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首页> 外文期刊>Comparative biochemistry and physiology, Part A. Molecular and integrative physiology >Development of maximum metabolic rate and pulmonary diffusing capacity in the superprecocial Australian Brush Turkey Alectura lathami: An allometric and morphometric study
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Development of maximum metabolic rate and pulmonary diffusing capacity in the superprecocial Australian Brush Turkey Alectura lathami: An allometric and morphometric study

机译:超前性澳大利亚刷土耳其Alectura lathami的最大代谢率和肺扩散能力的发展:异速测量和形态学研究

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The Australian Brush Turkey Alectura lathami is a member of the Megapodiidae, the mound-building birds that produce totally independent, "superprecocial" hatchlings. This study examined the post-hatching development of resting and maximal metabolic rates, and the morphometrically determined changes in pulmonary gas exchange anatomy, in chicks during 3.7 months of growth from hatchlings (122 g) to subadults (1.1 kg). Allometric equations of the form y=aM(b) related gas exchange variables (y) to body mass (M, g). Metabolic rates were measured with open-flow respirometry (mL O-2 min(-1)) of chicks resting in the dark and running above the aerobic limit on a treadmill. Resting metabolic rate (RMR=0.02 M-0.99) and maximal metabolic rate (MMR=0.05 M-1.07) scaled with exponents significantly above those of interspecific allometries of adult birds. However MMR was below that expected for other species of adult birds in flapping flight, consistent with the Brush Turkey's ground-dwelling habits. Total lung volumes (mL) increased faster than isometrically (V-L=0.0075 M-1.19), as did the surface area (cm(2)) of the blood-gas ;barrier (S-t = 7.80 M-1.23), but the data overlapped those of adult species. Harmonic mean thickness of the blood-gas barrier was independent of body size (mean tau(ht), = 0.39 mu m) and was about twice that expected for flying birds. Diffusing capacity (mL O-2 min(-1) kPa(-1)) of the blood-gas tissue barrier increased faster than isometrically (DtO2 = 0-049 M-1.23); in hatchling Brush Turkeys, it was about 30% expected for adult birds, but this difference disappeared when they became subadults. When compared to altricial Australian pelicans that hatch at similar body masses, superprecocial Brush Turkeys had higher MMR and higher DtO2 at the same body size. A parallel allometry between MMR and DtO2 in Brush Turkeys and pelicans is consistent with the concept of symmorphosis during development. (C) 2006 Elsevier Inc. All rights reserved.
机译:澳大利亚刷土耳其Alectura lathami是Megapodiidae的成员,Megapodiidae是筑土丘的鸟类,它们产生完全独立的“超早熟”幼体。这项研究检查了孵化后雏鸡从孵化(122 g)到亚成体(1.1 kg)的3.7个月生长过程中的静止和最大代谢率的发展,以及形态学确定的肺气体交换解剖结构的变化。形式为y = aM(b)的异形方程将气体交换变量(y)与体重(M,g)相关。用开放式呼吸测定法(mL O-2 min(-1))在黑暗中休息并在跑步机上跑到有氧极限以上的小鸡测量代谢率。静息代谢率(RMR = 0.02 M-0.99)和最大代谢率(MMR = 0.05 M-1.07)与成年鸟种间异源异形体的指数显着相关。然而,MMR低于扑翼飞行中其他成年鸟类的预期水平,这与Brush Brush的地面居住习惯一致。总肺体积(mL)的增加快于等轴测图(VL = 0.0075 M-1.19),以及血气的表面积(cm(2));屏障(St = 7.80 M-1.23),但数据重叠成年物种的那些。血气屏障的谐波平均厚度与身体大小无关(平均tau(ht)= 0.39微米),约为飞行鸟类预期的两倍。血气组织屏障的扩散能力(mL O-2 min(-1)kPa(-1))比等轴测图增加的速度更快(DtO2 = 0-049 M-1.23);在“ Brush Turkeys”孵化场中,成年鸟类的期望值约为30%,但是当它们成为亚成体时,这种差异就会消失。与在相似体重下孵化的澳大利亚鹈鹕相比,超早熟刷火鸡在相同体重下具有较高的MMR和较高的DtO2。毛笔火鸡和鹈鹕中MMR和DtO2之间的平行异构与发育过程中的同构概念一致。 (C)2006 Elsevier Inc.保留所有权利。

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