Thermal hysteresis of antifreeze proteins considering Fragilariopsis cylindrus

B. Kutschan, S. Thoms, M. Bayer-Giraldi
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引用次数: 2

Abstract

The diatom species Fragilariopsis cylindrus produces antifreeze proteins (AFPs) of moderate thermal hysteresis. Two concepts are often used in order to describe a thermal hysteresis, on the one hand the irreversible nucleation growth described by the Gibbs-Thomson relation and on the other hand a nonlinear adsorption kinetics of the ice-binding proteins. We refer to the Landau's phase transition theory and predict a saturation concentration of AFPs for the maximal freezing depression. The derived functional relation between temperature and AFP concentration is more complex than a simple power law as suggested by thermal hysteresis experiments. With the parameter set obtained for Fragilariopsis cylindrus the modelled curve is comparable with the often used square root law.
考虑白茅脆毛菌的抗冻蛋白热滞性
硅藻品种薄茅藻产生抗冻蛋白(AFPs)的中度热滞后。为了描述热滞后,通常使用两个概念,一方面是Gibbs-Thomson关系描述的不可逆成核生长,另一方面是冰结合蛋白的非线性吸附动力学。我们参考了朗道相变理论,并预测了最大冻结降的AFPs饱和浓度。推导出的温度与AFP浓度之间的函数关系比热滞后实验表明的简单幂律更为复杂。利用得到的参数集,所建立的曲线与常用的平方根规律相当。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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