Lease Hilary M, Wolf Blair O, Harrison Jon F
Department of Biology, University of New Mexico, Albuquerque, 87131, USA.
J Exp Biol. 2006 Sep;209(Pt 17):3476-83. doi: 10.1242/jeb.02343.
The volume of a tracheal system influences breath-holding capacity and provides an index of an insect's investment in its respiratory system. Here, we describe a new, generally applicable method to measure tracheal volume that enables repeatable determinations on live animals. Animals are isolated in a closed chamber of a known volume and equilibrated with a helium:oxygen gas mixture. The chamber is then rapidly flushed with a nitrogen:oxygen gas mixture to eliminate the helium surrounding the animal, and sealed. After a period of time sufficient to allow equilibration of helium between tracheal system and chamber air, a gas sample is taken from the chamber, and tracheal volumes are calculated from the helium content of the sample, using a gas chromatograph. We show that relative investment in the tracheal system increases with age/size in the grasshopper; tracheal volume scales with mass to the power 1.3. This increased proportional investment in the tracheal system provides a mechanistic basis for the enhanced respiratory capacity of older grasshoppers. Tracheal volumes decrease strongly as grasshoppers grow within an instar stage, explaining reduced safety margins for oxygen delivery. Finally, tracheal volumes are smaller in gravid females than males, probably due to compression of air sacs by eggs.
气管系统的容积会影响屏气能力,并为昆虫在呼吸系统方面的投入提供一个指标。在此,我们描述了一种新的、普遍适用的测量气管容积的方法,该方法能够对活体动物进行可重复的测定。将动物隔离在一个已知容积的密闭腔室中,并用氦气:氧气混合气体使其达到平衡。然后用氮气:氧气混合气体迅速冲洗该腔室,以去除动物周围的氦气,再将其密封。经过一段足以使气管系统与腔室空气中的氦气达到平衡的时间后,从腔室中采集气体样本,并使用气相色谱仪根据样本中的氦含量计算气管容积。我们发现,蚱蜢气管系统的相对投入随年龄/体型的增长而增加;气管容积与质量的关系呈幂指数为1.3的比例。气管系统中这种增加的比例投入为老年蚱蜢呼吸能力增强提供了一个机制基础。在若虫阶段,随着蚱蜢的生长,气管容积会大幅减小,这解释了氧气输送安全边际的降低。最后,怀孕雌性的气管容积比雄性小,这可能是由于卵对气囊的挤压所致。