Myxobolus acanthogobii Hoshina, 1952 和 Myxobolus selari n. sp. (Myxosporea: Myxobolidae) 感染马来西亚丁加奴的商业鱼类脑部。

IF 1 4区 医学 Q4 PARASITOLOGY Systematic Parasitology Pub Date : 2024-05-11 DOI:10.1007/s11230-024-10162-3
Muhammad Árif Samshuri, Muhammad Hafiz Borkhanuddin
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引用次数: 0

摘要

与淡水鱼类相比,海水鱼类中的粘孢子虫感染引起的关注较少,这导致马来西亚淡水鱼类的分类种类较多。本研究旨在通过对从马来西亚半岛东北部采集的两种具有重要商业价值的海水鱼类 Nemipterus furcosus (Valenciennes) (Eupercaria incertae sedis: Nemipteridae) 和 Selar crumenophthalmus (Bloch) (Carangiformes: Carangidae) 进行肌孢子虫调查来填补这一空白。在检查这些鱼的器官时,尽管没有任何可观察到的病理迹象,但在其脑组织中发现了两个不同的 Myxobolus Bütschli, 1882 物种。通过形态测量、形态学和部分小亚基核糖体 RNA(18S rDNA)基因分析,确定了这两种 Myxobolus 的特征。结果,根据其形态特征、组织滋养性和分子诊断,感染了2.3%糠虾的Myxobolus acanthogobii Hoshina, 1952与日本水域中常见的一种糠虾同义。此外,还描述了一个新物种 Myxobolus selari n. sp.,它感染了一只(11%)个体 S. crumenophthalmus 的大脑。这一独特的物种显示出与众不同的特征,将其归入一个主要由脑部感染肌孢子虫组成的支持性良好的亚支系。最大似然法分析进一步揭示了这些脑部感染粘孢子虫之间的密切关系,强调了组织滋养和宿主分类对粘孢子虫的重要性。这项研究首次记录了中国南海南部的肌孢子虫物种,揭示了该地区海洋肌孢子虫的潜在多样性。本文在《动物学命名官方登记簿》(ZooBank)中登记为 urn:lsid:zoobank.org:pub:7C400E35-7CB8-4DEE-92B7-F75FF3926441。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

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Myxobolus acanthogobii Hoshina, 1952 and Myxobolus selari n. sp. (Myxosporea: Myxobolidae) infecting brain of commercial fishes in Terengganu, Malaysia.

Myxosporean infection in marine water fishes has drawn less attention than in freshwater fishes, which resulted in a higher taxonomic variety in freshwater in Malaysia. This study aimed to address the gap by conducting a myxosporean survey on two commercially significant marine fish species, Nemipterus furcosus (Valenciennes) (Eupercaria incertae sedis: Nemipteridae) and Selar crumenophthalmus (Bloch) (Carangiformes: Carangidae), collected from the northeastern part of peninsular Malaysia. During the examination of the organs, two distinct Myxobolus Bütschli, 1882 species were discovered in the brain tissue of these fishes, despite the absence of any observable pathological signs. The two Myxobolus species were characterized through morphometry, morphology, and analysis of partial small subunit ribosomal RNA (18S rDNA) gene. As a result, Myxobolus acanthogobii Hoshina, 1952, which infects 2.3% of N. furcosus, is synonymous with a myxobolid species commonly found in Japanese waters, based on its morphological traits, tissue tropism, and molecular diagnostics. Furthermore, a novel species, Myxobolus selari n. sp., was described, infecting the brain of one (11%) individual S. crumenophthalmus. This unique species displayed distinctive features, placing it within a well-supported subclade primarily comprising brain-infecting myxobolids. Maximum likelihood analysis further revealed the close relationships among these brain-infecting myxobolids, underscoring the significance of tissue tropism and host taxonomy for myxobolids. This study represents the initial documentation of Myxobolus species within the southern South China Sea, shedding light on the potential diversity of marine myxosporean in this region. This article was registered in the Official Register of Zoological Nomenclature (ZooBank) as urn:lsid:zoobank.org:pub:7C400E35-7CB8-4DEE-92B7-F75FF3926441.

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来源期刊
Systematic Parasitology
Systematic Parasitology 医学-寄生虫学
CiteScore
2.20
自引率
23.10%
发文量
64
审稿时长
6-12 weeks
期刊介绍: Systematic Parasitology publishes papers on the systematics, taxonomy and nomenclature of the following groups: Nematoda (including plant-parasitic), Monogenea, Digenea, Cestoda, Acanthocephala, Aspidogastrea, Cestodaria, Arthropoda (parasitic copepods, hymenopterans, mites, ticks, etc.), Protozoa (parasitic groups), and parasitic genera in other groups, such as Mollusca, Turbelleria, etc. Systematic Parasitology publishes fully illustrated research papers, brief communications, and fully illustrated major revisions. In order to maintain high standards, all contributors describing new taxa are asked to state clearly where the holotype is deposited and to make paratypes available for examination by the referees. It is recognized that, in some cases, this may cause problems for the authors, but it is hoped that by adhering to this rule authors may be protected against rapid synonymy of their taxa, and the types will be preserved for posterity.
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