首页> 外文期刊>Journal of Thermal Biology >Seasonal shifts in the thermal biology of the lizard Liolaemus tandiliensis (Squamata, Liolaemidae)
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Seasonal shifts in the thermal biology of the lizard Liolaemus tandiliensis (Squamata, Liolaemidae)

机译:蜥蜴Liolaemus tandiliensis(Squamata,Liolaemidae)的热生物学中的季节变化

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摘要

Small lizards can accommodate to constraints imposed by temporal changes in ambient temperature through a combination of adaptive evolution and behavioral and physiological plasticity. Thermal physiology plasticity may compensate for climate variation and favor performance while minimizing behavioral costs in sub-optimal conditions. The Tandilia's lizard, Liolaemus tandiliensis, occurs in an isolated mountain range of the Argentinean temperate Pampas. In this study, we compared the thermal biology of L. tandiliensis between late spring (December) and mid-summer (February). The habitats' thermal quality was lower in late spring than in mid-summer. The lizard's field-body temperature (Tb) was 2-3 degrees C higher than the operative temperature (Te). Overall, the mean preferred temperature (Tsel) was 37.4 degrees C [preferred range (Tset): 36.2-38.7 degrees C], and was similar to other Liolaemus species. The Tset and Tsel of females in late spring were 1.8 degrees C lower than in mid-summer. In the case of males, the Tsel did not vary among seasons, while the Tset had a difference of 2.5 degrees C between seasons. Adults were moderate thermoregulators, but females were more efficient only in late spring (E-males = 0.69; E-females = 0.58), compared to mid-summer (E-males = 0.68; E-females = 0.50). Juveniles did not show temporal differences in temperature preferences and had a relatively higher efficiency in late spring (E = 0.38) compared to mid-summer (E = 0.28). An increased proportion of juveniles and adults shifted their Tb near to the Tset in late spring respect to mid-summer. The adults also matched their preferred temperatures to their current body temperature. These results suggest that seasonal shifts in the thermoregulatory parameters of L. tandiliensis may improve their thermoregulatory efficiency. Although temporal variation in ambient temperatures might influence the thermal biology of the studied lizards, other factors such as changes in the reproductive status may have also interfered.
机译:通过适应性演化和行为和生理可塑性的组合,小蜥蜴可以容纳因环境温度的时间变化所施加的约束。热生理塑性可弥补气候变化和有利性能,同时最小化次优况中的行为成本。 Tandilia的蜥蜴Liolaemus tandiliensis发生在阿根廷温带潘帕斯的孤立的山脉范围内。在这项研究中,我们将L.Tandiliensis的热生物学与春季(十二月)和夏季中午(二月)进行了比较。栖息地的热质质量较晚的春季比夏季较低。蜥蜴的现场 - 体温(TB)高于操作温度(TE)的2-3摄氏度。总的来说,平均优选的温度(TSEL)为37.4℃[优选的范围(TSET):36.2-38.7℃],并且与其他Liolaemus物种类似。春季晚期的女性的Tst和Tsel比夏季中较低1.8摄氏度。在雄性的情况下,TSEL在季节没有变化,而TSet在季节之间的差异有2.5度C。成年人是温度调节剂,但与中午相比,女性只有在晚春天(E-Males = 0.69; e-Females = 0.58)更有效(E-Males = 0.68; e-Females = 0.50)。少年没有显示出温度偏好的时间差异,与夏季中期(E = 0.28)相比,晚春(E = 0.38)的效率相对较高(E = 0.28)。少年和成年人的比例增加了他们的结论在夏季中午的春季晚期的Tsts附近。成年人也与他们的当前体温相匹配。这些结果表明,L.Tandiliensis的热调节参数中的季节性变化可以提高它们的热调节效率。尽管环境温度的时间变化可能会影响所研究的蜥蜴的热生物学,但是其他因素如生殖状态的变化可能也受到干扰。

著录项

  • 来源
    《Journal of Thermal Biology》 |2018年第2018期|共10页
  • 作者单位

    Univ Nacl Mar del Plata CONICET IIMyC Fac Ciencias Exactas &

    Nat Dean Funes 3250 RA-7600 Mar Del Plata Buenos Aires Argentina;

    Univ Nacl Mar del Plata CIAS Lab Artropodos Fac Ciencias Exactas &

    Nat Dean Funes 3250 RA-7600 Mar Del Plata Buenos Aires Argentina;

    Univ Nacl Mar del Plata CONICET IIMyC Fac Ciencias Exactas &

    Nat Dean Funes 3250 RA-7600 Mar Del Plata Buenos Aires Argentina;

    Univ Nacl Mar del Plata CONICET IIMyC Fac Ciencias Exactas &

    Nat Dean Funes 3250 RA-7600 Mar Del Plata Buenos Aires Argentina;

    Univ Nacl Mar del Plata CONICET IIMyC Fac Ciencias Exactas &

    Nat Dean Funes 3250 RA-7600 Mar Del Plata Buenos Aires Argentina;

    Univ Nacl Comahue CONICET Inst Invest Biodiversidad &

    Medioambiente INIBIOM Quintral 1250 RA-8400 San Carlos De Bariloche Rio Negro Argentina;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 分子生物学;
  • 关键词

    Climatic seasonality; Liolaemus; Plasticity; Reptile; Temperate Pampas; Thermoregulation;

    机译:气候季节性;Liolaemus;可塑性;爬行动物;温带潘帕斯;热调节;

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