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内共生关系。

Endosymbiosis.

机构信息

Nicholas School of the Environment, Duke University, Durham, NC 27708, USA.

出版信息

Curr Biol. 2012 Jul 24;22(14):R555-61. doi: 10.1016/j.cub.2012.06.010.

Abstract

The phenomenon of endosymbiosis, or one organism living within another, has deeply impacted the evolution of life and continues to shape the ecology of countless species. Traditionally, biologists have viewed evolution as a largely bifurcating pattern, reflecting mutations and other changes in existing genetic information and the occasional speciation and divergence of lineages. While lineage bifurcation has clearly been important in evolution, the merging of two lineages through endosymbiosis has also made profound contributions to evolutionary novelty. Mitochondria and chloroplasts are relicts of ancient bacterial endosymbionts that ultimately extended the range of acceptable habitats for life by allowing hosts to thrive in the presence of oxygen and to convert light into energy. Today, the sheer abundance of endosymbiotic relationships across diverse host lineages and habitats testifies to their continued significance.

摘要

内共生现象,即一个生物体生活在另一个生物体内部,深刻地影响了生命的进化,并继续塑造着无数物种的生态。传统上,生物学家认为进化主要是一种分支模式,反映了现有遗传信息的突变和其他变化,以及偶尔的谱系特化和分歧。虽然谱系分支显然在进化中很重要,但通过内共生将两个谱系合并也为进化的新颖性做出了深远的贡献。线粒体和叶绿体是古老细菌内共生体的遗迹,它们最终通过允许宿主在氧气存在的情况下茁壮成长,并将光转化为能量,扩展了生命可接受的栖息地范围。如今,在不同的宿主谱系和栖息地中,共生关系的大量存在证明了它们的持续重要性。

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