Hess Sebastian
Department of Biology, Dalhousie University, Halifax, 1355 Oxford St. Halifax, NS B3H 4R2, Canada.
FEMS Microbiol Ecol. 2017 Sep 1;93(9). doi: 10.1093/femsec/fix104.
Vampyrellid amoebae (Vampyrellida, Rhizaria) are widespread in freshwater, marine and terrestrial ecosystems and consume a wide range of eukaryotes, e.g. algae, fungi and micrometazoa. Environmental sequences indicate that only a small fraction of their genetic diversity is phenotypically characterised, emphasising the need to further explore unknown vampyrellids and their interactions with prey organisms. This study tests the prey range specificity of three vampyrellid amoebae with 49 strains of three common groups of freshwater algae (Zygnematophyceae, Euglenophyceae and Volvocales), and documents specific interactions by time-lapse microscopy. Two of the amoebae, here introduced as the novel genera Arachnomyxa and Planctomyxa based on morphology and SSU rRNA gene comparisons, display a complementary prey range and consume motile algae, namely Volvocales and Euglenophyceae, respectively. This reveals the existence of specialised 'plankton feeders' in the vampyrellid family Leptophryidae, contrasting with the strikingly broad prey range of Leptophrys vorax. The distinct autecological characteristics found in this group of morphologically rather indistinct amoebae contribute to our knowledge about the vastly understudied vampyrellid amoebae. Furthermore, time-lapse observations suggest that euglenoid movements exerted by the sluggish species of the 'Euglena deses group' as a reaction to vampyrellid contact may serve as an effective defence against microbial predators.
变形目阿米巴(变形目,根足亚纲)广泛分布于淡水、海洋和陆地生态系统中,以多种真核生物为食,例如藻类、真菌和微型后生动物。环境序列表明,它们的遗传多样性中只有一小部分在表型上得到了表征,这凸显了进一步探索未知变形目阿米巴及其与猎物生物相互作用的必要性。本研究测试了三种变形目阿米巴对49株三种常见淡水藻类(双星藻纲、裸藻纲和团藻目)的猎物范围特异性,并通过延时显微镜记录了具体的相互作用。其中两种阿米巴,基于形态学和小亚基核糖体RNA基因比较,这里被引入为新属蛛形黏菌属和片层黏菌属,它们表现出互补的猎物范围,分别捕食游动藻类,即团藻目和裸藻纲。这揭示了在细裸藻科变形目阿米巴中存在专门的“浮游生物捕食者”,这与 vorax 细裸藻惊人的广泛猎物范围形成对比。在这组形态上相当不明显的阿米巴中发现的独特个体生态学特征有助于我们了解研究严重不足的变形目阿米巴。此外,延时观察表明,“迟缓裸藻组”中行动迟缓的物种对变形目阿米巴接触产生的裸藻样运动可能是抵御微生物捕食者的有效防御机制。