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Freezing in the Antarctic limpet, Nacella concinna.

机译:冻结在南极帽贝,Nacella concinna。

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摘要

The process of organismal freezing in the Antarctic limpet, Nacella concinna, is complicated by molluscan biology. Internal ice formation is, in particular, mediated by two factors: (a) the provision of an inoculative target for ice formation in the exposed mucus-secreting foot; and (b) osmoconformity to the marine environment. With regard to the first, direct observations of the independent freezing of pedal mucus support the hypothesis that internal ice formation is delayed by the mucal film. As to the second, ice nucleation parametrics of organismal tissue (head, midgut, gonad, foot) and mucus in both inter- and subtidal populations were characterized by high melting points (range=-4.61 to -6.29 degrees C), with only c.50% of a given sample osmotically active. At this stage it would be premature to ascribe a cryo-adaptive function to the mucus as the protective effects are more readily attributed to the physical properties of the secretion (i.e. viscosity) and their corresponding effects on the rate of heat transfer. As it is difficult to thermally distinguish between the freezing of mucus and the rest of the animal, the question as to whether it is tolerant of internal as well as external ice formation remains problematic, although it may be well suited to the osmotic stresses of organismal freezing.
机译:软体动物生物学使南极帽贝Nacona continna中的生物冻结过程变得复杂。内部结冰尤其由两个因素来介导:(a)为裸露的粘液分泌足中的结冰提供接种目标; (b)对海洋环境渗透性。关于第一个方面,对踏板粘液独立冻结的直接观察支持以下假设:内部冰的形成被粘膜延迟。至于第二点,潮间和潮下种群中生物组织(头,中肠,性腺,足)和粘液的冰核参数以高熔点(范围为-4.61至-6.29摄氏度)为特征,给定样品的0.5%具有渗透活性。在这一阶段,将冷冻适应功能归因于粘液为时尚早,因为保护作用更容易归因于分泌物的物理性质(即粘度)及其对传热速率的相应作用。由于很难通过热学方法区分粘液的冻结和动物的其余部分,因此尽管它很适合有机体的渗透压,但它对内部和外部结冰的耐受性仍然存在问题冷冻。

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