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热液喷口管虫(Ridgeia piscesae)血红蛋白基因表达的环境差异。

Environmental differences in hemoglobin gene expression in the hydrothermal vent tubeworm, Ridgeia piscesae.

作者信息

Carney Susan L, Flores Jason F, Orobona Kathryn M, Butterfield David A, Fisher Charles R, Schaeffer Stephen W

机构信息

Department of Biology, The Pennsylvania State University, University Park, PA 16802-5301, USA.

出版信息

Comp Biochem Physiol B Biochem Mol Biol. 2007 Mar;146(3):326-37. doi: 10.1016/j.cbpb.2006.11.002. Epub 2006 Nov 17.

Abstract

Ridgeia piscesae, the siboglinid tubeworm inhabiting the hydrothermal vents of the northeast Pacific Juan de Fuca Ridge, displays a wide range of microhabitat-specific, genetically indistinguishable phenotypes. Local microhabitat conditions are hypothesized to play a role in the differentiation of R. piscesae phenotypes. Extracellular hemoglobins serve to connect the tubeworm and the surrounding vent fluid, binding environmental sulfide and oxygen for transport to endosymbionts that use the chemical energy for carbon fixation. Because hemoglobin is essential for this symbiosis, we examined its expression in two of the most extreme R. piscesae phenotypes at two levels: the mRNA encoding the globin subunits and the whole molecules in coelomic and vascular fluids. Levels of gene expression were up to 12 times greater in short-fat R. piscesae from higher temperature, sulfide chimney environments compared to long-skinny animals from a low temperature, diffuse flow basalt habitat. Gene expression levels were consistent with the relative concentrations of hemoglobin molecules in the vascular and coelomic fluids. Up to a 20-fold variation in globin gene expression was detected between the same phenotype from different sites. These data demonstrate that local environmental factors influence not only phenotype but gene expression and its resulting physiological outcome within this unique species.

摘要

多毛虫Ridgeia piscesae生活在东北太平洋胡安·德富卡海岭的热液喷口,呈现出多种特定微生境的、基因上无法区分的表型。据推测,当地微生境条件在R. piscesae表型分化中起作用。细胞外血红蛋白用于连接管虫和周围的喷口流体,结合环境中的硫化物和氧气,将其运输到利用化学能进行碳固定的内共生体。由于血红蛋白对这种共生关系至关重要,我们在两个层面研究了它在两种最极端的R. piscesae表型中的表达:编码球蛋白亚基的mRNA以及体腔液和血管液中的完整分子。与来自低温、扩散流玄武岩栖息地的瘦长个体相比,来自高温、硫化物烟囱环境的短粗R. piscesae的基因表达水平高出多达12倍。基因表达水平与血管液和体腔液中血红蛋白分子的相对浓度一致。在来自不同地点的相同表型之间,检测到球蛋白基因表达存在高达20倍的差异。这些数据表明,当地环境因素不仅影响该独特物种的表型,还影响基因表达及其产生的生理结果。

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