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Warmer temperature and provision of natural substrate enable earlier metamorphosis in the critically endangered Baw Baw frog

机译:温暖的温度和自然基质的提供使得批判性濒临灭绝的庞大笨蛋中的早期变态

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摘要

Temperature and food availability are known to independently trigger phenotypic change in ectotherms, but the interactive effects between these factors have rarely been considered. This study investigates the independent and interactive effects of water temperature and food availability on larval growth and development of the critically endangered Baw Baw frog, Philoria frosti. Larvae were reared at low (12°C) or high (17°C) water temperature in the absence or presence of substrate that controlled food availability, and body size and time to metamorphosis were quantified. Growth and development of larvae was influenced by the individual effects of temperature and food availability; time to metamorphosis was shorter in warm water treatment groups and in the presence of substrate and increased food. Unexpectedly, however, water temperature and food availability did not have an interactive effect on either time to metamorphose or body size at metamorphosis. Under all treatment groups, metamorphic onset occurred once a developmental size threshold was reached, indicating that growth rate and body size are key factors controlling the metamorphic process in Baw Baw frogs (consistent with the Wilbur–Collins model for ectotherm development). From an applied perspective, our findings have implications for amphibian conservation because they indicate that simple manipulations of temperature and food availability can be used to increase the rate of frog production in conservation breeding programs.
机译:已知温度和食品可用性独立地触发Ectotherms的表型变化,但这些因素之间的互动效果很少考虑。本研究调查了水温和食品可用性对危及濒危巨大的巨头Frog,Philoria Frosti的幼虫生长和发展的独立和互动影响。在受控食物可用性的不存在或存在的底物的情况下在低(12℃)或高(17℃)的水温下饲养幼虫,并且量化了体积大小和变态时间。幼虫的生长和发展受到温度和食品可用性的个体影响的影响;在温水处理组中和在底物存在和增加的食物存在下,变态时间较短。然而,出乎意料的是,水温和食物可用性在变态时,在变态或体尺寸的时间内没有交互作用。在所有治疗组下,一旦达到发育尺寸阈值,就会发生变质发作,表明生长速率和体重是控制盲肠斩波中的变质过程的关键因素(与威尔伯 - 柯林斯模型为Ectotherm发育的模型一致)。从应用的角度来看,我们的研究结果对两栖动物保护有影响,因为它们表明,可以使用简单的温度和食品可用性操纵来增加保护育种计划中的青蛙生产速率。

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