Dipartimento di Biologia ambientale e Biodiversità, Università di Palermo, via Archirafi 18, I-90123 Palermo, Italy.
Mol Phylogenet Evol. 2013 Jan;66(1):190-202. doi: 10.1016/j.ympev.2012.09.016. Epub 2012 Sep 28.
Our comprehension of the phylogeny and diversity of most inland-water crustaceans is currently hampered by their pronounced morphological bradytely, which contributed to the affirmation of the "Cosmopolitanism Paradigm" of freshwater taxa. However, growing evidence of the existence of cryptic diversity and molecular regionalism is available for calanoid copepods, thus stressing the need for careful morphological and molecular studies in order to soundly investigate the systematics, diversity and distribution patterns of the group. Diaptomid copepods were here chosen as model taxa, and the morphological and molecular diversity of the species belonging to the west-Mediterranean diaptomid subgenus Occidodiaptomus were investigated with the aim of comparing the patterns of morphological and molecular evolution in freshwater copepods. Three species currently lumped under the binomen Hemidiaptomus (Occidodiaptomus) ingens and two highly divergent clades within H. (O.) roubaui were distinguished, thus showing an apparent discordance between the molecular distances recorded and Occidodiaptomus morphological homogeneity, and highlighting a noteworthy decoupling between the morphological and molecular diversity in the subgenus. Current Occidodiaptomus diversity pattern is ascribed to a combined effect of ancient vicariance and recent dispersal events. It is stressed that the lack of sound calibration points for the molecular clock makes it difficult to soundly temporally frame the diversification events of interest in the taxon studied, and thus to asses the role of morphological bradytely and of accelerated molecular evolutionary rates in shaping the current diversity of the group.
我们对大多数内陆水域甲壳动物的系统发育和多样性的理解目前受到其明显的形态缓慢进化的阻碍,这促成了淡水分类单元的“世界性模式”的确认。然而,对于哲水蚤目桡足类,越来越多的存在隐种多样性和分子地域主义的证据已经存在,因此需要进行仔细的形态和分子研究,以充分调查该组的系统发育、多样性和分布模式。在这里,选择双翅目桡足类作为模式分类单元,研究属于西地中海双翅目亚属Occidodiaptomus 的物种的形态和分子多样性,目的是比较淡水桡足类的形态和分子进化模式。目前将三个种归为一个双名Hemidiaptomus (Occidodiaptomus) ingens,而在 H. (O.) roubaui 中有两个高度分化的分支,这表明分子距离记录与Occidodiaptomus 形态的同质性之间存在明显的不一致,并且突出了该亚属的形态和分子多样性之间的显著脱钩。当前的Occidodiaptomus 多样性模式归因于古老的隔离和最近的扩散事件的共同作用。需要强调的是,分子钟缺乏可靠的校准点,使得难以对所研究分类单元中感兴趣的多样化事件进行可靠的时间框架,从而评估形态缓慢进化和加速的分子进化速率在形成该组当前多样性中的作用。