被毛结构和颜色在决定夏季干旱生活袋鼠的太阳热负荷中的功能相互作用:平衡隐性和体温调节。

IF 1.7 3区 生物学 Q4 PHYSIOLOGY Journal of Comparative Physiology B-Biochemical Systems and Environmental Physiology Pub Date : 2024-02-01 Epub Date: 2024-02-09 DOI:10.1007/s00360-024-01534-8
Terence J Dawson, Shane K Maloney
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引用次数: 0

摘要

太阳辐射与哺乳动物皮毛之间的相互作用非常复杂。可见光谱中的辐射反射产生的颜色有多种作用,包括性显示和隐身,即伪装。被皮毛吸收的辐射会转化为热量,其中一部分会影响皮肤。并非所有的吸收都发生在皮毛表面,有些辐射在被吸收前会穿透皮毛,尤其是浅色皮毛。在对袋鼠的这一现象进行研究时,我们发现,尽管两种被毛最薄的干旱地区袋鼠的太阳反射率明显不同,但它们的有效热负荷却相似。这些袋鼠是红袋鼠(Osphranter rufus)和西部灰袋鼠(Macropus fuliginosus)。在这里,我们研究了与太阳辐射相关的热流模式与这些外衣的物理结构之间的联系。此外,我们还注意到风速变化的影响。通过将这些外衣安装在风洞中的热通量传感器/温控板装置上,在风速为 1 到 10 m s-1 的情况下测量了太阳辐射的变化以及由此产生的外衣热流。使用光谱类似于太阳辐射的灯作为太阳的替代物。红袋鼠对太阳光谱的综合反射率(40 ± 2%)高于灰袋鼠(28 ± 1%)。两个物种的皮毛深度和隔热性能没有差别,但纤维结构存在差异,尤其是纤维长度、纤维密度和纤维形状。尽管有效太阳热负荷总体上没有差异,但两种动物皮毛内的热通量却出现了变化。我们认为,对低温的总体需求,尤其是对适应于更开阔沙漠的红袋鼠而言,导致了复杂的适应性,从而延缓了太阳辐射对其反射性更强的皮毛的穿透。
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Functional interactions between coat structure and colour in the determination of solar heat load on arid living kangaroos in summer: balancing crypsis and thermoregulation.

Interactions of solar radiation with mammal fur are complex. Reflection of radiation in the visible spectrum provides colour that has various roles, including sexual display and crypsis, i.e., camouflage. Radiation that is absorbed by a fur coat is converted to heat, a proportion of which impacts on the skin. Not all absorption occurs at the coat surface, and some radiation penetrates the coat before being absorbed, particularly in lighter coats. In studies on this phenomenon in kangaroos, we found that two arid zone species with the thinnest coats had similar effective heat load, despite markedly different solar reflectances. These kangaroos were Red Kangaroos (Osphranter rufus) and Western Grey Kangaroos (Macropus fuliginosus).Here we examine the connections between heat flow patterns associated with solar radiation, and the physical structure of these coats. Also noted are the impacts of changing wind speed. The modulation of solar radiation and resultant heat flows in these coats were measured at wind speeds from 1 to 10 m s-1 by mounting them on a heat flux transducer/temperature-controlled plate apparatus in a wind tunnel. A lamp with a spectrum like solar radiation was used as a proxy for the sun. The integrated reflectance across the solar spectrum was higher in the red kangaroos (40 ± 2%) than in the grey kangaroos (28 ± 1%). Fur depth and insulation were not different between the two species, but differences occurred in fibre structure, notably in fibre length, fibre density and fibre shape. Patterns of heat flux within the species' coats occurred despite no overall difference in effective solar heat load. We consider that an overarching need for crypsis, particularly for the more open desert-adapted red kangaroo, has led to the complex adaptations that retard the penetrance of solar radiation into its more reflective fur.

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来源期刊
CiteScore
3.90
自引率
0.00%
发文量
51
审稿时长
3.5 months
期刊介绍: The Journal of Comparative Physiology B publishes peer-reviewed original articles and reviews on the comparative physiology of invertebrate and vertebrate animals. Special emphasis is placed on integrative studies that elucidate mechanisms at the whole-animal, organ, tissue, cellular and/or molecular levels. Review papers report on the current state of knowledge in an area of comparative physiology, and directions in which future research is needed.
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