Molecular Ecology Laboratory, Department of Biological Sciences, Macquarie University, Sydney, New South Wales, Australia.
PLoS One. 2012;7(11):e48800. doi: 10.1371/journal.pone.0048800. Epub 2012 Nov 7.
Accurately quantifying biodiversity is fundamental for both evolutionary theory and conservation strategies. DNA-based studies are exposing high cryptic diversity irrespective of taxonomic group or environmental setting, and increasing the ever-growing estimates of global biodiversity. This has severe implications for under-sampled and species-rich tropical regions, such as the Amazon Basin. We used biogeographic predictions derived from geomorphological history and contemporary hydrochemical and genetic data to examine cryptic diversity in the Amazonian driftwood catfish Centromochlus existimatus. Using both nuclear and mitochondrial DNA markers, five deeply divergent cryptic lineages are reported, for which at least three are sympatric in distribution. These lineages appear relatively old, with divergence times dating back to middle Miocene. Diversification events appear to be chronologically associated with the formation of the modern Amazon River system, and perhaps influenced by hydrochemical gradients between tributaries. The cause of apparent morphological stasis in the C. existimatus species complex is speculated within the context of hydrochemistry and non-visual mating cues and a full taxonomic revision is recommended. Our findings suggest that the diversity of Amazonian ichthyofauna is vastly underestimated and highlight the relevance of biogeographic predictions to guide sampling efforts in ecologically complex and under-studied ecosystems.
准确地量化生物多样性对于进化理论和保护策略都至关重要。基于 DNA 的研究揭示了无论在分类群还是在环境背景下都存在着高度的隐存多样性,这使得全球生物多样性的估计值不断增加。对于亚马逊流域等采样不足且物种丰富的热带地区来说,这具有严重的影响。我们利用地貌历史和当代水化学及遗传数据的生物地理预测,来研究亚马逊浮木鲶鱼 Centromochlus existimatus 的隐存多样性。利用核和线粒体 DNA 标记,我们报告了五个深度分化的隐存谱系,其中至少有三个在分布上是同域的。这些谱系似乎相对古老,其分歧时间可以追溯到中新世中期。分化事件似乎与现代亚马逊河系统的形成在时间上有关,并且可能受到支流之间水化学梯度的影响。我们推测,在水化学和非视觉交配线索的背景下,C. existimatus 物种复合体中明显的形态停滞的原因,并建议进行全面的分类修订。我们的研究结果表明,亚马逊流域鱼类的多样性被大大低估了,并强调了生物地理预测对于指导在生态复杂和研究不足的生态系统中进行采样工作的重要性。