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胎生蛇种西部带蛇在同时出现的代谢状态升高期间的耗氧模式。

Patterns of oxygen consumption during simultaneously occurring elevated metabolic states in the viviparous snake Thamnophis marcianus.

作者信息

Jackson Alexander G S, Leu Szu-Yun, Ford Neil B, Hicks James W

机构信息

Department of Ecology and Evolutionary Biology, School of Biological Sciences, University of California, Irvine, Irvine, CA 92627, USA.

Institute for Clinical and Translational Science, University of California, Irvine, Irvine, CA 92687, USA Department of Pediatrics, University of California, Irvine, School of Medicine, Orange, CA 92868, USA.

出版信息

J Exp Biol. 2015 Nov;218(Pt 22):3570-9. doi: 10.1242/jeb.115477. Epub 2015 Sep 28.

Abstract

Snakes exhibit large factorial increments in oxygen consumption during digestion and physical activity, and long-lasting sub-maximal increments during reproduction. Under natural conditions, all three physiological states may occur simultaneously, but the integrated response is not well understood. Adult male and female checkered gartersnakes (Thamnophis marcianus) were used to examine increments in oxygen consumption (i.e. V̇(O2)) and carbon dioxide production (i.e. V̇(CO2)) associated with activity (Act), digestion (Dig) and post-prandial activity (Act+Dig). For females, we carried out these trials in the non-reproductive state, and also during the vitellogenic (V) and embryogenic (E) phases of a reproductive cycle. Endurance time (i.e. time to exhaustion, TTE) was recorded for all groups during Act and Act+Dig trials. Our results indicate that male and non-reproductive female T. marcianus exhibit significant increments in V̇(O2) during digestion (∼5-fold) and activity (∼9-fold), and that Act+Dig results in a similar increment in V̇(O2) (∼9- to 10-fold). During reproduction, resting V̇(O2) increased by 1.6- to 1.7-fold, and peak increments during digestion were elevated by 30-50% above non-reproductive values, but values associated with Act and Act+Dig were not significantly different from non-reproductive values. During Act+Dig, endurance time remained similar for all of the groups in the present study. Overall, our results indicate that prioritization is the primary pattern of interaction in oxygen delivery exhibited by this species. We propose that the metabolic processes associated with digestion, and perhaps reproduction, are temporarily compromised during activity.

摘要

蛇在消化和体力活动期间耗氧量呈现大幅阶乘增加,在繁殖期间耗氧量则呈现持续的亚最大增加。在自然条件下,这三种生理状态可能同时出现,但综合反应尚不清楚。成年雄性和雌性棋盘纹袜带蛇(美洲束带蛇)被用于研究与活动(Act)、消化(Dig)和餐后活动(Act+Dig)相关的耗氧量(即V̇(O2))和二氧化碳产生量(即V̇(CO2))的增加情况。对于雌性,我们在非繁殖状态以及生殖周期的卵黄生成(V)和胚胎发生(E)阶段进行了这些试验。在Act和Act+Dig试验期间记录了所有组的耐力时间(即疲劳时间,TTE)。我们的结果表明,雄性和非繁殖雌性美洲束带蛇在消化期间(约5倍)和活动期间(约9倍)V̇(O2)显著增加,并且Act+Dig导致V̇(O2)有类似的增加(约9至10倍)。在繁殖期间,静息V̇(O2)增加了1.6至1.7倍,消化期间的峰值增加比非繁殖值高出30 - 50%,但与Act和Act+Dig相关的值与非繁殖值没有显著差异。在Act+Dig期间,本研究中所有组的耐力时间保持相似。总体而言,我们的结果表明,优先级划分是该物种在氧气输送中表现出的相互作用的主要模式。我们提出,与消化以及可能与繁殖相关的代谢过程在活动期间会暂时受到影响。

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