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泰国湾僧帽水母属和手曳水母属(立方水母纲:灯水母目)触手的刺胞类型及特征

Nematocyst Types and Characteristics in the Tentacles of and sp. (Cubozoa: Carybdeida) from the Gulf of Thailand.

作者信息

Yasanga Thippawan, Santidherakul Sineenart, Wunnapuk Klintean, Phuackchantuck Rochana, Thaikruea Lakkana, Achalawitkun Thunyaporn, Rungraung Purinat

机构信息

Medical Science Research Equipment Center, Faculty of Medicine, Chiang Mai University, Chiang Mai 50200, Thailand.

Research Administration Section, Faculty of Medicine, Chiang Mai University, Chiang Mai 50200, Thailand.

出版信息

Biology (Basel). 2024 Oct 21;13(10):845. doi: 10.3390/biology13100845.

Abstract

Nematocysts, specialized stinging cells in cnidarians, play a crucial role in both defense and prey capture, containing venomous, coiled tubes within a capsule. While box jellyfish are recognized as a medical threat, information on the nematocysts of species like and sp. from Thai waters remains sparse. This study explores the types and morphology of nematocysts found in the tentacles of these species using light and scanning electron microscopy. We identified three nematocyst types: club-shaped microbasic p-mastigophores, oval isorhizas, and oval microbasic p-rhopaloids. Notably, significant differences in capsule sizes were observed, especially in the microbasic p-mastigophores and isorhizas. The discharge tubules tapered from the proximal to the distal ends, featuring arrow-shaped spines in a helical pattern. A distinct lancet structure was present in both microbasic p-mastigophores and p-rhopaloids. These findings suggest that variations in nematocyst size and morphology may be linked to evolutionary adaptations, functional roles, and venom toxicity. Further research into venom discharge mechanisms could offer valuable insights into the ecological and medical importance of these cnidarians.

摘要

刺细胞是刺胞动物特化的刺细胞,在防御和捕食中都起着至关重要的作用,其囊内含有有毒的盘绕管。虽然箱形水母被认为是一种医学威胁,但关于泰国海域 和 种等物种的刺细胞的信息仍然很少。本研究利用光学显微镜和扫描电子显微镜探索了这些物种触手内发现的刺细胞的类型和形态。我们鉴定出三种刺细胞类型:棒状微基 p-鞭毛细胞、椭圆形等刺细胞和椭圆形微基 p-触手刺细胞。值得注意的是,观察到囊大小存在显著差异,尤其是在微基 p-鞭毛细胞和等刺细胞中。排放小管从近端到远端逐渐变细,呈螺旋状排列的箭形刺。微基 p-鞭毛细胞和 p-触手刺细胞中都存在独特的柳叶刀结构。这些发现表明,刺细胞大小和形态的变化可能与进化适应、功能作用和毒液毒性有关。对毒液排放机制的进一步研究可能会为这些刺胞动物在生态和医学方面的重要性提供有价值的见解。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8f38/11505850/be352045f739/biology-13-00845-g001.jpg

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