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管吻类桡足亚纲动物中非同寻常的宿主转换与怪水蚤目的消亡:整合分子数据、个体发育和触角形态学

Extraordinary host switching in siphonostomatoid copepods and the demise of the Monstrilloida: integrating molecular data, ontogeny and antennulary morphology.

作者信息

Huys Rony, Llewellyn-Hughes Julia, Conroy-Dalton Sophie, Olson Peter D, Spinks Jennifer N, Johnston David A

机构信息

Department of Zoology, Natural History Museum, Cromwell Road, London SW7 5BD, UK.

出版信息

Mol Phylogenet Evol. 2007 May;43(2):368-78. doi: 10.1016/j.ympev.2007.02.004. Epub 2007 Feb 16.

Abstract

Copepods exhibit an astounding variety of lifestyles, host associations and morphology, to the extent that their crustacean affinities may be obscured. Relationships among the ten copepod orders based on morphological characters remain equivocal. Here we test the ordinal status of the enigmatic Monstrilloida using SSU rDNA gene sequences, comparative morphological data (antennulary sensory interface) and ontogenetic data (caudal ramus setation patterns). Bayesian analysis unexpectedly revealed the Monstrilloida are nested within a fish-parasitic clade of the Siphonostomatoida and share a common ancestor with the stem species of the caligiform families (sea-lice). This unforeseen relationship is congruent with both antennulary and caudal ramus morphology. The divergence of the monstrilloids from an ectoparasitic, vertebrate-associated ancestor involved radical changes in host utilization, body plan and life cycle strategy, a combination rarely observed and probably unique in metazoan parasites. Adult monstrilloids secondarily returned to a free-living, predator-exposed mode of life and we postulate the pressure on maintaining a functional approaching-predator detection system has progenetically delayed the suppression (as in post-copepodid caligiform instars) of the 5-point antennulary sensory array. The homoplastic evolution of the frontal filament in Siphonostomatoida is discussed.

摘要

桡足类动物展现出了令人惊叹的多样生活方式、宿主关联和形态,以至于它们与甲壳类动物的亲缘关系可能变得模糊不清。基于形态特征的十个桡足类目之间的关系仍然不明确。在这里,我们使用小亚基核糖体DNA(SSU rDNA)基因序列、比较形态学数据(触角感觉界面)和个体发育数据(尾叉刚毛排列模式)来检验神秘的怪水蚤目的目级地位。贝叶斯分析意外地揭示,怪水蚤目嵌套在管口水蚤目的一个鱼类寄生分支内,并与海虱形科(海虱)的干群物种拥有共同祖先。这种意想不到的关系与触角和尾叉的形态均相符。怪水蚤类从一个与脊椎动物相关的外寄生祖先分化而来,涉及宿主利用、身体结构和生命周期策略的根本性变化,这种组合在后生动物寄生虫中很少见,可能是独一无二的。成年怪水蚤类次生地回归到自由生活、暴露于捕食者的生活模式,并且我们推测,维持一个功能性的接近捕食者检测系统的压力已经在个体发育上延迟了5点触角感觉阵列的抑制(如在桡足幼体后的海虱形幼体中)。文中还讨论了管口水蚤目前端细丝的趋同进化。

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