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Testudodinium magnum sp. nov. (Dinophyceae), a novel marine sand-dwelling dinoflagellate from subtropical Japan

机译:Testudododinium magnum sp。 11月。 (Dinophyceae),一种来自亚热带日本的新型海洋沙滩栖息的丁食地

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摘要

A new marine benthic dinoflagellate, Testudodinium magnum sp. nov., was described from a sand sample collected on the seafloor at a depth of 35 m off Mageshima Island, Kagoshima, Japan. The dinoflagellate possessed the characteristic features of the genus Testudodinium, but was distinguished by its extremely large size and pebbled dorsal surface of the hyposome, caused by the presence of numerous nodules. The cells of this dinoflagellate possessed a dominant sessile and a rare motile form that were morphologically distinct from each other: The sessile form was larger and the small rounded episome with longitudinal furrow was completely embedded in the hyposome; the motile form was smaller and the episome was only partly embedded in the hyposome. The ultrastructural investigations revealed the presence of a large, circular, starch-sheathed pyrenoid whose matrix was traversed by randomly arranged thylakoid lamellae. The chloroplasts formed a network radiating outward from the pyrenoid. Uniquely, this dinoflagellate possessed internal props - structures that spanned the thickness of the cell and were fibrous in nature. The props were numerous and passed through organelles and cell contents. Phylogenetic analyses based on the small-subunit ribosomal DNA gene sequences placed this dinoflagellate firmly within the Testudodinium clade with high support. On the basis of the morphological features and phylogenetic analyses, we concluded that this dinoflagellate was a new species in the genus Testudodinium.
机译:一种新的海洋底栖甲藻Testudodinium magnum sp.nov.是从日本鹿儿岛Mageshima岛35米深处的海底采集的沙样中描述的。甲藻具有Testudodinium属的特征,但由于存在大量结节,其特征在于其巨大的尺寸和下体的卵石背表面。这种甲藻的细胞有一个占优势的无梗细胞和一个罕见的运动细胞,它们在形态上彼此不同:无梗细胞较大,带纵沟的小圆形上位体完全嵌在下小体中;运动型较小,上位体仅部分嵌入下小体。超微结构研究显示存在一个大的、圆形的、淀粉包裹的蛋白核,其基质被随机排列的类囊体片层穿过。叶绿体形成了一个从蛋白核向外辐射的网络。独特的是,这种甲藻拥有内部支柱——跨越细胞厚度的结构,本质上是纤维状的。道具数量众多,并通过细胞器和细胞内容物传递。基于小亚单位核糖体DNA基因序列的系统发育分析将这种甲藻牢牢地固定在Testudodinium分支内,并具有很高的支持度。根据形态特征和系统发育分析,我们认为这种甲藻是Testudodinium属的一个新种。

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