首页> 外文期刊>Journal of Comparative Physiology, B. Biochemical, Systemic, and Environmental Physiology >Is the strategy for cold hardiness in insects determined by their water balance? A study on two closely related families of beetles: Cerambycidae and Chrysomelidae.
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Is the strategy for cold hardiness in insects determined by their water balance? A study on two closely related families of beetles: Cerambycidae and Chrysomelidae.

机译:昆虫的抗寒性策略是否由它们的水平衡决定?对两个密切相关的甲虫科进行研究:天牛科和金眼科。

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摘要

The strategy for cold-hardiness and water balance features of two closely related families of Coleoptera, Cerambycidae and Chrysomelidae, were investigated. Cerambycids were freeze-avoiding with low supercooling points, whereas chrysomelids froze at high temperatures and were tolerant to freezing. Hence, the two families have adopted different strategies for cold-hardiness. Due to their low trans-cuticular water permeability, the cerambycids have low rates of evaporative water loss. Chrysomelids have much higher trans-cuticular water permeability, but freezing brings their body fluids in vapour pressure equilibrium with ice and prevents evaporative water loss. The differences in cold-hardiness strategies and rates of water loss are likely to reflect the water content of the diets of the two families. Cerambycids feed on dry wood with low water content, causing a restrictive water balance. Chrysomelids feed on leaves with high water content and may use evaporation through the cuticle as a route of water excretion. Haemolymph ice nucleators help chrysomelids to freeze at a high temperature and thus to maximize the period they spend in the water saving frozen state. The diet-related differences in water balance may be the reason why the two families have developed different strategies for cold-hardiness.
机译:研究了鞘翅目两个密切相关的科(天牛科和金眼科)的抗寒性和水平衡特征的策略。头孢类是避免冷冻的,具有较低的过冷点,而金鳞类在高温下会冻结并且耐冷冻。因此,两个家庭采取了不同的抗寒策略。由于角质层的透皮水渗透性低,因此其蒸发水损失率低。金龟子的透皮水渗透性要高得多,但是冷冻使它们的体液与冰达到蒸气压平衡,并防止了蒸发水的流失。耐寒性策略和水分流失率的差异很可能反映了两个家庭饮食中的水分含量。头足类动物以含水量低的干燥木材为食,导致水分平衡受限。金枪鱼以含水量高的叶片为食,并可能利用角质层蒸发作为水分排出的途径。血淋巴成核剂可帮助金龟子在高温下冻结,从而最大程度地延长了在节水冻结状态下的停留时间。与饮食有关的水平衡差异可能是两个家庭制定不同的抗寒策略的原因。

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