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High developmental temperature leads to low reproduction despite adult temperature

机译:尽管成分温度,高发育温度导致较低的繁殖

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Phenotypic plasticity can help organisms cope with changing thermal conditions and it may depend on which life-stage the thermal stress is imposed: for instance, exposure to stressful temperatures during development can trigger a positive plastic response in adults. Here, we analyze the thermal plastic response of laboratory populations of Drosophila subobscura, derived from two contrasting latitudes of the European dine. We measured reproductive performance through fecundity characters, after the experimental populations were exposed to five thermal treatments, with different combinations of developmental and adult temperatures (14 degrees C, 18 degrees C, or 26 degrees C). Our questions were whether (1) adult performance changes with exposure to higher (or lower) temperatures during development; (2) flies raised at lower temperatures outperform those developed at higher ones, supporting the "colder is better" hypothesis; (3) there is a cumulative effect on adult performance of exposing both juveniles and adults to higher (or lower) temperatures; (4) there is evidence for biogeographical effects on adult performance. Our main findings were that (1) higher developmental temperatures led to low reproductive performance regardless of adult temperature, while at lower temperatures reduced performance only occurred when colder conditions were persistent across juvenile and adult stages; (2) flies raised at lower temperatures did not always outperform those developed at other temperatures; (3) there were no harmful cumulative effects after exposing both juveniles and adults to higher temperatures; (4) both latitudinal populations showed similar thermal plasticity patterns. The negative effect of high developmental temperature on reproductive performance, regardless of adult temperature, highlights the developmental stage as very critical and most vulnerable to climate change and associated heat waves.
机译:表型可塑性可以帮助生物体应对不断变化的热条件,这可能取决于施加热应激的生命阶段:例如,在发育过程中暴露在应激温度下可以触发成年人的积极塑性反应。在这里,我们分析了来自欧洲大陆两个不同纬度的实验室果蝇种群的热塑性反应。在实验种群暴露于五种不同的发育温度和成体温度组合(14摄氏度、18摄氏度或26摄氏度)下的热处理后,我们通过繁殖力特征来测量繁殖性能。我们的问题是:(1)在发育过程中,成人的表现是否会随着暴露在较高(或较低)的温度而发生变化;(2) 在较低温度下饲养的苍蝇表现优于在较高温度下培育的苍蝇,支持“越冷越好”的假设;(3) 将青少年和成年人暴露在较高(或较低)的温度下会对成年人的表现产生累积影响;(4) 有证据表明生物地理因素对成年人的表现有影响。我们的主要发现是:(1)无论成虫的温度如何,较高的发育温度都会导致繁殖性能低下,而在较低的温度下,只有在幼年期和成虫期持续较冷的条件下,繁殖性能才会降低;(2) 在较低温度下饲养的苍蝇并不总是比在其他温度下培育的苍蝇表现更好;(3) 青少年和成年人暴露在更高的温度下后,没有有害的累积效应;(4) 两个纬度的种群表现出相似的热塑性模式。无论成年期的温度如何,高发育温度对生殖性能的负面影响都突显出发育阶段非常关键,最容易受到气候变化和相关热浪的影响。

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