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首页> 外文期刊>Trends in Microbiology >Did trypanosomatid parasites have photosynthetic ancestors?
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Did trypanosomatid parasites have photosynthetic ancestors?

机译:锥虫寄生虫是否具有光合作用祖先?

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摘要

Some molecular phytogenies of plastid-like genes suggest that chloroplasts (the structures responsible for photosynthesis in plants and algae) might have been secondarily lost in trypanosomatid parasites. Chloroplasts are present in some euglenids, which are closely related to trypanosomatids, and it has been argued that chloroplasts arose early in the diversification of the lineage Euglenozoa, to which trypanosomatids and euglenids belong (plastids-early hypothesis). This article reviews how euglenid ultrastructural systems are functionally integrated and phylogenetically correlated. I argue that chloroplast acquisition profoundly altered the structure of certain euglenids, and that the complete absence of these modifications in other euglenozoansis most consistent with their never having had a chloroplast. Ultrastructural evidence suggests that chloroplasts arose relatively recently within a specific subgroup of euglenids and that trypanosomatids are not secondarily non-photosynthetic (plastids-recent hypothesis).
机译:质体样基因的一些分子植物学研究表明,叶绿体(负责植物和藻类光合作用的结构)可能已经在锥虫的寄生虫中损失了。叶绿体存在于某些锥虫中,与锥虫科动物密切相关,有人认为叶绿体起源于锥虫科和锥虫属的幼虫家族的多样化(质体-早期假设)。本文回顾了如何将粗大的超微结构系统进行功能整合和系统发育相关。我认为,叶绿体的获得极大地改变了某些蓝藻的结构,而其他幼虫中完全没有这些修饰,这与它们从未拥有过叶绿体是最一致的。超微结构证据表明,叶绿体相对较晚出现在特定的亚目亚目中,锥虫并非并非非光合的(质体最近的假说)。

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