代谢物、离子和火蜥蜴幼虫季节性冷硬化背后的机制

IF 2.3 2区 农林科学 Q1 ENTOMOLOGY
Jonathan Y.B. Jedal, Anders Malmendal, Hans Ramløv
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引用次数: 0

摘要

黑头红心甲 Pyrochroa coccinea 的幼虫在北欧雌雄异株森林的枯木树皮下越冬,因此暴露在低于其体液熔点的温度下。在这里,我们通过对全年每月采集的野外样本进行分析,探索其季节性冷硬化背后的机制。11月下半月,低致死温度和过冷却点均下降了10℃,12月初达到-15℃左右。伴随这一变化的是血淋巴渗透压增加了 320 mosmol/kg,与夏季水平相比增加了一倍。我们利用核磁共振代谢组学来鉴定和测量血淋巴中负责低温保护的含C-H代谢物的绝对浓度。结果发现,葡萄糖或三卤糖的增幅最大,平均总增幅为 120 毫摩尔。脯氨酸、丙氨酸和胆碱的浓度各增加了约 10 毫摩尔。相反,磷脂酰胆碱和磷脂酰乙醇胺则减少了一半,总共减少了约 50 毫摩尔。这些测量结果得到了离子交换色谱测量结果的补充。这使我们能够解释夏季血淋巴中的所有渗透压,测量到的浓度变化解释了冷硬化时观察到的渗透压增加的 40%。初步结果表明,其余部分可能是由非共轭蛋白质造成的。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Metabolites, ions, and the mechanisms behind seasonal cold hardening of Pyrochroa coccinea (Pyrochroidae) larvae

Metabolites, ions, and the mechanisms behind seasonal cold hardening of Pyrochroa coccinea (Pyrochroidae) larvae

Metabolites, ions, and the mechanisms behind seasonal cold hardening of Pyrochroa coccinea (Pyrochroidae) larvae

The larvae of the black headed cardinal beetle Pyrochroa coccinea, overwinters under the bark of dead logs in northern European dioecious forests, and are thus exposed to temperatures below the melting point of their bodily fluids. Here we explore the mechanisms behind their seasonal cold hardening by characterising field samples collected monthly throughout the year. Both the lower lethal temperature and supercooling point dropped as much as 10℃ in the second half of November, reaching values around –15℃ by the beginning of December. This change was accompanied by a 320 mosmol/kg increase in hemolymph osmolality, which is a doubling compared to the summer levels. We used NMR metabolomics to identify and measure the absolute concentrations of the responsible cryoprotective C-H containing metabolites in the hemolymph. The largest increase was found to be in either glucose or trehalose, with an average total increase of 120 mM. Proline, alanine, and choline concentrations were found to increase by around 10 mM each. Contrarily, phosphocholine and phosphoethanolamine were halved, resulting in a total decrease of around 50 mM. These measurements were complemented with ion exchange chromatography measurements. This allowed us to account for all the osmotic pressure in the summer hemolymph, and the measured concentration changes explained as much as 40 % of the observed osmolality increase upon cold hardening. Preliminary results indicate that the remainder may be explained by non-colligative protein contributions.

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来源期刊
Journal of insect physiology
Journal of insect physiology 生物-昆虫学
CiteScore
4.50
自引率
4.50%
发文量
77
审稿时长
57 days
期刊介绍: All aspects of insect physiology are published in this journal which will also accept papers on the physiology of other arthropods, if the referees consider the work to be of general interest. The coverage includes endocrinology (in relation to moulting, reproduction and metabolism), pheromones, neurobiology (cellular, integrative and developmental), physiological pharmacology, nutrition (food selection, digestion and absorption), homeostasis, excretion, reproduction and behaviour. Papers covering functional genomics and molecular approaches to physiological problems will also be included. Communications on structure and applied entomology can be published if the subject matter has an explicit bearing on the physiology of arthropods. Review articles and novel method papers are also welcomed.
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