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Simulated climate change increases juvenile growth in a Critically Endangered tortoise

机译:模拟的气候变化增加了极度濒危乌龟的幼体生长

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Climate change can affect the availability of transient habitats upon which many species depend for growth and reproduction. In south-western Western Australia, declines in winter rainfall since the 1970s have shortened the hydroperiod of ephemeral swamps occupied by the Critically Endangered western swamp tortoise Pseudemydura umbrina reducing the length of the growing period of hatchlings and juveniles. Here, we tested whether the warmer water temperatures expected under global climate change could compensate for a shorter growing season. We increased pond temperatures of captive hatchlings and juveniles (1 and 2 yr old) by 1 to 2°C, and showed that growth rates and rates of food intake increased with temperature, with hatchlings in heated ponds increasing their mass by an additional 78 % compared to hatchlings in unheated ponds. Hatchlings had a growth rate 8 times greater than that of juveniles. With an unlimited food supply, we predict that wild hatchlings will reach the critical mass (about 18 g) necessary to survive their first aestivation period at least 1 mo earlier under projected climate change by 2050. However, because shorter hydroperiods translate to longer periods for dry-season aestivation, small tortoises that have allocated all their energy to growth will be especially vulnerable to depletion of energy stores during aestivation.
机译:气候变化会影响许多物种赖以生长和繁殖的短暂生境的可用性。在西澳大利亚州西南部,自1970年代以来冬季降雨的减少缩短了极度濒临灭绝的西部沼泽乌龟Pseudemydura umbrina所占据的短暂沼泽的水文期,从而缩短了幼体和幼鱼的生长期。在这里,我们测试了全球气候变化下预期的较暖水温是否可以弥补较短的生长季节。我们将圈养的幼体和幼体(分别为1岁和2岁)的池塘温度提高了1至2°C,并表明生长速率和食物摄取率随着温度的升高而增加,加热池塘中的幼体的质量又增加了78%与未加热的池塘中的孵化相比。雏鱼的增长率是少年的8倍。有了无限的粮食供应,我们预计到2050年,在预计的气候变化下,野生孵化的幼体至少要提前1个月才能达到首次孵化期所必需的临界质量(约18 g)。干旱季节的耕作,将所有精力分配给生长的小乌龟特别容易在耕作过程中消耗能量。

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