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首页> 外文期刊>Ecology and Evolution >Timing of maternal exposure to toxic cyanobacteria and offspring fitness in Daphnia magna : Implications for the evolution of anticipatory maternal effects
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Timing of maternal exposure to toxic cyanobacteria and offspring fitness in Daphnia magna : Implications for the evolution of anticipatory maternal effects

机译:孕妇在水蚤中接触有毒蓝细菌和后代适应性的时机:对预期产妇效应演变的影响

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Organisms that regularly encounter stressful environments are expected to use cues to develop an appropriate phenotype. Water fleas ( Daphnia spp.) are exposed to toxic cyanobacteria during seasonal algal blooms, which reduce growth and reproductive investment. Because generation time is typically shorter than the exposure to cyanobacteria, maternal effects provide information about the local conditions subsequent generations will experience. Here, we evaluate if maternal effects in response to microcystin, a toxin produced by cyanobacteria, represent an inheritance system evolved to transmit information in Daphnia magna . We exposed mothers as juveniles and/or as adults, and tested the offspring's fitness in toxic and non‐toxic environments. Maternal exposure until reproduction reduced offspring fitness, both in the presence and in the absence of toxic cyanobacteria. However, this effect was accompanied by a small positive fitness effect, relative to offspring from unexposed mothers, in the presence of toxic cyanobacteria. This effect was mainly elicited in response to maternal exposure to toxic cyanobacteria early in life and less so during reproduction. None of these effects were explained by changes in egg size. A meta‐analysis using our and others’ experiments suggests that the adaptive value of maternal effects to cyanobacteria exposure is weak at best. We suggest that the beneficial maternal effect in our study is an example of phenotypic accommodation spanning generations, rather than a mechanism evolved to transmit information about cyanobacteria presence between generations.
机译:经常遇到压力环境的生物应使用提示来发展适当的表型。在季节性藻华期间,水蚤(蚤属)会暴露于有毒的蓝细菌,这会减少生长和繁殖投资。由于产生时间通常比暴露于蓝细菌的时间短,因此母体效应提供了有关后代将经历的局部条件的信息。在这里,我们评估母体对微囊藻毒素(由蓝细菌产生的毒素)的反应是否代表进化为在水蚤中传播信息的遗传系统。我们将母亲当成年幼和/或成年后暴露,并测试了后代在有毒和无毒环境中​​的健康状况。在有毒蓝细菌的存在和不存在的情况下,母体接触直至繁殖都降低了后代的适应性。但是,在存在毒性蓝细菌的情况下,相对于未接触母亲的后代,该效应伴随着小的积极适应性效应。这种效应主要是由于母亲在生命早期和生殖过程中暴露于毒性蓝细菌而引起的。鸡蛋大小的变化不能解释这些影响。使用我们和其他人的实验进行的荟萃分析表明,母体效应对蓝藻暴露的适应性价值充其量是微弱的。我们建议,在我们的研究中,有益的母体效应是跨世代表型调节的一个例子,而不是进化为在世代之间传递有关蓝细菌存在的信息的机制。

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