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通过转录调控实现对不同热环境的进化适应。

Evolutionary adaptation to different thermal environments via transcriptional regulation.

作者信息

Crawford D L, Powers D A

机构信息

Department of Organismal Biology and Anatomy, University of Chicago, Illinois 60637.

出版信息

Mol Biol Evol. 1992 Sep;9(5):806-13. doi: 10.1093/oxfordjournals.molbev.a040762.

Abstract

Populations of the teleost fish Fundulus heteroclitus are subjected to the clinical variation in environmental temperatures that occurs along the eastern seacoast of North America. In concordance with this change in temperature is the clinal variation in the enzyme concentration of the heart-type lactate dehydrogenase (LDH-B; E.C.1.1.1.27). Previously we have shown that the compensating change in the LDH-B enzyme concentration is due to a change in the amount of LDH-B mRNA, but we did not define whether this was due to differences in mRNA stability or to differences in rate of transcription. The results presented here help clarify the molecular mechanism responsible for the variation in Ldh-B gene expression: the rate of transcription from the Ldh-B locus is significantly different between populations, and this difference is responsible for the compensatory change in LDH-B enzyme concentration.

摘要

硬骨鱼Fundulus heteroclitus的种群面临着沿北美东海岸出现的环境温度的临床变化。与这种温度变化相一致的是心脏型乳酸脱氢酶(LDH-B;E.C.1.1.1.27)的酶浓度的渐变。此前我们已经表明,LDH-B酶浓度的补偿性变化是由于LDH-B mRNA量的变化,但我们没有确定这是由于mRNA稳定性的差异还是转录速率的差异。这里呈现的结果有助于阐明负责Ldh-B基因表达变化的分子机制:Ldh-B基因座的转录速率在不同种群之间存在显著差异,并且这种差异是导致LDH-B酶浓度补偿性变化的原因。

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