冬眠有袋动物的消化系统的季节变化和表型灵活性。

IF 1.9 3区 生物学 Q1 ZOOLOGY
Pablo Sabat, Lucas Navarrete, Francisco Del Basto, Luis M Flores-Velázquez, Roberto F Nespolo
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引用次数: 0

摘要

在冬眠期间,代谢活动的减少使它们能够承受有限的资源和恶劣的天气。因此,动物表现出活动减少和摄食减少,这涉及到能源节约。因此,由于冬眠的长时间代谢抑制,预计生理和形态消化能力都会降低,这涉及到消化系统在几个水平上的表型灵活性。本研究对南美洲南部温带雨林特有的异温有袋动物穴居猿猴(Dromiciops gliroides)进行了夏季(活动)和冬季(冬眠)小肠形态和生理的比较。我们于冬季(n = 10)和夏季(n = 7)在智利瓦尔迪维亚附近使用战斧诱捕器采集个体,提取小肠,然后进行常规组织学和生物化学分析。我们测量了二糖酶(蔗糖酶和麦芽糖酶)活性作为碳水化合物消化能力的指标,n -氨基肽酶活性作为蛋白质消化能力的指标。我们的结果显示,冬眠动物的双糖酶活性降低32%-44%,蛋白酶活性降低60%。此外,氨基肽酶- n活性沿肠轴近端至远端下降。相反,小肠重量和绒毛长度在不同季节之间保持不变。这些发现表明,肠道重塑是对季节性能量需求的响应,其生化变化比形态变化更大,可能反映了冬眠后肠道萎缩和再生相关的高能量消耗。我们的结论是,冬眠触发了胶质d.s liroides消化系统的肠道重塑和表型灵活性,代表了应对季节性环境条件的关键机制。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Seasonal Changes and Phenotypic Flexibility in the Digestive System of the Hibernating Marsupial Dromiciops gliroides.

During hibernation, reduced metabolic activity enables to withstand periods of limited resources and harsh weather. Therefore, animals exhibit reduced activity and decreased feeding, which involves energy savings. Thus, a reduction in both physiological and morphological digestive capacities is expected due to the prolonged metabolic depression of hibernation, which involves phenotypic flexibility of the digestive system at several levels. We studied Dromiciops gliroides a heterothermic marsupial endemic of the temperate rainforests of southern South America, by comparing the morphology and physiology of the small intestine between summer (active) and winter (hibernation) seasons. We collected individuals near Valdivia (Chile) in winter (n = 10) and summer (n = 7) using Tomahawk traps, for extracting small intestines, which were then processed for routine histology and biochemistry analysis. We measured disaccharidase activities (sucrase and maltase) as indicators of carbohydrate digestive capacity and N-aminopeptidase activity as an indicator of protein digestion. Our result showed a 32%-44% reduction in disaccharidase activity and 60% reduction in protease activity in torpid animals. Additionally, aminopeptidase-N activity decreased along the proximal-to-distal intestinal axis. In contrast, small intestine weight and villi length remained unchanged between seasons. These findings suggest that gut remodeling occurs in response to seasonal energetic demands, with greater biochemical changes than morphological ones, possibly reflecting the high energetic costs associated with intestinal shrinking and regrowth after hibernation. We conclude that hibernation triggers gut remodeling and phenotypic flexibility in the digestive systems of D. gliroides, representing a crucial mechanism for coping with seasonal environmental conditions.

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来源期刊
Journal of experimental zoology. Part A, Ecological and integrative physiology
Journal of experimental zoology. Part A, Ecological and integrative physiology Biochemistry, Genetics and Molecular Biology-Molecular Biology
CiteScore
4.90
自引率
3.60%
发文量
0
期刊介绍: The Journal of Experimental Zoology – A publishes articles at the interface between Development, Physiology, Ecology and Evolution. Contributions that help to reveal how molecular, functional and ecological variation relate to one another are particularly welcome. The Journal publishes original research in the form of rapid communications or regular research articles, as well as perspectives and reviews on topics pertaining to the scope of the Journal. Acceptable articles are limited to studies on animals.
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