Schulz Garvin, Maraun Mark, Völcker Eckhard, Scheu Stefan, Krashevska Valentyna
University of Göttingen, J.F. Blumenbach Institute of Zoology and Anthropology, Untere Karspüle 2, D-37073 Göttingen, Germany.
University of Göttingen, J.F. Blumenbach Institute of Zoology and Anthropology, Untere Karspüle 2, D-37073 Göttingen, Germany.
Protist. 2018 Apr;169(2):190-205. doi: 10.1016/j.protis.2018.02.005. Epub 2018 Mar 13.
Morphological features are often the only characteristics suitable for identification of taxa in testate amoebae, especially in ecological and palaeoecological studies. However, whereas the morphology of some species is rather stable it may vary considerably in others. Within the order Arcellinida the genus Trigonopyxis with the type species Trigonopyxis arcula is morphologically highly variable. To identify reliable characteristics for morphology-based taxon delineation we investigated variations in shell size, pseudostome diameter and pseudostome form in T. arcula from three different sites of the Ecuadorian Andes, where these characteristics vary even more than previously described. Further, we investigated if morphological characteristics in Trigonopyxis varied with changes in environmental factors. We studied 951 shells of Trigonopyxis collected along an altitudinal gradient with varying abiotic factors. We established a method for characterization of the pseudostome form, which lead to five different morphotypes. Our results suggest that shell size alone is not an appropriate character for taxon delineation but can be used as an indicator for changes in environmental conditions. In contrast, the pseudostome form might be used for taxon delineation, but likely also varies considerably within taxa. Overall, the study provides an overview of the morphological variability of the genus Trigonopyxis.
形态特征通常是识别有壳变形虫类群的唯一合适特征,尤其是在生态和古生态研究中。然而,虽然某些物种的形态相当稳定,但在其他物种中可能会有很大差异。在Arcellinida目中,以Trigonopyxis arcula为模式种的Trigonopyxis属在形态上高度可变。为了确定基于形态学的分类单元划分的可靠特征,我们研究了来自厄瓜多尔安第斯山脉三个不同地点的T. arcula的壳大小、假口直径和假口形态的变化,这些特征的变化甚至比之前描述的还要大。此外,我们研究了Trigonopyxis的形态特征是否随环境因素的变化而变化。我们研究了沿海拔梯度收集的951个Trigonopyxis的壳,这些壳具有不同的非生物因素。我们建立了一种表征假口形态的方法,该方法产生了五种不同的形态类型。我们的结果表明,仅壳大小不是分类单元划分的合适特征,但可作为环境条件变化的指标。相比之下,假口形态可能用于分类单元划分,但在分类单元内也可能有很大差异。总体而言,该研究概述了Trigonopyxis属的形态变异性。