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Localization and Evolution of Putative Triose Phosphate Translocators in the Diatom Phaeodactylum tricornutum

机译:硅藻Phaeodactylum tricornutum中假定的磷酸三磷酸酯转运体的定位和进化

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摘要

The establishment of a metabolic connection between host and symbiont is a crucial step in the evolution of an obligate endosymbiotic relationship. Such was the case in the evolution of mitochondria and plastids. Whereas the mechanisms of metabolite shuttling between the plastid and host cytosol are relatively well studied in Archaeplastida—organisms that acquired photosynthesis through primary endosymbiosis—little is known about this process in organisms with complex plastids. Here, we focus on the presence, localization, and phylogeny of putative triose phosphate translocators (TPTs) in the complex plastid of diatoms. These proteins are thought to play an essential role in connecting endosymbiont and host metabolism via transport of carbohydrates generated by the photosynthesis machinery of the endosymbiont. We show that the complex plastid localized TPTs are monophyletic and present a model for how the initial metabolic link between host and endosymbiont might have been established in diatoms and other algae with complex red plastids and discuss its implications on the evolution of those lineages.
机译:在宿主与共生体之间建立代谢联系是专心的内共生关系发展的关键步骤。线粒体和质体的进化就是这种情况。质体和宿主细胞质之间代谢物穿梭的机制在古菌(通过原发性内共生获得光合作用的生物)中得到了比较充分的研究,但对于具有复杂质体的生物体,这一过程知之甚少。在这里,我们集中于硅藻的复杂质体中假定的磷酸三糖磷酸转运蛋白(TPTs)的存在,定位和系统发育。人们认为这些蛋白质在通过内吞共生体的光合作用机制产生的碳水化合物的转运来连接内共吞与宿主代谢中起着至关重要的作用。我们表明,复杂的质体局部TPTs是单系的,并提出了一个模型,用于说明如何在硅藻和其他藻类中用复杂的红色质体建立宿主与内共生体之间的初始代谢联系,并讨论其对这些谱系进化的影响。

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