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首页> 外文期刊>The Journal of Experimental Biology >How temperature influences the viscosity of hornworm hemolymph
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How temperature influences the viscosity of hornworm hemolymph

机译:温度如何影响角虫血淋巴的粘度

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Hemolymph is responsible for the transport of nutrients and metabolic waste within the insect circulatory system. Circulation of hemolymph is governed by viscosity, a physical property, which is well known to be influenced by temperature. However, the effect of temperature on hemolymph viscosity is unknown. We used Manduca sexta larvae to measure hemolymph viscosity across a range of physiologically relevant temperatures. Measurements were taken from 0 to 45 degrees C using a cone and plate viscometer in a sealed environmental chamber. Hemolymph viscosity decreased with increasing temperature, showing a 6.4-fold change (11.08 to 1.74 cP) across the temperature range. Viscosity values exhibited two behaviors. changing rapidly from 0 to 15 degrees C and slowly from 17.5 to 45 degrees C. To test the effects of large particulates (e.g. cells) on viscosity, we also tested hemolymph plasma alone. Plasma viscosity also decreased as temperature increased, but did not exhibit two slope regimes. suggesting that particulates strongly influence low-temperature shifts in viscosity values. These results suggest that as environmental temperatures decrease, insects experience dramatic changes in hemolymph viscosity, leading to altered circulatory flows or increased energetic input to maintain similar flows. Such physical effects represent a previously unrecognized factor in the thermal biology of insects.
机译:血淋巴负责昆虫循环系统内的营养和代谢废物的运输​​。血淋巴的循环受到粘度的控制,物理性质,众所周知,众所周知受到温度的影响。然而,温度对血淋巴粘度的影响是未知的。我们使用ManducaSexta幼虫来测量一系列生理相关温度的血淋巴粘度。在密封的环境室中使用锥形和板粘度计从0到45摄氏度取出测量。血淋巴粘度随着温度的增加而降低,显示在温度范围内的6.4倍(11.08至1.74cp)。粘度值表现出两种行为。从0到15摄氏度迅速变化,慢慢地从17.5到45℃。为了测试大颗粒(例如细胞)对粘度的影响,我们还单独测试血淋巴血浆。随着温度的增加,血浆粘度也降低,但没有表现出两个倾斜度。建议颗粒强烈影响粘度值的低温变化。这些结果表明,随着环境温度的降低,昆虫经历了血淋巴粘度的显着变化,导致循环流动或增加能量输入以保持类似的流量。这种物理效应代表了昆虫热生物学中以前未被识别的因素。

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