Suppr超能文献

应对混乱:不可预测的食物供应加剧了干旱地区有袋动物肥尾袋鼩(Sminthopsis crassicaudata)对蛰伏状态的利用。

Coping with chaos: unpredictable food supplies intensify torpor use in an arid-zone marsupial, the fat-tailed dunnart (Sminthopsis crassicaudata).

作者信息

Munn Adam J, Kern Pippa, McAllan Bronwyn M

机构信息

Faculty of Veterinary Science, The University of Sydney, Sydney, NSW, 2006, Australia.

出版信息

Naturwissenschaften. 2010 Jun;97(6):601-5. doi: 10.1007/s00114-010-0670-2. Epub 2010 May 5.

Abstract

The severity, duration and amplitude of extreme weather events are forecast to intensify with current climate trends, over both long (e.g. seasonal) and short (e.g. daily) time-scales. As such, the predictability of food supplies for many small endotherms is likely to become increasingly important. Numerous small mammals and birds combat food shortages using torpor, a controlled reduction in metabolic rate and body temperature that helps lower their daily energy requirements. As such, torpor often has been cited as a key feature allowing some small endotherms to survive highly unpredictable climates, such as tropics or dry deserts, but mensurative demonstrations of this are lacking. We have shown here that when a small desert marsupial, the fat-tailed dunnart (Sminthopsis crassicaudata), is offered unpredictable levels of daily food, they increase frequency of daily torpor and length of bouts compared with animals offered ad libitum food, but this was not found for animals offered a 75% [corrected] food-restricted diet. Our data suggest that simple food restriction may not be sufficient for evaluating the efficacy of torpor as a strategy for managing unpredictable climates.

摘要

预计随着当前气候趋势发展,极端天气事件的严重程度、持续时间和强度在长期(如季节)和短期(如每日)时间尺度上都会加剧。因此,对许多小型恒温动物来说,食物供应的可预测性可能会变得越来越重要。许多小型哺乳动物和鸟类通过蛰伏来应对食物短缺,蛰伏是一种对代谢率和体温的可控降低,有助于降低它们的每日能量需求。因此,蛰伏常被认为是一些小型恒温动物在高度不可预测的气候条件(如热带或干旱沙漠)下生存的关键特征,但缺乏对此的测量证明。我们在此表明,当给小型沙漠有袋动物肥尾袋鼬(Sminthopsis crassicaudata)提供每日食物量不可预测的情况时,与提供随意进食食物的动物相比,它们会增加每日蛰伏的频率和蛰伏期的长度,但对于提供75%[校正后]食物限制饮食的动物则未发现这种情况。我们的数据表明,单纯的食物限制可能不足以评估蛰伏作为应对不可预测气候的一种策略的有效性。

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验