Journal of Guangxi Normal University(Natural Science Edition) ›› 2014, Vol. 32 ›› Issue (2): 147-153.

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Thermal Biology of Japalura splendida

MAO Zhi-gang1,2, WANG Zhen-xing1,2, WU Zheng-jun2, LI Yun-tao1, LU Yu1   

  1. 1.Guangxi Transportation Research Institute, Nanning Guangxi 530007,China;
    2. Guangxi Key Laboratory of Rare and Endangered Animal EcologyGuangxi Normal University, Guilin Guangxi 541004,China
  • Received:2014-03-13 Online:2014-06-25 Published:2018-09-25

Abstract: From November to December, 2010, the selected body temperature (Tsel), critical thermal maximum (TCTMax), the diel variation in body temperature,post-prandial selected body temperature of Japalura splendida were measured under laboratory conditions. The Tsel and TCTMax of J. splendida were (26.22±0.65) ℃ and (42.35±0.41) ℃, respectively. In a gradient of 15~30 ℃, the body temperature (Tb) was positively correlated with ambient temperature (Te): Tb=0.663Te+7.193. In the environment without thermal gradients, diel variation in body temperature was not significantly affected by environment temperatures (T11=0.643,P=0.534). There were no significant differences in Tsel between fasted and fed lizards(F2, 104=0.997, P=0.372). The results indicated that:(1)The body temperature of J.splendida changed with environment temperature. (2)J. splendida could conduct its body temperature by physiological thermoregulation. (3) The diffences of TCTMax among J. splendida and other lizards may be related to their geographical distribution. (4)Tsel of J. splendida did not vary significantly between fasted and fed, while may be related to its food.

Key words: Japalura splendida, thermoregulation, selected body temperature, critical thermal maximum

CLC Number: 

