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飞行脊椎动物的消化适应性:较高的肠道细胞旁吸收弥补了较小的肠道。

The digestive adaptation of flying vertebrates: high intestinal paracellular absorption compensates for smaller guts.

作者信息

Caviedes-Vidal Enrique, McWhorter Todd J, Lavin Shana R, Chediack Juan G, Tracy Christopher R, Karasov William H

机构信息

Laboratorio de Biología "Prof. E. Caviedes Codelia," Facultad de Ciencias Humanas, and Departamento de Bioquímica y Ciencias Biológicas, Universidad Nacional de San Luís-Consejo Nacional de Investigaciones Científicas y Técnicas, 5700 San Luis, Argentina.

出版信息

Proc Natl Acad Sci U S A. 2007 Nov 27;104(48):19132-7. doi: 10.1073/pnas.0703159104. Epub 2007 Nov 19.

Abstract

Anecdotal evidence suggests that birds have smaller intestines than mammals. In the present analysis, we show that small birds and bats have significantly shorter small intestines and less small intestine nominal (smooth bore tube) surface area than similarly sized nonflying mammals. The corresponding >50% reduction in intestinal volume and hence mass of digesta carried is advantageous because the energetic costs of flight increase with load carried. But, a central dilemma is how birds and bats satisfy relatively high energy needs with less absorptive surface area. Here, we further show that an enhanced paracellular pathway for intestinal absorption of water-soluble nutrients such as glucose and amino acids may compensate for reduced small intestines in volant vertebrates. The evidence is that l-rhamnose and other similarly sized, metabolically inert, nonactively transported monosaccharides are absorbed significantly more in small birds and bats than in nonflying mammals. To broaden our comparison and test the veracity of our finding we surveyed the literature for other similar studies of paracellular absorption. The patterns found in our focal species held up when we included other species surveyed in our analysis. Significantly greater amplification of digestive surface area by villi in small birds, also uncovered by our analysis, may provide one mechanistic explanation for the observation of higher paracellular absorption relative to nonflying mammals. It appears that reduced intestinal size and relatively enhanced intestinal paracellular absorption can be added to the suite of adaptations that have evolved in actively flying vertebrates.

摘要

轶事证据表明鸟类的肠道比哺乳动物的短。在本分析中,我们发现小型鸟类和蝙蝠的小肠明显比同样大小的非飞行哺乳动物短,且小肠的标称(光滑内径管)表面积更小。肠道体积相应减少50%以上,因此所携带的消化物质量减少,这是有利的,因为飞行的能量消耗会随着携带的负荷增加。但是,一个核心难题是鸟类和蝙蝠如何用较少的吸收表面积满足相对较高的能量需求。在此,我们进一步表明,肠道对葡萄糖和氨基酸等水溶性营养物质的吸收的细胞旁途径增强,可能弥补了会飞脊椎动物小肠的缩短。证据是,左旋鼠李糖和其他大小相似、代谢惰性、非主动运输的单糖在小型鸟类和蝙蝠中的吸收比在非飞行哺乳动物中明显更多。为了拓宽我们的比较范围并检验我们发现的准确性,我们查阅了文献以寻找其他关于细胞旁吸收的类似研究。当我们在分析中纳入其他调查物种时,我们重点研究的物种中发现的模式依然成立。我们的分析还发现,小型鸟类绒毛对消化表面积的显著更大放大,可能为相对于非飞行哺乳动物观察到的更高细胞旁吸收提供一种机制解释。看来,肠道尺寸减小和相对增强的肠道细胞旁吸收可以添加到在主动飞行脊椎动物中进化出的一系列适应性特征中。

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