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Endosymbiotic associations within protists

机译:生物体内的内生共生联系

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The establishment of an endosymbiotic relationship typically seems to be driven through complementation of the host’s limited metabolic capabilities by the biochemical versatility of the endosymbiont. The most significant examples of endosymbiosis are represented by the endosymbiotic acquisition of plastids and mitochondria, introducing photosynthesis and respiration to eukaryotes. However, there are numerous other endosymbioses that evolved more recently and repeatedly across the tree of life. Recent advances in genome sequencing technology have led to a better understanding of the physiological basis of many endosymbiotic associations. This review focuses on endosymbionts in protists (unicellular eukaryotes). Selected examples illustrate the incorporation of various new biochemical functions, such as photosynthesis, nitrogen fixation and recycling, and methanogenesis, into protist hosts by prokaryotic endosymbionts. Furthermore, photosynthetic eukaryotic endosymbionts display a great diversity of modes of integration into different protist hosts
机译:内共生关系的建立通常似乎是由内共生体的生化多样性补充了宿主有限的代谢能力所致。内共生的最重要例子是质体和线粒体的内共生吸收,将光合作用和呼吸作用引入真核生物。但是,还有许多其他的内共生酶在生命树上最近和反复进化。基因组测序技术的最新进展使人们对许多共生共生体协会的生理基础有了更好的了解。这篇综述着重于原生生物(单细胞真核生物)中的共生共生体。选定的例子说明了通过原核内共生体将各种新的生化功能(例如光合作用,固氮和循环利用以及产甲烷作用)并入到原生生物宿主中。此外,光合作用的真核内共生体显示出整合到不同生物宿主中的多种模式

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