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首页> 外文期刊>Journal of Insect Physiology >Fatty acid composition and extreme temperature tolerance following exposure to fluctuating temperatures in a soil arthropod
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Fatty acid composition and extreme temperature tolerance following exposure to fluctuating temperatures in a soil arthropod

机译:暴露于土壤节肢动物中温度波动后的脂肪酸组成和极端温度耐受性

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摘要

Ectotherms commonly adjust their lipid composition to ambient temperature to counteract detrimental thermal effects on lipid fluidity. However, the extent of lipid remodeling and the associated fitness consequences under continuous temperature fluctuations are not well-described. The objective of this study was to investigate the effect of repeated temperature fluctuations on fatty acid composition and thermal tolerance. We exposed the springtail Orchesella cincta to two constant temperatures of 5 and 20 degrees C, and a continuously fluctuating treatment between 5 and 20 degrees C every 2 days. Fatty acid composition differed significantly between constant low and high temperatures. As expected, animals were most cold tolerant in the low temperature treatment, while heat tolerance was highest under high temperature. Under fluctuating temperatures, fatty acid composition changed with temperature initially, but later in the experiment fatty acid composition stabilized and closely resembled that found under constant warm temperatures. Consistent with this, heat tolerance in the fluctuating temperature treatment was comparable to the constant warm treatment. Cold tolerance in the fluctuating temperature treatment was intermediate compared to animals acclimated to constant cold or warmth, despite the fact that fatty acid composition was adjusted to warm conditions. This unexpected finding suggests that in animals acclimated to fluctuating temperatures an additional underlying mechanism is involved in the cold shock response. Other aspects of homeoviscous adaptation may protect animals during extreme cold. This paper forms a next step to fully understand the functioning of ectotherms in more thermally variable environments
机译:等温线通常将其脂质成分调整到环境温度,以抵消对脂质流动性的有害热影响。然而,在连续的温度波动下脂质重塑的程度和相关的适应性后果并未得到充分描述。这项研究的目的是研究反复的温度波动对脂肪酸组成和耐热性的影响。我们将凤尾鱼Orchesella cincta暴露于5和20摄氏度的两个恒定温度下,并每2天在5和20摄氏度之间进行连续波动的处理。恒定的低温和高温之间的脂肪酸组成差异很大。不出所料,动物在低温处理中最耐寒,而高温下的耐热性最高。在波动的温度下,脂肪酸组成最初随温度而变化,但后来在实验中,脂肪酸组成稳定并非常类似于在恒定温热条件下发现的脂肪酸组成。与此相一致,波动温度处理中的耐热性与恒定温热处理相当。尽管将脂肪酸组成调节至温暖的条件,但与适应恒定的寒冷或温暖的动物相比,在波动温度处理中的寒冷耐受性处于中等水平。这一出乎意料的发现表明,在适应温度波动的动物中,冷休克反应还涉及其他潜在机制。顺势适应的其他方面可以在极端寒冷时保护动物。本文构成了下一步,以充分理解在更多热变化环境中等温线的功能

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