Pronych S, Wassersug R
Department of Anatomy and Neurobiology, Dalhousie University, Halifax, Canada.
Can J Zool. 1994;72:738-43. doi: 10.1139/z94-099.
Shortly after hatching, Xenopus laevis tadpoles fill their lungs with air. We examined the role played by early lung use in these organisms, since they are able to respire with both their lungs and their gills. We investigated the effect on X. laevis development when the larvae were prevented from inflating their lungs, and whether early lung use influenced the size of the lungs or the tadpole's ability to metamorphose. Tadpoles that were denied access to air had lungs one-half the size of those of controls. This difference in lung size was too large to be explained merely by a stretching of the lung due to inflation. The longer tadpoles were denied access to air, the longer they took to metamorphose, and their probability of completing metamorphosis diminished. One tadpole raise throughout its larval life without access to air successfully metamorphosed but had abnormal, solidified lungs and an enlarged heart. Collectively, these experiments demonstrate that early lung use in tadpoles is important in determining both ultimate lung size and the probability of successfully metamorphosing. Lung use during early larval development in X. laevis is not absolutely necessary for survival through metamorphosis, but its absence severely handicaps growth.
非洲爪蟾蝌蚪孵化后不久,就会用空气充满肺部。由于这些生物能够通过肺部和鳃进行呼吸,我们研究了早期肺部使用在它们身上所起的作用。我们研究了阻止幼虫扩张肺部对非洲爪蟾发育的影响,以及早期肺部使用是否会影响肺部大小或蝌蚪的变态能力。无法接触空气的蝌蚪,其肺部大小只有对照组的一半。肺部大小的这种差异太大,不能仅仅用因充气导致的肺部拉伸来解释。蝌蚪被剥夺接触空气的时间越长,变态所需的时间就越长,完成变态的概率也会降低。有一只蝌蚪在整个幼体期都无法接触空气,它成功变态,但肺部异常固化且心脏肿大。总的来说,这些实验表明,蝌蚪早期使用肺部对于确定最终肺部大小和成功变态的概率都很重要。非洲爪蟾幼体早期发育期间使用肺部对于变态存活并非绝对必要,但缺乏肺部使用会严重阻碍生长。