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Evidence for physiological niche expansion of an intertidal flatworm: evolutionary rescue in the wild

机译:用于跨境扁平虫的生理利基扩展的证据:野外进化救援

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Microevolution may enable populations to adapt physiologically to rapid climate change. Where it exists, historical data could provide a rare opportunity to document such adaptation. The intertidal flatworm Procerodes littoralis experiences large changes in salinity throughout the tidal cycle. We investigated whether regeneration performance of P. littoralis has changed over the last century. We repeated identical experiments to those published in 1914 on the same species and from the same location. In the modern experiment, when tested across a range of different salinities (S = 3, 6, 28, 44 and 53), P. littoralis could regenerate at lower salinities (S = 3) than reported previously. Also in the modern study, no significant optimum salinity could be identified, whereas in 1914 the optimum salinity (S = 28.5) was clear. The possibility of differences resulting from acclimation or oxygen availability instead of adaptation was investigated and discounted. It would appear that individuals from this population have extended their tolerance performance range further into hyposaline waters in the intervening 104 yr since the previous study. Local climate change is suggested to be the microevolution driver, as mean daily precipitation has increased and the number of days per year with no/trace precipitation has decreased in Plymouth, UK. Climate change is often considered a global phenomenon, but it drives local regime shifts. Here, we suggest an evolutionary shift attributable to a century-long local change in precipitation.
机译:MicroVolution可以使人群能够在生理上适应快速的气候变化。在它存在的地方,历史数据可以提供难得为这些适应提供文件的机会。跨越扁平虫髌池Littoralis在整个潮汐循环中经历良好的盐度变化。我们调查了P. Littoralis的再生性能在上世纪发生了变化。我们对1914年在同一物种和同一地点发布的那些相同的实验。在现代实验中,当在一系列不同的薪水(S = 3,6,28,44和53)中,P.Littoralis可以在较低的盐度(S = 3)下再生而不是先前报道。同样在现代研究中,可以识别出明显的最佳盐度,而在1914年,最佳盐度(S = 28.5)清晰。调查和折扣由适应或氧气可用性而不是适应产生的差异的可能性。从之前的研究以来,似乎这个人口的个人将其宽容性能范围更扩展到血液化水域中,进一步进入血液化水域。建议当地气候变化是MicroVolutions驱动器,因为平均每日降水量增加,英国普利茅斯没有/痕量降水量的每年患者数量下降。气候变化往往被认为是全球现象,但它推动了当地政权转变。在这里,我们建议进化转变,其占着一个百年长期降水的局部变化。

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