  • Q142.9
[1] 许雪峰,陈雪君,计翔. 雄性山地麻蜥选择体温、热耐受性及温度对食物同化和运动表现的影响[J]. 动物学研究,2001,22(6):443-448.
[2] 徐大德,安虹,陆洪良,等. 原尾蜥虎的选择体温、热耐受性和食物同化的热依赖性[J]. 动物学报,2007,53(6) :959-965.
[3] 朱丹. 温度对胎生蜥蜴繁殖策略、体温调节及运动表现的影响[D]. 哈尔滨: 哈尔滨师范大学,2012:25-45.
[4] GEISER F, LEARMONTH R P. Dietary fats, selected body temperature and tissue fatty acid composition of agamid lizard (Amphibolurus nuchalis) [J]. Journal of Comparative Physiology B, 1994, 164: 55-61.
[5] 丁国骅,李银蝶,沈熠民,等. 青海沙蜥摄食后选择高体温:生理状态影响体温调节设定点[M]//两栖爬行动物学研究.南京:东南大学出版社,2007:146-150.
[6] GEISER F, FIRTH B T,SEYMOUR R S. Polynusaturated dietary lipids lower the selected body temperature of a lizard[J]. Journal of Comparative Physiology B, 1992, 162(1): 1-4.
[7] NUSSEAR K E, ESPIONZA R E, GUBBINS C M, et al. Diet quality does not affect resting metabolic rate or body temperatures selected by an herbivorous lizard[J]. Journal of Comparative Physiology B, 1998, 168: 183-189.
[8] 林植华. 丽纹攀蜥头体大小的两性异形和繁殖期的生长[J]. 四川动物, 2004,23(3) :277-280.
[9] 计翔,郑向忠,徐永根,等. 中国石龙子热生物学的研究[J].动物学报,1995,41(3):268-274.
[10] 王振兴,武正军,于海,等. 广东罗坑自然保护区鳄蜥的体温调节及静止代谢率的热依赖性[J]. 动物学报,2008,54(6):964-971.
[11] 舒霖,张群利,屈彦福,等. 青海沙蜥的热耐受性、选择体温及摄食和运动表现的热依赖性[J]. 生态学报,2010,30(8):2036-2042.
[12] 张荣祖. 中国动物地理[M]. 北京:科学出版社,2011:260-295.
[13] JI Xiang, ZHENG Xiang-zhong, XU Yong-gen, et al. Some aspects of thermal biology of the skink Eumeces chinensis[J]. Acta Zoologica Sinica, 1995, 41: 268-274.
[14] JI Xiang, DU Wei-guo, SUN Ping-yue. Body temperature, thermal tolerance and influence of temperature on sprint speed and food assimilation in adult grass lizards, Takydromus septentrionalis[J]. Journal of Thermal Biology, 1996,21(3): 155-161.
[15] 邱清波,曾小飚,林隆慧,等. 变色树蜥(Calotes versicolor)选择体温、热耐受性及温度对食物同化的影响[J].生态学报,2009,29(4):1738-1744.
[16] QU Yan-fu,LI Hong,GAO Jian-fang. Thermal preference, thermal tolerance and the thermal dependence of digestive performance in two Phrynocephalus lizards (Agamidae), with a review of species studied[J]. Current Zoology, 2011, 57(6): 684-700.
[17] SHU Lin,SUN Bao-jun,DU Wei-guo. Effects of temperature and food availability on selected body temperature and locomotor performance of Plestiodon (Eumeces) chinensis (Scincidae) [J]. Animal Biology, 2010, 60(3): 337-347.
[18] JI Xiang,SUN Ping-yue,DU Wei-guo. Selected body temperature, thermal tolerance and food assimilation in a viviparous skink, Sphenomorphus indicus [J]. Netherlands Journal of Zoology, 1995, 47(11): 103-110.
[19] 罗来高,屈彦福,计翔. 华北丽斑麻蜥食物同化和疾跑速的热依赖性[J]. 动物学报,2006,52 (2) :256-262.
[20] LI Hong,WANG Zheng,MEI Wei-bin, et al. Temperature acclimation affects thermal preference and tolerance in three Eremias lizards (Lacertidae) [J]. Current Zoology, 2009, 55(4): 258-265.
[21] ZHANG Yong-pu, JI Xiang. The thermal dependence of food assimilation and locomotor performance in southern grass lizards Takydromus sexlineatus (Lacertidae) [J]. Journal of Thermal Biology, 2004 ,29(1):45-53.
[22] JI Xiang, LIN C X, LIN L H, et al. Evolution of viviparity in warm-climate lizards: an experimental test of the maternal manipulation hypothesis[J]. Journal of Evolutionary Biology, 2007, 20(3): 1037-1045.
[23] 李仁德,刘廼发. 环境温度对荒漠沙蜥和密点麻蜥体温的影响及其对环境温度的选择[J]. 动物学研究,1992,13(1):47-52.
[24] 王培潮,徐宏发. 温度对北草蜥体温与热能代谢的影响[J]. 两栖爬行动物学报,1987,6(2):10-15.
[25] 王培潮,陆厚基. 黑眉锦蛇的热能代谢与体温调节[J]. 两栖爬行动物学报1986,5(1):10-16.
[26] 孟德荣,张桂然. 无蹼壁虎对环境温度的选择及体温调节[J]. 动物学研究,2000,21(5):422-424.
[27] 赵风,刘鹏,赵文阁. 实验室条件下新疆岩蜥与长鬣蜥静止代谢率的比较研究[C]//两栖爬行动物学研究,南京:东南大学出版社,2007:138-145.
[28] 林美珍,詹声镇,白东跃,等. 黄粉虫蛹油不饱和脂肪酸的提取及其微胶囊制备[J]. 福建农林大学学报:自然科学版, 2013,42(4):347-350.
[29] SIMANDLE E T, ESPINOZA R E, NUSSEAR K E, et al. Lizards, lipids,and dietary links to animal function[J]. Physiological and Biochemical Zoology,2001, 74(5): 625-640.
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