Cantanhede Andréa Martins, Da Silva Vera Maria Ferreira, Farias Izeni Pires, Hrbek Tomas, Lazzarini Stella Maris, Alves-Gomes José
Laboratório de Mamíferos Aquáticos - CPBA - INPA, Manaus, Amazonas, Brazil.
Mol Ecol. 2005 Feb;14(2):401-13. doi: 10.1111/j.1365-294X.2004.02413.x.
We used mitochondrial DNA control region sequences to examine phylogeography and population differentiation of the endangered Amazonian manatee Trichechus inunguis. We observe lack of molecular differentiation among localities and we find weak association between geographical and genetic distances. However, nested clade analysis supports restricted gene flow and/or dispersal with some long-distance dispersal. Although this species has a history of extensive hunting, genetic diversity and effective population sizes are relatively high when compared to the West Indian manatee Trichechus manatus. Patterns of mtDNA haplotype diversity in T. inunguis suggest a genetic disequilibrium most likely explained by demographic expansion resulting from secession of hunting and enforcement of conservation and protective measures. Phylogenetic analysis of T. manatus and T. inunguis haplotypes suggests that T. inunguis is nested within T. manatus, effectively making T. manatus a paraphyletic entity. Paraphyly of T. manatus and recent divergence times of T. inunguis and the three main T. manatus lineages suggest a possible need for a taxonomic re-evaluation of the western Atlantic Trichechus.
我们利用线粒体DNA控制区序列来研究濒危的亚马逊海牛(Trichechus inunguis)的系统地理学和种群分化。我们观察到各地区之间缺乏分子分化,并且发现地理距离与遗传距离之间的关联较弱。然而,嵌套分支分析支持有限的基因流动和/或扩散,以及一些长距离扩散。尽管该物种有过广泛捕猎的历史,但与西印度海牛(Trichechus manatus)相比,其遗传多样性和有效种群大小相对较高。亚马逊海牛线粒体DNA单倍型多样性模式表明存在遗传不平衡,这很可能是由于捕猎减少以及保护和防护措施的实施导致种群扩张所造成的。对西印度海牛和亚马逊海牛单倍型的系统发育分析表明,亚马逊海牛嵌套在西印度海牛之中,这实际上使得西印度海牛成为一个并系类群。西印度海牛的并系性以及亚马逊海牛与西印度海牛三个主要谱系的近期分化时间表明,可能需要对西大西洋海牛属进行分类学重新评估。