Canadian Institute for Advanced Research, Program in Integrated Microbial Biodiversity, Departments of Zoology and Botany, University of British Columbia, 6270 University Boulevard, Vancouver, BC, V6T 1Z4, Canada.
J Eukaryot Microbiol. 2013 Mar-Apr;60(2):107-20. doi: 10.1111/jeu.12014. Epub 2013 Jan 14.
Euglenids comprise a distinct clade of flagellates with diverse modes of nutrition, including phagotrophy, osmotrophy and phototrophy. Much of the previous research on euglenids has focused on phototrophic species because of their ecological abundance and significance as indicators for the health of aquatic ecosystems. Although largely understudied, phagotrophic species probably represent the majority of euglenid diversity. Phagotrophic euglenids tend to be either bacterivorous or eukaryovorous and use an elaborate feeding apparatus for capturing prey cells. We characterized the ultrastructure and molecular phylogenetic position of Heteronema scaphurum, a eukaryovorous euglenid collected in freshwater. This species was equipped with a distinct cytoproct through which waste products were eliminated in the form of faecal pellets; a cytoproct has not been reported in any other member of the Euglenida. Heteronema scaphurum also had a novel predatory mode of feeding. The euglenid ensnared and corralled several green algal prey cells (i.e. Chlamydomonas) with hook-like flagella covered in mucous before engulfing the bundle of prey cells whole. Molecular phylogenetic analyses inferred from small subunit rDNA sequences placed this species with other eukaryovorous euglenids, which was consistent with ultrastructural features associated with the feeding apparatus, flagellar apparatus, extrusomes, and pellicle.
眼虫目是鞭毛藻类中一个独特的分支,具有多种营养方式,包括吞噬营养、渗透营养和光合营养。以前对眼虫目的研究主要集中在光合物种上,因为它们在生态上的丰富度和作为水生生态系统健康指标的重要性。尽管吞噬营养物种在很大程度上研究较少,但它们可能代表了眼虫目的大部分多样性。吞噬营养的眼虫通常是细菌食性或真核食性的,它们使用复杂的进食器官来捕捉猎物细胞。我们描述了淡水采集的真核食性眼虫 Heteronema scaphurum 的超微结构和分子系统发育位置。该物种具有独特的胞肛,通过胞肛以粪粒的形式排出废物;在 Euglenida 的其他成员中尚未报道过胞肛。 Heteronema scaphurum 还具有一种新颖的捕食方式。眼虫用带黏液的钩状鞭毛捕获并围住几个绿藻猎物细胞(即衣藻),然后将整束猎物细胞一起吞噬。从小亚基 rDNA 序列推断的分子系统发育分析将该物种与其他真核食性眼虫放在一起,这与进食器官、鞭毛器、外体和表膜的超微结构特征一致。