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体液调节在独立入侵淡水生境后的快速进化。

Rapid evolution of body fluid regulation following independent invasions into freshwater habitats.

机构信息

Center of Rapid Evolution, University of Wisconsin, Madison, WI 53706, USA.

出版信息

J Evol Biol. 2012 Apr;25(4):625-33. doi: 10.1111/j.1420-9101.2012.02459.x. Epub 2012 Feb 1.

Abstract

Colonizations from marine to freshwater environments constitute among the most dramatic evolutionary transitions in the history of life. Colonizing dilute environments poses great challenges for acquiring essential ions against steep concentration gradients. This study explored the evolution of body fluid regulation following freshwater invasions by the copepod Eurytemora affinis. The goals of this study were to determine (1) whether invasions from saline to freshwater habitats were accompanied by evolutionary shifts in body fluid regulation (hemolymph osmolality) and (2) whether parallel shifts occurred during independent invasions. We measured hemolymph osmolality for ancestral saline and freshwater invading populations reared across a range of common-garden salinities (0.2-25 PSU). Our results revealed the evolution of increased hemolymph osmolality (by 16-31%) at lower salinities in freshwater populations of E. affinis relative to their saline ancestors. Moreover, we observed the same evolutionary shifts across two independent freshwater invasions. Such increases in hemolymph osmolality are consistent with evidence of increased ion uptake in freshwater populations at low salinity, found in a previous study, and are likely to entail increased energetic costs upon invading freshwater habitats. Our findings are consistent with the evolution of increased physiological regulation accompanying transitions into stressful environments.

摘要

从海洋到淡水环境的殖民化是生命历史上最戏剧性的进化转变之一。殖民化稀释环境对获取对抗陡峭浓度梯度的必需离子构成了巨大挑战。本研究探讨了桡足类 Eurytemora affinis 入侵淡水后体液调节的进化。本研究的目的是确定 (1) 从咸水到淡水生境的入侵是否伴随着体液调节(血淋巴渗透压)的进化转变,以及 (2) 在独立的入侵过程中是否发生了平行转变。我们测量了在一系列常见盐度(0.2-25 PSU)下饲养的盐水和淡水入侵种群的血淋巴渗透压。我们的结果表明,与盐水祖先相比,E. affinis 的淡水种群在较低盐度下血淋巴渗透压(增加 16-31%)的进化。此外,我们在两个独立的淡水入侵中观察到了相同的进化转变。这种血淋巴渗透压的增加与之前的一项研究中发现的低盐水体种群中离子吸收增加的证据一致,并且可能在入侵淡水栖息地时带来更高的能量成本。我们的发现与伴随进入压力环境而发生的增加生理调节的进化一致。

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