首页> 外文期刊>The Journal of Experimental Biology >Myo-inositol as a main metabolite in overwintering flies: seasonal metabolomic profiles and cold stress tolerance in a northern drosophilid fly.
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Myo-inositol as a main metabolite in overwintering flies: seasonal metabolomic profiles and cold stress tolerance in a northern drosophilid fly.

机译:肌醇是越冬果蝇的主要代谢产物:北方果蝇的季节性代谢组学特征和耐冷胁迫。

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摘要

Coping with seasonal changes in temperature is an important factor underlying the ability of insects to survive over the harsh winter conditions in the northern temperate zone, and only a few drosophilids have been able to colonize sub-polar habitats. Information on their winter physiology is needed as it may shed light on the adaptive mechanisms of overwintering when compared with abundant data on the thermal physiology of more southern species, such as Drosophila melanogaster. Here we report the first seasonal metabolite analysis in a Drosophila species. We traced changes in the cold tolerance and metabolomic profiles in adult Drosophila montana flies that were exposed to thermoperiods and photoperiods similar to changes in environmental conditions of their natural habitat in northern Finland. The cold tolerance of diapausing flies increased noticeably towards the onset of winter; their chill coma recovery times showed a seasonal minimum between late autumn and early spring, whereas their survival after cold exposure remained high until late spring. The flies had already moderately accumulated glucose, trehalose and proline in autumn, but the single largest change occurred in myo-inositol concentrations. This increased up to 400-fold during the winter and peaked at 147 nmol mg-1 fresh mass, which is among the largest reported accumulations of this compound in insects.
机译:应对温度的季节性变化是潜在昆虫在北温带严冬条件下生存的重要因素,只有少数果蝇能够定居亚极生境。需要有关其冬季生理的信息,因为与更多南方物种(如果蝇)的热生理数据相比,它可能揭示了越冬的适应机制。在这里,我们报告果蝇物种中的第一个季节性代谢物分析。我们追踪了暴露于热周期和光周期的成年果蝇蒙大拿州果蝇的耐寒性和代谢组学特征的变化,类似于其芬兰北部自然栖息地的环境条件变化。到冬天来临,滞育性苍蝇的耐寒性显着提高。他们的冷昏迷恢复时间在深秋和初春之间显示出季节性最小,而在寒冷暴露后直到春末它们的存活率仍然很高。苍蝇在秋天已经适度地积累了葡萄糖,海藻糖和脯氨酸,但是最大的变化发生在肌醇浓度上。在冬季,它增加了多达400倍,并达到147 nmol mg -1 的新鲜质量,这是该化合物在昆虫中积累的最大量之一。

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