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食果蝠(叶口蝠科)飞行能力的种内尺度关系

Intraspecific scaling of flight power in the bat Glossophaga soricina (Phyllostomidae).

作者信息

Voigt C C

机构信息

Institut für Zoologie II, Universität Erlangen-Nürnberg, Germany.

出版信息

J Comp Physiol B. 2000 Sep;170(5-6):403-10. doi: 10.1007/s003600000117.

DOI:10.1007/s003600000117
PMID:11083523
Abstract

Aerodynamic theory predicts that power output during flight should vary with body mass by an exponent of 1.56 when wing morphology remains constant (within an individual), and by an exponent of 1.19 when wing morphology changes with body mass (within a species or between species). I tested these predictions by estimating the power input during horizontal flight in three pregnant and two subadult Glossophaga soricina using a multivariate regression model. This analysis yielded power input during resting and flight as well as the energetic equivalent of change in body mass. A comparison of the estimated flight power for pregnant G. soricina, with published data on flight power of nonpregnant adults, revealed that energy turnover in flight is highest for pregnant G. soricina. Flight power of a 13-g pregnant G. soricina was even higher than that of a 16-g non-pregnant Glossophaga longirostris. A least-squares regression analysis yielded the following equations for the intraspecific scaling of flight power with body mass: power input during horizontal flight (Pf) = 24099 body mass (bm; kg)2.15 (r2 = 0.97) for the intra-individual allometry (pregnancy) and Pf = 113 bm(kg)0.95 (r2 = 0.99) for the inter-individual allometry (ontogeny). Both mass exponents are not significantly different from the predicted values for the scaling relationship of flight power within an individual (1.56) and within a species (1.19). This is the first measurement of power input during flight for subadult and pregnant bats.

摘要

空气动力学理论预测,当翅膀形态保持不变(在个体内部)时,飞行过程中的功率输出应随体重以1.56的指数变化;当翅膀形态随体重变化(在一个物种内部或不同物种之间)时,功率输出应随体重以1.19的指数变化。我通过使用多元回归模型估计三只怀孕和两只亚成年的索氏长舌蝠在水平飞行过程中的功率输入,来检验这些预测。该分析得出了休息和飞行期间的功率输入以及体重变化的能量当量。将怀孕的索氏长舌蝠的估计飞行功率与已发表的非怀孕成年个体的飞行功率数据进行比较,发现怀孕的索氏长舌蝠飞行时的能量转换最高。一只13克重的怀孕索氏长舌蝠的飞行功率甚至高于一只16克重的非怀孕长吻长舌蝠。最小二乘回归分析得出了以下关于飞行功率与体重的种内缩放方程:对于个体内异速生长(怀孕),水平飞行期间的功率输入(Pf)= 24099体重(bm;千克)^2.15(r2 = 0.97);对于个体间异速生长(个体发育),Pf = 113 bm(千克)^0.95(r2 = 0.99)。两个质量指数与个体内部(1.56)和物种内部(1.19)飞行功率缩放关系的预测值均无显著差异。这是首次对亚成年和怀孕蝙蝠飞行期间的功率输入进行测量。

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