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首页> 外文期刊>Contributions to zoology >Arjan Gittenberger; Bastian T. Reijnen; Bert W. Hoeksema: A molecularly based phylogeny reconstruction of mushroom corals (Scleractinia: Fungiidae) with taxonomic consequences and evolutionary implications for life history traits
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Arjan Gittenberger; Bastian T. Reijnen; Bert W. Hoeksema: A molecularly based phylogeny reconstruction of mushroom corals (Scleractinia: Fungiidae) with taxonomic consequences and evolutionary implications for life history traits

机译:Arjan Gittenberger; Bastian T. Reijnen; Bert W. Hoeksema:蘑菇珊瑚(Scleractinia:Fungiidae)的分子生物学系统发育重建,具有生物分类学意义,并对生命历史特征具有进化意义

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The phylogenetic relationships of the Fungiidae, a family of predominantly free-living, zooxanthellate, reef corals, were studied by sequencing a part of the mitochondrial Cytochrome Oxidase I (COI) and the complete ribosomal Internal Transcribed Spacers (ITS) I & II of specimens from various locations in the Indo-West Pacific. Some sequences were retrieved by using fungiid-specific primers on DNA-extracts from parasitic gastropods living with these corals. The analyses were performed both including and excluding intraspecific variation to investigate the potential effect of saturation. Even though the present molecular phylogeny reconstructions largely reflect those based on morphological characters, there are some distinct differences. Three major clades are distinguished, one of which consists of species with relatively long tentacles. The two other major clades cannot yet be clearly separated from each other morphologically. Several polyphyletic taxa were detected and some genera and species that previously were considered closely related to each other, appear not to be so. Proposed nomenclatorial changes include amongst others the upgrading of subgenera in Fungia to genus level. A few species moved from one genus to another. Among all Fungiidae, the loss of the ability to become free-living appears to have evolved independently as reversals in four separate clades, including two that were previously assumed to be sister groups. The evolution of corals with additional (secondary) mouths leading to polystomatous growth forms from corals with only a single primary mouth (monostomatous growth form) appears to have occurred independently ten times: seven times by extrastomatal budding and three times by intrastomatal budding. In two clades, Herpolitha and Polyphyllia, both mechanisms co-evolved. In general there is no clear relationship between the loss of a free-living phase and the evolution of multiple mouths.
机译:通过对部分线粒体细胞色素氧化酶I(COI)和完整的核糖体内部转录间隔子(ITS)I和II进行测序,研究了主要生活在游动,虫黄藻,礁珊瑚中的真菌科的系统发育关系。来自印度西部太平洋的各个地方。通过使用真菌特异性引物从与这些珊瑚生活在一起的寄生腹足动物的DNA提取物中检索到某些序列。进行了包括和排除种内变异的分析,以研究饱和的潜在影响。尽管目前的分子系统发育重建在很大程度上反映了基于形态学特征的重建,但仍存在一些明显的差异。区分了三个主要进化枝,其中一个由具有相对较长触角的物种组成。另外两个主要进化枝尚不能在形态上清楚地彼此分离。发现了多个多系分类群,以前认为彼此密切相关的某些属和物种似乎并非如此。拟议的命名变更包括将Fungia的亚属提升到属水平。少数物种从一个属移到另一个属。在所有真菌科中,丧失自由生活的能力似乎是在四个独立的进化枝中发生逆转而独立发展的,其中两个进化枝以前被假定为姐妹群。带有额外(次生)口的珊瑚从单只初级口(单口生长形式)的珊瑚演变成多气孔生长形式的过程似乎独立发生了十次:气孔外发芽七次,气孔内发芽三次。在两个分支中,赫波利塔(Herpolitha)和宝Poly(Polyphyllia),这两种机制共同发展。通常,自由生活阶段的丧失与多嘴的演变之间没有明确的关系。

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