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Is diapause an ancient adaptation in Drosophila?

机译:滞育是果蝇的一种古老适应方法吗?

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摘要

D. melanogaster enters a state of reproductive arrest when exposed to low temperatures (12°C) and shorter photoperiods. A number of studies have suggested that diapause has recently evolved in European D. melanogaster populations, that it is not present in the sibling species D. simulans, that it is non-photoperiodic in American D. melanogaster populations, and that it spontaneously terminates after 6-8weeks. We have studied the overwintering phenotype under different conditions and observe that American, European and, surprisingly, African D. melanogaster populations can show photoperiodic diapause, as can European, but not African D. simulans. Surprisingly other Drosophila species from pan-tropical regions can also show significant levels of photoperiodic diapause. We observe that spontaneous termination of diapause after a few weeks can be largely avoided with a more realistic winter simulation for D. melanogaster, but not D. simulans. Examining metabolite accumulation during diapause reveals that the shallow diapause of D. melanogaster has similar features to that of other more robustly-diapausing species. Our results suggest that diapause may be an ancient character that emerged in the tropics to resist unfavourable seasonal conditions and which has been enhanced during D. melanogaster's colonisation of temperate regions. Our results also highlight how different methodologies to quantify diapause can lead to apparently conflicting results that we believe can now largely be resolved.
机译:D. melanogaster暴露于低温(12°C)和较短的光周期时会进入生殖停止状态。大量研究表明,欧洲滞育最近已发展成滞育,它在兄弟种D. simulans中不存在,在美国D. melanogaster种群中是非光周期的,并且自发终止于6-8周。我们研究了在不同条件下的越冬表型,并观察到美洲,欧洲以及令人惊讶的非洲黑腹果蝇种群都表现出光周期滞育,欧洲也是如此,但非洲黑猩猩却没有。出乎意料的是,来自泛热带地区的其他果蝇物种也表现出显着水平的光周期滞育。我们观察到,对于D. melanogaster,而不是D. simulans,通过更现实的冬季模拟,可以很大程度上避免几周后自然滞育的终止。检查滞育期间的代谢物积聚表明,D。melanogaster的浅滞育具有与其他更强烈滞渗的物种相似的特征。我们的研究结果表明,滞育可能是一种古老的特征,出现在热带地区以抵抗不利的季节性条件,并且在D. melanogaster对温带地区的殖民化过程中得到了增强。我们的结果还强调了量化滞育的不同方法如何导致明显矛盾的结果,我们认为现在可以在很大程度上解决该问题。

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