School of Life Science, Shanxi Normal University, Taiyuan, 030031, PR China.
North Carolina Museum of Natural Sciences and Department of Applied Ecology, North Carolina State University, Raleigh, NC 27601, USA.
Invertebr Syst. 2024 Jul;38. doi: 10.1071/IS24014.
Accurate identification and precise classification of freshwater mussel species that are among the most threatened freshwater taxa in the world, play a crucial role in informing conservation and management efforts for these organisms. However, due to the variability in shell morphology, relying solely on shell characteristics for species taxonomy poses significant challenges, thereby impeding effective conservation planning and management. The freshwater mussel genus Ptychorhynchus Simpson, 1900 is one such group in need of study. We integrate molecular phylogeny, shell morphology and soft-body anatomy to examine the classification of Ptychorhynchus denserugata (Haas, 1910) and Ptychorhynchus resupinatus (von Martens, 1902). The COI barcoding data support the clustering of P. denserugata and Nodularia douglasiae within a single clade, and P. denserugata shares the diagnostic feature of the genus Nodularia , i.e. knobs or bumps on the inner mantle surface in the excurrent aperture. Therefore, by integrating molecular data and anatomical characteristics, we confirm that the nominal species P. denserugata syn. nov. is a new synonym for N. douglasiae . The multi-locus (COI + ND1 + 16S rRNA + 18S rRNA + 28S rRNA ) phylogeny and mitochondrial phylogenomics support the transfer of P. resupinatus from Ptychorhynchus to the newly elevated genus Cosmopseudodon stat. rev., as Cosmopseudodon resupinatus stat. rev. that is still considered the designated type species. We also describe a new species based on integrative taxonomy, i.e. Cosmopseudodon wenshanensis sp. nov. The comprehensive understanding of the taxonomy and diversity of the revised Cosmopseudodon species, and shell heteromorphism of N. douglasiae (=P. denserugata syn. nov.), will serve as a crucial foundation for further scientific assessment and conservation strategies pertaining to these taxa. ZooBank: urn:lsid:zoobank.org:pub:E48968B1-DF0F-42AD-8F31-B8C95F23CE57.
准确识别和精确分类世界上最受威胁的淡水贝类物种,对于这些生物的保护和管理工作至关重要。然而,由于壳形态的可变性,仅依靠壳特征进行物种分类学存在重大挑战,从而阻碍了有效的保护规划和管理。淡水贻贝属 Ptychorhynchus Simpson,1900 就是这样一个需要研究的群体。我们综合运用分子系统发育学、壳形态学和软体解剖学来研究 Ptychorhynchus denserugata (Haas,1910) 和 Ptychorhynchus resupinatus (von Martens,1902) 的分类。COI 条形码数据支持 P. denserugata 和 Nodularia douglasiae 在单个分支内聚类,并且 P. denserugata 具有 Nodularia 属的诊断特征,即在出水管内表面的内套膜上有结节或肿块。因此,通过整合分子数据和解剖特征,我们确认学名 P. denserugata syn. nov. 是 N. douglasiae 的新同义词。多基因座(COI + ND1 + 16S rRNA + 18S rRNA + 28S rRNA)系统发育和线粒体系统发生基因组学支持将 P. resupinatus 从 Ptychorhynchus 转移到新提升的属 Cosmopseudodon stat. rev.,作为 Cosmopseudodon resupinatus stat. rev.,它仍然被认为是指定的模式种。我们还根据综合分类学描述了一个新种,即 Cosmopseudodon wenshanensis sp. nov.。对修订后的 Cosmopseudodon 物种的分类学和多样性以及 N. douglasiae (=P. denserugata syn. nov.) 的壳异形的综合理解,将为进一步的科学评估和保护策略提供重要基础。ZooBank:urn:lsid:zoobank.org:pub:E48968B1-DF0F-42AD-8F31-B8C95F23CE57。