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Reducing error in reproductive timing caused by temperature variation: interspecific differences in behavioural adjustment by fiddler crabs

机译:减少因温度变化而导致的繁殖时机错误:提琴蟹在行为调整中的种间差异

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摘要

Many organisms time reproduction with physical and biological cycles that affect offspring survival. In the marine environment, a common pattern is the release of planktonic larvae during large-amplitude nocturnal tides, which may reduce losses due to predation. However, if the duration of embryonic development depends on temperature, changes in temperature can lead to errors in timing. Organisms may reduce such errors either by changing the timing of onset of incubation or by selecting the temperatures to which embryos are exposed. We conducted field and laboratory experiments with 2 species of fiddler crabs to examine the effects of temperature and temperature variation on the timing of larval release and synchrony of release among females. As expected, the duration of incubation increased with decreasing temperature in both species. In the field when temperature was low, Uca terpsichores released larvae earlier than expected, indicating that shifts in timing of mating reduced potential errors in timing of release. However, when temperature changed during incubation, accuracy and precision in the timing of release decreased. U. deichmanni maintained timing and synchrony of release despite variable temperature in the field, but in cold water in the laboratory, they incubated eggs longer than in the field and released larvae late. These differences suggest that U. deichmanni regulates the incubation period in the field. U. terpsichores may be less able than U. deichmanni to adjust to rapid variation in temperature that may accompany climate change, which could result in large-scale interspecific differences in larval survival and recruitment. Fiddler crabs may maintain larval release during large amplitude nocturnal tides despite temperature variation by shifting timing of mating or selecting incubation temperature.
机译:许多生物利用影响子孙生存的物理和生物周期进行时间繁殖。在海洋环境中,一种常见的模式是在大幅度的夜间潮汐中释放出浮游幼虫,这可以减少捕食带来的损失。但是,如果胚胎发育的持续时间取决于温度,则温度变化可能会导致计时错误。有机体可以通过改变孵育时间或选择暴露于胚胎的温度来减少这种错误。我们对2种提琴蟹进行了田间和实验室实验,以研究温度和温度变化对雌性幼体释放时间和释放同步性的影响。正如预期的那样,两个物种的孵化时间都随着温度的降低而增加。在温度较低的田野中,Uca孢子虫比预期的更早地释放幼虫,这表明交配时间的变化减少了释放时间上的潜在误差。但是,当温育过程中温度发生变化时,释放时机的准确性和精确性下降。尽管田间温度变化,U。deichmanni仍保持释放的时间和同步性,但在实验室的冷水中,卵的孵化时间比田间长,幼虫释放较晚。这些差异表明U. deichmanni在田间调节潜伏期。与气候变化伴随而来的温度变化相比,美国陆生动物的适应能力可能不如美国陆地藻(U. deichmanni),这可能会导致幼虫生存和募集方面的大规模种间差异。提琴蟹可以通过改变交配时间或选择孵化温度而在大幅度的夜间潮汐中保持幼虫的释放,尽管温度变化很大。

著录项

  • 来源
    《Marine ecology progress series》 |2012年第12期|p.1-16|共16页
  • 作者单位

    McGill University, Department of Biology, Montreal, Quebec H3A 1B1, Canada Smithsonian Tropical Research Institute, Apartado Postal 0843-03092, Balboa, Ancon, Panama, Panama McGill-STRI Neotropical Environment Option (NEO), McGill University, Faculty of Science, Montreal, Quebec H3A 2T6,Canada;

    Smithsonian Tropical Research Institute, Apartado Postal 0843-03092, Balboa, Ancon, Panama, Panama;

    Smithsonian Tropical Research Institute, Apartado Postal 0843-03092, Balboa, Ancon, Panama, Panama McGill-STRI Neotropical Environment Option (NEO), McGill University, Faculty of Science, Montreal, Quebec H3A 2T6,Canada;

    McGill-STRI Neotropical Environment Option (NEO), McGill University, Faculty of Science, Montreal, Quebec H3A 2T6,Canada McGill University, Department of Biology, Montreal, Quebec H3A 1B1, Canada;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    larval release; timing of reproduction; variable environment; upwelling; timing strategies; tidal rhythms; uca terpsichores; uca deichmanni;

    机译:幼虫释放;繁殖时间;变化的环境;上升时间策略;潮气节律uca terpsichores;乌卡·德希曼尼;

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