凸显了需要对气管系统结垢进行更多研究的必要性,并表明气管投资的方式在体内因地区而异。

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