尿素的进出:低盐海螺中推测的dur3样尿素转运蛋白的鉴定及其在盐度变化下的表达

IF 2.3
Jan Knobloch, Sarah Gößeler, Laura I. R. Fuchs, J. Fuss, Montserrat Torres-Oliva, Christian Müller, J. Hildebrandt
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引用次数: 0

摘要

(Linnaeus, 1758)(腹足目:腹足科)是一种低盐水生腹足类动物,栖息在欧洲大部分地区和亚洲邻近地区。可以区分出两种不同的生态类型:一种是淡水(FW),另一种是波罗的海沿岸的咸淡水栖息地(BW)。两种生态型的个体都使用游离氨基酸和尿素作为有机渗透剂来调节体液对外界介质的渗透压;然而,BW生态型能够大量积累它们。尿素在水生腹足动物(如T. fluviatilis)中作为有机渗透剂的使用直到最近才被初步描述,并提出了尿素在体液和环境之间的运输如何平衡的问题。通过检查T. fluviatiis的转录组和初步基因组序列数据,我们确定了DUR3基因的假定同源物,该基因在其他生物体中编码尿素转运蛋白(ut)。在这项研究中,我们为dur3样ut的四个不同亚型的存在提供了证据,这些亚型属于两个不同的家族。采用qRT-PCR分析了两种UT亚型,以研究两种生态型个体在不同盐度环境下驯化过程中mRNA表达的差异。我们的研究结果表明,只有BW动物在渗透调节的背景下调节DUR3基因的表达。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
The Ins and Outs of Urea: Identification of Putative DUR3-like Urea Transporters in the Oligohaline Nerite Snail Theodoxus fluviatilis and Their Expression under Changing Salinities
Theodoxus fluviatilis (Linnaeus, 1758) (Gastropoda: Neritidae) is an oligohaline aquatic gastropod that inhabits most of Europe and adjacent areas of Asia. Two different ecotypes can be distinguished: One in freshwater (FW) and another along the Baltic Sea coast in brackish water habitats (BW). Individuals of either ecotype use free amino acids and urea as organic osmolytes to adjust body fluid osmolality to the external medium; however, the BW ecotype is able to accumulate them in larger quantities. The use of urea as an organic osmolyte in aquatic gastropods such as T. fluviatilis has only recently been initially described and raised the question of how urea transport between body fluids and the environment is balanced. Upon examining transcriptome and preliminary genome sequence data of T. fluviatilis, we identified putative homologues of DUR3 genes, which code for urea transporters (UTs) in other organisms. In this study, we provide evidence for the presence of four different subtypes of DUR3-like UTs that belong to two distinct families. Two of the UT subtypes were subject to qRT-PCR analyses to investigate differences in mRNA expression during the acclimation of individuals of both ecotypes to different salinities. Our results indicate that only BW animals regulate DUR3 gene expression in the context of osmoregulation.
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