Animal Physiology and Biochemistry, Zoological Institute and Museum, University of Greifswald, Felix Hausdorff-Strasse 1, D-17489 Greifswald, Germany.
Biol Open. 2022 Feb 15;11(2). doi: 10.1242/bio.059190. Epub 2022 Feb 11.
The aquatic gastropod Theodoxus fluviatilis occurs in Europe and adjacent areas of Asia. The snail species has formed two genetically closely related subgroups, the freshwater ecotype (FW) and the brackish water ecotype (BW). Other than individuals of the FW ecotype, those of the BW ecotype survive in salinities of up to 28‰. Coastal aquatic ecosystems may be affected by climate change due to salinization. Thus, we investigated how the two Theodoxus ecotypes adjust to changes in environmental salinity, focusing on the question whether Na+/K+-ATPase or V-ATPase are regulated on the transcriptional, the translational or at the activity level under changing external salinities. Animals were gradually adjusted to extreme salinities in containers under long-day conditions and constant temperature. Whole body RNA- or protein extracts were prepared. Semi-quantitative PCR- and western blot-analyses did not reveal major changes in transcript or protein abundances for the two transporters under low or high salinity conditions. No significant changes in ATPase activities in whole body extracts of animals adjusted to high or low salinity conditions were detected. We conclude that constitutive expression of ATPases is sufficient to support osmotic and ion regulation in this species under changing salinities given the high level of tolerance with respect to changes in body fluid volume.
水生腹足纲动物褐云玛瑙螺分布于欧洲和亚洲的毗邻地区。该贝类形成了两个遗传上密切相关的亚群,即淡水生态型(FW)和半咸水生态型(BW)。除了 FW 生态型的个体外,BW 生态型的个体可以在盐度高达 28‰的环境中存活。由于盐度上升,沿海水生生态系统可能会受到气候变化的影响。因此,我们研究了这两个褐云玛瑙螺生态型如何适应环境盐度的变化,重点关注在不断变化的外部盐度下,Na+/K+-ATP 酶或 V-ATP 酶是否在转录、翻译或活性水平上受到调节。在长日照条件和恒温下,动物在容器中逐渐适应极端盐度。制备了全身 RNA 或蛋白质提取物。半定量 PCR 和 Western blot 分析显示,在低盐或高盐条件下,两种转运蛋白的转录本或蛋白丰度没有明显变化。在适应高盐或低盐条件的动物的全身提取物中,未检测到 ATP 酶活性的显著变化。我们得出结论,在不断变化的盐度下,该物种的 ATP 酶持续表达足以支持渗透调节和离子调节,因为其对体液量变化的耐受性很高。