Viviparity in high-altitude Phrynocephalus lizards is adaptive because embryos cannot fully develop without maternal thermoregulation

Viviparity in high-altitude Phrynocephalus lizards is adaptive because embryos cannot fully develop without maternal thermoregulation
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DOI:
10.1007/s00442-013-2811-8
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发表时间:
2014-03
期刊:
影响因子:
2.7
通讯作者:
Z. Wang;Hong-Liang Lu;Li Ma;X. Ji
Z. Wang;Hong-Liang Lu;Li Ma;X. Ji
中科院分区:
环境科学与生态学2区
文献类型:
--
作者:
Z. Wang;Hong-Liang Lu;Li Ma;X. Ji

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ViviparousPhrynocephaluslizards (Agamidae) are mainly restricted to the Qinghai-Tibet Plateau of China. In this study, we usedPhrynocephalus vlangaliifemales kept under seven thermal regimes for the whole gestation period to test the hypothesis that viviparity in high-altitudePhrynocephaluslizards is adaptive because embryos cannot fully develop without maternal thermoregulation. All females at 24 °C and 93 % of the females at 28 °C failed to give birth or produced stillborns, and proportionally fewer females gave birth at 29 or 35 °C than at 32 °C. Though the daily temperatures encountered were unsuitable for embryonic development, 95 % of the females in nature and 89 % of the females thermoregulating in the laboratory gave birth. There was no shift in the thermal preferences of females when they were pregnant. Although thermal conditions inside natural burrows were unsuitable for embryonic development, mass and sprint speed were both greater in neonates produced in nature. Our data show that (1) long-term exposure ofP. vlangaliiembryos to temperatures outside the range of 29–35 °C may result in the failure of development, but daily or short-term exposure may not necessarily increase embryonic mortality; (2) low gestation temperatures slow but do not arrest embryonic development, and females produce high-quality offspring in the shortest possible time by maintaining gestation temperatures close to the upper thermal limit for embryonic development; and (3) viviparity is currently adaptive at high elevations because embryos in nature cannot fully develop without relying on maternal thermoregulation. Our data validate the hypothesis tested.