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首页> 外文期刊>Zoologischer Anzeiger >Fine structure of the luminous spines and luciferase detection in the brittle star Amphiura filiformis
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Fine structure of the luminous spines and luciferase detection in the brittle star Amphiura filiformis

机译:脆性星的发光刺和荧光素酶检测的细结构 amphiura filiformis

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AbstractAmphiura filiformisis a common burrowing brittle star from muddy environments along the European shores. This species emits a blue light at the level of the arm spine tips when mechanically stimulated. Although the putative luciferase ofA. filiformiswas recently discovered, the ultrastructure of the luminous cells,i.e.the photocytes, remain unknown for this species as well as for most other bioluminescent echinoderms. In this study, we describe the morphology of the arm and spines in the brittle starA. filiformisand compare it to the luciferase expression pattern revealed by immunohistochemistry. Luciferase is expressed at the base of the spine and at the arm tips within well-defined photocyte clusters. Additionally, we investigated the ultrastructure of spine tissues before and after chemical stimulation of light emission in order to identify photocytes and improve our comprehension of the photogenesis phenomenon in brittle stars. Type II granular cells, found in the basal to mid-basal portion of the spine inner tissues and showing ultrastructural modifications during light-emission, are proposed as photocytes. Putative photocytes appear intimately associated with the spine nerve plexus as well as with mucus cells and presumptive pigment cells. Photocytes are characterised by the presence of specific vesicles with reticulated contents in their cytoplasm. Furthermore, the structure of the calcified spine ossicle has been investigated using microCT scanning.]]>
机译:<![cdata [ 抽象 amphiura filiformis 是来自欧洲海岸的泥泞环境的常见挖洞星。在机械刺激时,该物种在臂脊柱提示水平处发出蓝光。虽然 a的推定荧光素酶。最近发现丝状丝,斜体>斜体>发光细胞的超微结构即斜体>光电子,对该物种以及大多数其他生物发光的棘肌术保持未知。在这项研究中,我们描述了脆性星的臂和刺的形态 a。 Filiformis 并将其与免疫组织化学显示的荧光素酶表达模式进行比较。荧光素酶在脊柱的底部和臂尖的底部表示,在明确定义的光电子细胞簇内。此外,我们研究了光发射的化学刺激之前和之后的脊柱组织的超微结构,以鉴定光胞细胞并改善脆性恒星中的光发性现象的理解。 II型颗粒细胞,在脊柱内组织的基础部分的基础上发现并在发光期间显示超微结构改性,被提出为光电子。推定的光细胞看起来与脊柱神经丛以及粘液细胞和推定颜料细胞密切相关。光胞物的特征在于,在其细胞质中存在特异性囊泡。此外,使用MicroCT扫描研究了钙化脊柱壳体的结构。 ]]>

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