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首页> 外文期刊>The Journal of Experimental Biology >Respiratory changes throughout ontogeny in the tobacco hornworm caterpillar, Manduca sexta
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Respiratory changes throughout ontogeny in the tobacco hornworm caterpillar, Manduca sexta

机译:烟草天蛾毛虫毛duc属个体的整个个体发育中的呼吸变化

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摘要

The respiratory system of growing caterpillars is challenged in two distinct ways as they develop from hatchlings to fifth instars preparing for pupation. First, across instars, body sizes and tracheal lengths increase substantially. Second, within each instar, animal mass can more than double while major tracheal respiratory system structures, such as spiracles and large tracheae, are fixed in size until molting. To test whether these growth processes result in a decrease in O2 delivery capacity relative to tissue oxygen needs, we exposed feeding Manduca sexta larvae of various ages to decreasing levels of atmospheric O2 and measured their metabolic rate and ability to feed. We found that near the beginning of all instars, M. sexta were able to maintain gas exchange and feed down to approximately 5 kPa O2, indicating that these insects are able to match tracheal O2 delivery to increased metabolic rates across instars. However, gas exchange and feeding of caterpillars nearing the molt were limited at much higher O2 levels (up to 15 kPa O2), suggesting that caterpillars have limited capacities to increase tracheal O2 delivery as O2 consumption rates increase within instars. It seems possible that the safety margin for O2 delivery may disappear completely in the last hours before ecdysis, providing an ultimate if not proximate explanation for the necessity of molting.
机译:成长中的毛毛虫从孵化期到准备孵化的五龄幼虫,其呼吸系统受到两种不同方式的挑战。首先,在幼龄期,体型和气管长度显着增加。其次,在每只幼虫内,动物的质量可能会增加一倍以上,而气管主要呼吸系统结构(例如气袋和大气管)的大小会固定直到蜕变。为了测试这些生长过程是否导致相对于组织氧气需求的O2传递能力下降,我们将不同年龄的饲喂Manduca sexta幼虫暴露在降低的大气O2水平下,并测量了它们的代谢率和摄食能力。我们发现,在所有幼龄期开始之前,六分体都能够维持气体交换并向大约5 kPa O2进料,这表明这些昆虫能够使气管O2传递与新龄期的新陈代谢速率相匹配。但是,在高得多的O2水平(高达15 kPa O2)下,接近蜕皮的毛虫的气体交换和进食受到限制,这表明随着幼虫中O2消耗率的增加,毛虫增加气管O2输送的能力有限。 O 2输送的安全裕度似乎可能在蜕皮前的最后几个小时内完全消失,从而为蜕皮的必要性提供了最终的解释。

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