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Postnatal lung and metabolic development in two marsupial and four eutherian species

机译:两种有袋动物和四种优色林动物的产后肺和代谢发育

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摘要

Two marsupial species (Monodelphis domestica, Macropus eugenii) and four eutherian species (Mesocricetus auratus, Suncus murinus, Tupaia belangeri and Cavia aperea) were examined to compare and contrast the timing of lung and metabolic development during the postnatal maturation of the mammalian respiratory apparatus. Using light, scanning and transmission electron microscopy, the lung structural changes were correlated with indirect calorimetry to track the metabolic development. Marsupial and eutherian species followed the same pattern of mammalian lung development, but differed in the developmental pace. In the two newborn marsupial species, the lung parenchyma was at the early terminal sac stage, with large terminal air sacs, and the lung developed slowly. In contrast, the newborn eutherian species had more advanced lungs at the late terminal sac stage in altricial species (M. auratus, S. murinus) and at the alveolar stage in precocial species (T. belangeri, C. aperea). Postnatal lung development proceeded rapidly in eutherian species. The marsupial species had a low metabolic rate at birth and achieved adult metabolism late in postnatal development. In contrast, newborn eutherian species had high metabolic rates and reached adult metabolism during the first week of life. The time course of the metabolic development is thus tightly linked to the structural differentiation of the lungs and the timing of postnatal lung development. These differences in the neonatal lung structure and the timing of postnatal lung maturation between marsupial and eutherian species reflect their differing reproductive strategies.
机译:检查了两个有袋动物(Monodelphis domestica,EugeneMacropus eugenii)和四个真人动物(Mesocricetus auratus,Suncus murinus,Tupaia belangeri和Cavia aperea),以比较和对比哺乳动物呼吸器产后成熟期间肺和代谢发育的时间。使用光,扫描和透射电子显微镜,将肺结构变化与间接量热法相关联以追踪代谢发展。有袋动物和真人动物遵循相同的哺乳动物肺部发育模式,但发育速度不同。在这两个新生有袋动物中,肺实质处于末端囊早期,末端囊较大,肺发育缓慢。与此相反,新生的欧亚种在阿尔萨斯物种(金头鲷,沙门氏菌)的晚期囊末期和早交物种(贝里盖里角藻,猿猴)的肺泡期具有更高的肺部。产后肺的发育在以欧亚种中迅速进行。有袋动物在出生时代谢率低,并在产后发育后期达到成年代谢。相比之下,新生的欧亚种具有较高的代谢率,并在生命的第一周达到了成年人的代谢。因此,代谢发育的时间过程与肺的结构分化和产后肺发育的时间紧密相关。有袋动物和真人动物之间的新生儿肺结构和产后肺成熟时间的差异反映了它们不同的生殖策略。

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