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蜜蜂通过改变苹果酸脱氢酶的结构实现热适应。

Thermal adaptation in the honeybee () via changes to the structure of malate dehydrogenase.

作者信息

Meemongkolkiat Thitipan, Allison Jane, Seebacher Frank, Lim Julianne, Chanchao Chanpen, Oldroyd Benjamin P

机构信息

Faculty of Science, Chulalongkorn University, Bangkok 10330, Thailand.

Macleay Building A12, The University of Sydney, Sydney, NSW 2006, Australia.

出版信息

J Exp Biol. 2020 Sep 25;223(Pt 18):jeb228239. doi: 10.1242/jeb.228239.

Abstract

In honeybees there are three alleles of cytosolic malate dehydrogenase gene: F, M and S. Allele frequencies are correlated with environmental temperature, suggesting that the alleles have temperature-dependent fitness benefits. We determined the enzyme activity of each allele across a range of temperatures The F and S alleles have higher activity and are less sensitive to high temperatures than the M allele, which loses activity after incubation at temperatures found in the thorax of foraging bees in hot climates. Next, we predicted the protein structure of each allele and used molecular dynamics simulations to investigate their molecular flexibility. The M allozyme is more flexible than the S and F allozymes at 50°C, suggesting a plausible explanation for its loss of activity at high temperatures, and has the greatest structural flexibility at 15°C, suggesting that it can retain some enzyme activity at cooler temperatures. MM bees recovered from 2 h of cold narcosis significantly better than all other genotypes. Combined, these results explain clinal variation in malate dehydrogenase allele frequencies in the honeybee at the molecular level.

摘要

在蜜蜂中,胞质苹果酸脱氢酶基因有三个等位基因:F、M和S。等位基因频率与环境温度相关,这表明这些等位基因具有温度依赖性的适应性优势。我们测定了每个等位基因在一系列温度下的酶活性。F和S等位基因具有较高的活性,并且比M等位基因对高温的敏感性更低,M等位基因在炎热气候下觅食蜜蜂胸部的温度下孵育后会失去活性。接下来,我们预测了每个等位基因的蛋白质结构,并使用分子动力学模拟来研究它们的分子柔韧性。在50°C时,M同工酶比S和F同工酶更具柔韧性,这为其在高温下失去活性提供了一个合理的解释,并且在15°C时具有最大的结构柔韧性,这表明它在较凉爽的温度下可以保留一些酶活性。MM蜜蜂从2小时的冷麻醉中恢复得明显比所有其他基因型都好。综合起来,这些结果在分子水平上解释了蜜蜂中苹果酸脱氢酶等位基因频率的渐变变异。

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