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Desiccation plasticity in the embryonic life histories of non-annual rivulid species

机译:一年生小河豚物种胚胎生命史中的干燥可塑性

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Background Diapause is a developmental arrest present in annual killifish, whose eggs are able to survive long periods of desiccation when the temporary ponds they inhabit dry up. Diapause can occur in three different developmental stages. These differ, within and between species, in their responsiveness to different environmental cues. A role of developmental plasticity and genetic assimilation in diapause evolution has been previously suggested but not experimentally explored. We investigated whether plastic developmental delays or arrests provoked by an unusual and extreme environment could be the ancestral condition for diapause. This would be in agreement with plasticity evolution playing a role in the emergence of diapause in this group. We have used a comparative experimental approach and exposed embryos of non-annual killifish belonging to five different species from the former genus Rivulus to brief periods of desiccation. We have estimated effects on developmental and mortality rates during and after the desiccation treatment. Results Embryos of these non-annual rivulids decreased their developmental rates in early stages of development in response to desiccation and this effect persisted after the treatment. Two pairs of two different species had sufficient sample sizes to investigate rates of development in later stages well. In one of these, we found cohorts of embryos in the latest stages of development that did not hatch over a period of more than 1 month without mortality. Several properties of this arrest are also used to characterize diapause III in annual killifish. Such a cohort is present in control conditions and increases in frequency in the desiccation treatment. Conclusions The presence of plasticity for developmental timing and a prolonged developmental arrest in non-annual rivulids, suggest that a plastic developmental delay or diapause might have been present in the shared ancestor of annual and non-annual South American killifish and that the evolution of plasticity could have played a role in the emergence of the diapauses. Further comparative experimental studies and field research are needed to better understand how diapause and its plasticity evolved in this group.
机译:背景滞育是一年生金鱼的发育停滞期,当它们居住的临时池塘干dry时,其卵能长时间存活。滞育可发生在三个不同的发育阶段。在物种内部和物种之间,它们对不同环境线索的响应能力不同。先前已经提出了发育可塑性和遗传同化在滞育进化中的作用,但没有进行实验性探索。我们调查了塑料发育延迟或由异常和极端环境引起的停滞是否可能是滞育的原始条件。这与可塑性进化在滞育的出现中起作用有关。我们使用了一种比较实验方法,暴露了从一年生Rivulus到短暂干燥的五种不同种类的非年度kill鱼的胚胎。我们估计了脱水处理期间和之后对发育和死亡率的影响。结果这些非年生小河流的胚胎在发育早期响应于干燥而降低了它们的发育速率,并且这种作用在治疗后持续存在。两对两个不同的物种具有足够的样本量,可以很好地调查后期的发育速率。在其中一个中,我们发现了处于最新发育阶段的胚胎群体,它们在超过1个月的时间内没有孵化而没有死亡。这种逮捕的一些特性也被用来表征一年生幼鱼的滞育III。这样的队列存在于对照条件中,并且在干燥处理中频率增加。结论在非一年生小河虾中,发育时间的可塑性和长期发育停滞的存在表明,在南美一年生和非一年生金鱼的共同祖先中可能存在塑性发育延迟或滞育,并且可塑性的演变可能在滞育的发生中发挥了作用。需要进一步的对比实验研究和田间研究,以更好地了解滞育及其可塑性的演变。

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