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原始无类囊体蓝细菌粘球藻是一种常见的栖居于岩石的生物。

The Primitive Thylakoid-Less Cyanobacterium Gloeobacter Is a Common Rock-Dwelling Organism.

作者信息

Mareš Jan, Hrouzek Pavel, Kaňa Radek, Ventura Stefano, Strunecký Otakar, Komárek Jiří

机构信息

Institute of Botany ASCR, Centre for Phycology, Třeboň, Czech Republic ; Department of Botany, Faculty of Science, University of South Bohemia, České Budějovice, Czech Republic.

出版信息

PLoS One. 2013 Jun 18;8(6):e66323. doi: 10.1371/journal.pone.0066323. Print 2013.

Abstract

Cyanobacteria are an ancient group of photosynthetic prokaryotes, which are significant in biogeochemical cycles. The most primitive among living cyanobacteria, Gloeobacter violaceus, shows a unique ancestral cell organization with a complete absence of inner membranes (thylakoids) and an uncommon structure of the photosynthetic apparatus. Numerous phylogenetic papers proved its basal position among all of the organisms and organelles capable of plant-like photosynthesis (i.e., cyanobacteria, chloroplasts of algae and plants). Hence, G. violaceus has become one of the key species in evolutionary study of photosynthetic life. It also numbers among the most widely used organisms in experimental photosynthesis research. Except for a few related culture isolates, there has been little data on the actual biology of Gloeobacter, being relegated to an "evolutionary curiosity" with an enigmatic identity. Here we show that members of the genus Gloeobacter probably are common rock-dwelling cyanobacteria. On the basis of morphological, ultrastructural, pigment, and phylogenetic comparisons of available Gloeobacter strains, as well as on the basis of three new independent isolates and historical type specimen, we have produced strong evidence as to the close relationship of Gloeobacter to a long known rock-dwelling cyanobacterial morphospecies Aphanothece caldariorum. Our results bring new clues to solving the 40 year old puzzle of the true biological identity of Gloeobacter violaceus, a model organism with a high value in several biological disciplines. A probable broader distribution of Gloeobacter in common wet-rock habitats worldwide is suggested by our data, and its ecological meaning is discussed taking into consideration the background of cyanobacterial evolution. We provide observations of previously unknown genetic variability and phenotypic plasticity, which we expect to be utilized by experimental and evolutionary researchers worldwide.

摘要

蓝细菌是一类古老的光合原核生物,在生物地球化学循环中具有重要意义。现存蓝细菌中最原始的紫球藻,呈现出独特的原始细胞结构,完全没有内膜(类囊体),并且光合装置结构罕见。众多系统发育学论文证明了它在所有能够进行类植物光合作用的生物和细胞器(即蓝细菌、藻类和植物的叶绿体)中的基部位置。因此,紫球藻已成为光合生命进化研究的关键物种之一。它也是实验性光合作用研究中使用最广泛的生物之一。除了少数相关的培养分离株外,关于紫球藻实际生物学特性的数据很少,它一直被归为具有神秘身份的“进化奇物”。在这里,我们表明紫球藻属的成员可能是常见的栖息于岩石的蓝细菌。基于对现有紫球藻菌株的形态、超微结构、色素和系统发育比较,以及基于三个新的独立分离株和历史模式标本,我们提供了强有力的证据,证明紫球藻与一种长期已知的栖息于岩石的蓝细菌形态物种嗜热隐球藻密切相关。我们的结果为解开有着40年历史的紫球藻真实生物学身份之谜带来了新线索,紫球藻是一种在多个生物学领域具有高价值的模式生物。我们的数据表明紫球藻可能在全球常见的湿岩石栖息地有更广泛的分布,并结合蓝细菌进化背景讨论了其生态意义。我们提供了对以前未知的遗传变异性和表型可塑性的观察结果,我们期望全球的实验和进化研究人员能够利用这些结果。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a0c6/3688883/6716283c2f8a/pone.0066323.g001.jpg

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