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首页> 外文期刊>Proceedings of the Royal Society. Biological sciences >Evidence for non-colligative function of small cryoprotectants in a freeze-tolerant insect
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Evidence for non-colligative function of small cryoprotectants in a freeze-tolerant insect

机译:小冷冻保护剂在冷冻耐受昆虫中的非播放功能的证据

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Freeze tolerance, the ability to survive internal ice formation, facilitates survival of some insects in cold habitats. Low-molecular-weight cryoprotectants such as sugars, polyols and amino acids are hypothesized to facilitate freeze tolerance, but their in vivo function is poorly understood. Here, we use a combination of metabolomics and manipulative experiments in vivo and ex vivo to examine the function of multiple cryoprotectants in the spring field cricket Gryllus veletis. Cold-acclimated G. veletis are freeze-tolerant and accumulate myo-inositol, proline and trehalose in their haemolymph and fat body. Injecting freeze-tolerant crickets with proline and trehalose increases survival of freezing to lower temperatures or for longer times. Similarly, exogenous myo-inositol and trehalose increase ex vivo freezing survival of fat body cells from freeze-tolerant crickets. No cryoprotectant (alone or in combination) is sufficient to confer freeze tolerance on non-acclimated, freeze-intolerant G. veletis. Given that each cryoprotectant differentially impacts survival in the frozen state, we conclude that small cryoprotectants are not interchangeable and likely function non-colligatively in insect freeze tolerance. Our study is the first to experimentally demonstrate the importance of non-colligative cryoprotectant function for insect freeze tolerance both in vivo and ex vivo, with implications for choosing new molecules for cryopreservation.
机译:冷冻耐受性,在内冰的内冰中存活的能力,促进了一些昆虫在冷栖息地中的存活。低分子量冷冻保护剂如糖,多元醇和氨基酸被假设以促进冻耐受,但它们的体内功能较差。在这里,我们使用体内和前体内的代谢组科和操纵实验的组合来检查春天柱蟋蟀血管血管障碍物中多种冷冻保护剂的功能。冷适应的G.Veletis是冷冻耐热的,在其毒液和脂肪体内积累肌醇,脯氨酸和海藻糖。用脯氨酸和海藻糖注射耐冷冻舱蟋蟀会增加冷冻到较低温度或更长的时间的存活。类似地,外源性肌醇和海藻糖增加脂肪体细胞的脂肪体细胞的脂肪体内肌醇和海藻糖。没有冷冻保护剂(单独或组合)足以赋予非适应的冻结耐热性G. Veletis的冻结耐受性。鉴于每种冷冻保护剂差异地影响冷冻状态的生存,我们得出结论,小冷冻保护剂在昆虫冻耐受中不可互换和可能的功能。我们的研究是第一个通过实验证明在体内和离体内昆虫冻土耐受性的非溶解冷冻保护功能的重要性,并有影响选择新分子进行冷冻保存。

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