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眼虫纲生物中复杂细胞骨架系统的宏观进化。

Macroevolution of complex cytoskeletal systems in euglenids.

作者信息

Leander Brian S, Esson Heather J, Breglia Susana A

机构信息

Canadian Institute for Advanced Research, Program in Integrated Microbial Biodiversity, Departments of Botany and Zoology, University of British Columbia, Vancouver, Canada.

出版信息

Bioessays. 2007 Oct;29(10):987-1000. doi: 10.1002/bies.20645.

Abstract

Euglenids comprise a group of single-celled eukaryotes with diverse modes of nutrition, including phagotrophy and photosynthesis. The level of morphological diversity present in this group provides an excellent system for demonstrating evolutionary transformations in morphological characters. This diversity also provides compelling evidence for major events in eukaryote evolution, such as the punctuated effects of secondary endosymbiosis and mutations in underlying developmental mechanisms. In this essay, we synthesize evidence for the origin, adaptive significance and diversification of the euglenid cytoskeleton, especially pellicle ultrastructure, pellicle surface patterns, pellicle strip number and the feeding apparatus. We also highlight holes in our knowledge that must be filled before we are able to confidently describe euglenid cell biology and infer the earliest stages in euglenid evolution. Nonetheless, by possessing combinations of characters resulting from adaptive change and morphostasis, euglenids have retained key pieces of evidence necessary for reconstructing the early evolution and diversification of eukaryotic life.

摘要

眼虫纲生物是一群单细胞真核生物,具有多种营养模式,包括吞噬营养和光合作用。该类群中存在的形态多样性水平为展示形态特征的进化转变提供了一个绝佳的系统。这种多样性也为真核生物进化中的重大事件提供了有力证据,比如次生内共生的间断效应以及基础发育机制中的突变。在本文中,我们综合了关于眼虫纲细胞骨架的起源、适应性意义和多样化的证据,尤其是表膜超微结构、表膜表面模式、表膜条带数量和摄食器官。我们还强调了在我们能够自信地描述眼虫纲细胞生物学并推断眼虫纲进化的最早阶段之前,必须填补的知识空白。尽管如此,通过拥有适应性变化和形态稳定所产生的特征组合,眼虫纲生物保留了重建真核生物生命早期进化和多样化所需的关键证据。

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