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原绿藻(Prochlorothrix hollandica)与绿色叶绿体的关系。

The relationship of a prochlorophyte Prochlorothrix hollandica to green chloroplasts.

作者信息

Turner S, Burger-Wiersma T, Giovannoni S J, Mur L R, Pace N R

机构信息

Department of Biology, Indiana University, Bloomington 47405.

出版信息

Nature. 1989 Jan 26;337(6205):380-2. doi: 10.1038/337380a0.

Abstract

It is generally accepted that chloroplasts arose from one or more endosymbiotic events between an ancestral cyanobacterium and a eukaryote. Such an origin fits well in the case of the chloroplasts of rhodophytes that, like cyanobacteria, contain chlorophyll a and phycobilin pigments. The green chloroplasts from higher plants, green algae, and euglenoids however, contain chlorophyll b as well as chlorophyll a, and lack phycobilins. Consequently, it has been suggested that they arose independently of the rhodophyte chloroplasts, from an ancestral prokaryote containing that complement of pigments. The 'prochlorophytes' Prochloron didemni (an exosymbiont on didemnid ascidians) and Prochlorothrix hollandica (a recently discovered, free-living, filamentous form) have been suggested to be modern counterparts of the ancestor of the green chloroplasts because they are prokaryotes that also contain both chlorophylls a and b, and lack phycobilins. We report here a 16S rRNA-based phylogenetic analysis of P. hollandica. The organism is found to fall within the cyanobacterial line of descent, as do the green chloroplasts, but it is not a specific relative of green chloroplasts. Thus, similar pigment compositions do not necessarily reflect close evolutionary relationships.

摘要

普遍认为,叶绿体起源于一个祖先蓝细菌和一个真核生物之间的一次或多次内共生事件。这样的起源对于红藻的叶绿体来说非常合适,红藻像蓝细菌一样,含有叶绿素a和藻胆素色素。然而,高等植物、绿藻和裸藻的绿色叶绿体除了含有叶绿素a之外,还含有叶绿素b,并且缺乏藻胆素。因此,有人提出它们是从含有该色素组合的祖先原核生物独立起源的,与红藻叶绿体无关。“原绿藻”迪氏原绿藻(一种附着在双体海鞘上的外共生体)和荷兰原绿藻(一种最近发现的自由生活的丝状形式)被认为是绿色叶绿体祖先的现代对应物,因为它们是原核生物,也同时含有叶绿素a和b,并且缺乏藻胆素。我们在此报告基于16S rRNA的荷兰原绿藻系统发育分析。发现该生物与绿色叶绿体一样,属于蓝细菌的进化谱系,但它不是绿色叶绿体的特定亲缘物种。因此,相似的色素组成不一定反映密切的进化关系。

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