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首页> 外文期刊>Biology Open >Incubation temperature, morphology and performance in loggerhead (Caretta caretta) turtle hatchlings from Mon Repos, Queensland, Australia
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Incubation temperature, morphology and performance in loggerhead (Caretta caretta) turtle hatchlings from Mon Repos, Queensland, Australia

机译:来自澳大利亚昆士兰州Mon Repos的(Caretta caretta)龟孵化的温度,形态和性能

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Marine turtles are vulnerable to climate change because their life history and reproduction are tied to environmental temperatures. The egg incubation stage is arguably the most vulnerable stage, because marine turtle eggs require a narrow range of temperatures for successful incubation. Additionally, incubation temperature affects sex, emergence success, morphology and locomotor performance of hatchlings. Hatchlings often experience high rates of predation in the first few hours of their life, and increased size or locomotor ability may improve their chances of survival. Between 2010 and 2013 we monitored the temperature of loggerhead ( Caretta caretta ; Linnaeus 1758) turtle nests at Mon Repos Rookery, and used these data to calculate a mean three day maximum temperature (T3dm) for each nest. We calculated the hatching and emergence success for each nest, then measured the mass, size and locomotor performance of hatchlings that emerged from those nests. Nests with a T3dm greater than 34°C experienced a lower emergence success and produced smaller hatchlings than nests with a T3dm lower than 34°C. Hatchlings from nests with a T3dm below 34°C performed better in crawling and swimming trials than hatchlings from nests with a T3dm above 34°C. Thus even non-lethal increases in global temperatures have the potential to detrimentally affect fitness and survival of marine turtle hatchlings.
机译:海龟易受气候变化的影响,因为它们的生活史和繁殖与环境温度有关。卵孵化阶段可以说是最脆弱的阶段,因为海龟卵需要狭窄的温度范围才能成功孵化。此外,孵化温度会影响孵化的性别,出苗成功率,形态和运动能力。幼体在其生命的最初几个小时中经常会遭受高比率的捕食,而增加体型或运动能力可能会提高其存活的机会。在2010年至2013年之间,我们在Mon Repos Rookery监测了logger(Caretta caretta; Linnaeus 1758)海龟巢的温度,并使用这些数据计算了每个巢的平均三天最高温度(T3dm)。我们计算了每个巢的孵化和出苗成功率,然后测量了从这些巢中孵出的幼体的质量,大小和运动性能。 T3dm高于34°C的鸟巢的羽化成功率较低,并且孵化的孵化量小于T3dm低于34°C的鸟巢。 T3dm低于34°C的巢中的孵化比T3dm高于34°C的巢中的孵化更好。因此,即使全球温度不致命地升高,也有可能有害影响海龟孵化器的健康和生存。

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