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潮间带海蜗牛(Melampus属,腹足纲:艾氏螺科)耐寒性的纬度变化。

Latitudinal variation of freeze tolerance in intertidal marine snails of the genus Melampus (Gastropoda: Ellobiidae).

作者信息

Dennis A B, Loomis S H, Hellberg M E

机构信息

Department of Biological Sciences, Louisiana State University, Baton Rouge, Louisiana 70808; 2Department of Biology, Connecticut College, New London, Connecticut 06320.

出版信息

Physiol Biochem Zool. 2014 Jul-Aug;87(4):517-26. doi: 10.1086/676138. Epub 2014 Jun 3.

Abstract

Abstract Low temperatures limit the poleward distribution of many species such that the expansion of geographic range can only be accomplished via evolutionary innovation. We have tested for physiological differences among closely related species to determine whether their poleward latitudinal ranges are limited by tolerance to cold. We measured lower temperature tolerance (LT50) among a group of intertidal pulmonate snails from six congeneric species and nine locales. Differences in tolerance are placed in the context of a molecular phylogeny based on one mitochondrial (cytochrome oxidase subunit I) and two nuclear (histone 3 and a mitochondrial phosphate carrier protein) markers. Temperate species from two separate lineages had significantly lower measures of LT50 than related tropical species. Range differences within the temperate zone, however, were not explained by LT50. These results show that multiple adaptations to cold and freezing may have enabled range expansions out of the tropics in Melampus. However, northern range limits within temperate species are not governed by cold tolerance alone.

摘要

摘要 低温限制了许多物种向极地的分布,以至于地理范围的扩展只能通过进化创新来实现。我们测试了近缘物种之间的生理差异,以确定它们向极地的纬度范围是否受到耐寒性的限制。我们测量了来自六个同属物种和九个地点的一组潮间带肺螺亚纲蜗牛的低温耐受性(LT50)。基于一个线粒体(细胞色素氧化酶亚基I)和两个核(组蛋白3和线粒体磷酸盐载体蛋白)标记的分子系统发育,将耐受性差异置于该背景下。来自两个不同谱系的温带物种的LT50测量值明显低于相关的热带物种。然而,温带区内的范围差异并不能用LT50来解释。这些结果表明,对寒冷和冰冻的多种适应可能使黑螺属物种能够从热带地区向外扩展分布范围。然而,温带物种的北部范围限制并非仅由耐寒性决定。

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