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微生物真核生物的远航。

The voyage of the microbial eukaryote.

机构信息

Monterey Bay Aquarium Research Institute, 7700 Sandholdt Rd., Moss Landing, CA 95039, USA.

出版信息

Curr Opin Microbiol. 2010 Oct;13(5):652-60. doi: 10.1016/j.mib.2010.08.001. Epub 2010 Sep 9.

Abstract

Although genome data from unicellular marine eukaryotes is sparse, sequences from several supergroups have initiated an era of genome-enabled research aimed at understanding gene function, evolution, and adaptation in non-traditional model protists. Trends in genomic content within and between different lineages are emerging, including phylogenetically anomalous patterns, sometimes resulting from horizontal gene transfer. Some such genes have nutrient uptake and metabolism roles suggesting that bacterial and eukaryotic microbes have similar cellular-mineral-environmental constraints. Many 'accessory genome' components are of unknown function, but low gene copy numbers combined with small genomes make protists ideal for systems biology. Cultured and uncultured protists are providing insights to ecology, ancestral features and the role of cooption in development of complex traits. Various protists harbor features important in sexuality and multicellularity once believed to have originated in metazoans or other multicellular taxa.

摘要

尽管单细胞海洋真核生物的基因组数据较为匮乏,但来自几个超类群的序列已经开启了一个新时代,旨在通过基因功能、进化和适应来研究非传统模式原生生物。不同谱系内部和之间的基因组内容趋势正在显现,包括系统发育异常模式,有时是由水平基因转移引起的。一些这样的基因具有营养吸收和代谢作用,表明细菌和真核微生物具有类似的细胞-矿物-环境限制。许多“辅助基因组”成分的功能未知,但低基因拷贝数与小基因组使原生生物成为系统生物学的理想选择。培养和未培养的原生生物为生态学、祖先特征以及在复杂特征的发育中基因重排的作用提供了新的认识。各种原生生物具有重要的特征,在有性生殖和多细胞性方面,这些特征曾经被认为起源于后生动物或其他多细胞分类群。

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