Thermal preference, thermal tolerance and the thermal dependence of digestive performance in two Phrynocephalus lizards (Agamidae), with a review of species studied

Thermal preference, thermal tolerance and the thermal dependence of digestive performance in two Phrynocephalus lizards (Agamidae), with a review of species studied
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两种沙蜥蜴(蜥蜴科)的热偏好、热耐受性和消化性能的热依赖性,并对所研究的物种进行了回顾

DOI:
10.1093/czoolo/57.6.684
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发表时间:
2011-12
期刊:
影响因子:
2.2
通讯作者:
计翔
计翔
中科院分区:
生物学2区
文献类型:
--
作者:
屈彦福;李宏;高建芳;许雪峰;计翔

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我们报道了两种沙蜥(草原沙蜥和变色沙蜥)的热偏好、热耐受性以及消化性能的热依赖性数据,并对全球迄今所研究的沙蜥的数据进行了比较。所选的平均值……
We reported data on thermal preference, thermal tolerance and the thermal dependence of digestive performance for two Phrynocephalus lizards (P. frontalis and P. versicolor), and compared data among lizards so far studied worldwide. Mean values for selected body temperature (Tsel) and critical thermal maximum (CTMax) were greater in P. versicolor, whereas mean values for critical thermal minimum (CTMin) did not differ between the two species. The two lizards differed in food intake, but not in food passage time, apparent digestive coefficient (ADC) and assimilation efficiency (AE), across the experimental tem- peratures. Four general conclusions can be drawn from published data. Firstly, thermal preference and thermal tolerance differ among lizards differing in distribution, temporal activity pattern and habitat use. Lizards in thermally more variable regions are better able to tolerate low and high temperatures. Diurnal lizards generally select higher body temperatures than nocturnal lizards, and lizards using habitats with direct sun exposure generally selected higher body temperatures and are better able to tolerate high temperatures. Secondly, CTMax is positively correlated with Tsel. Lizards more likely exposed to extremely high temperatures while active select higher body temperatures than those using shaded habitats. Thirdly, the effects of body temperature on food intake, food passage time, ADC and AE differ among lizards, but it seems to be common among lizards that ADC and AE are less thermally sensitive than food intake and food passage time. Lastly, ADC is dependent on the type of food ingested, with insec- tivorous lizards digesting food more efficiently than herbivorous lizards (Current Zoology 57 (6): 684-700, 2011).
DOI: 10.2307/1441705
发表时间: 1969-03
期刊: Copeia
影响因子: 2.6
作者:
C. F. Mueller
通讯作者: C. F. Mueller
DOI: 10.1016/0300-9629(93)90188-a
发表时间: 1993-05
期刊: Comparative Biochemistry and Physiology Part A: Physiology
影响因子: --
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