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粘孢子虫属(刺胞动物门:粘孢子虫)在引进的黄鲈(Perca flavescens)中。

Myxobolus spp. (Cnidaria: Myxozoa) in introduced yellow perch Perca flavescens (Mitchill, 1814).

机构信息

Department of Veterinary Medicine, Faculty of Animal Science and Food Engineering, 225 Duque de Caxias Norte Av, University of Sao Paulo, Pirassununga, Sao Paulo State, 13635-900, Brazil.

Department of Microbiology, 226 Nash Hall, Oregon State University, Corvallis, OR, 97331, USA.

出版信息

Parasitol Res. 2020 Mar;119(3):893-901. doi: 10.1007/s00436-019-06585-3. Epub 2020 Jan 14.

Abstract

We surveyed introduced yellow perch Perca flavescens (Mitchill, 1814) from the Willamette River, OR, USA, to determine if these fish have co-introduced myxosporean parasites. Mature parasite myxospores were observed in brains of 3/19 fish, and were morphologically and molecularly consistent with Myxobolus neurophilus (Guilford 1963), a parasite known from yellow perch in their native range. We identified another Myxobolus species from the gill filaments of 1/22 fish. The spores from the gill filaments were oval-shaped, 11.7 (10.7-12.3) μm long × 8.6 (7.7-9.0) μm wide × 5.2 (4.6-5.6) μm thick, with two oval-shaped polar capsules 5.7 (5.1-6.5) μm × 2.7 (2.4-3.2) μm, each containing a polar tubule with 8-9 turns. Small-subunit ribosomal DNA sequences from each of four plasmodia were identical, and 4.0% different (over 1800 nucleotides) from the closest known myxosporeans. Interestingly, these sequences had overlapping peaks in their chromatograms, which suggested that DNA from multiple species was present. Hence, we isolated and sequenced three individual myxospores and found that they too had mixed chromatograms, which indicated presence of at least two sequence types of small-subunit ribosomal DNA in each spore (GenBank accession MK592012, MK592013), a rare character among described myxosporeans. The spore morphology, morphometry, tissue tropism, and DNA sequence supported a diagnosis of a novel species, Myxobolus doubleae n. sp. This parasite is unknown from yellow perch in its native range, despite extensive historical surveys, which suggests that introduced yellow perch might have acquired an endemic Myxobolus species via spillback from another fish host.

摘要

我们调查了来自美国俄勒冈州威拉米特河的引入黄鲈 Perca flavescens(Mitchill,1814),以确定这些鱼类是否共同引入了粘孢子虫寄生虫。在 19 条鱼中的 3 条鱼的大脑中观察到成熟的寄生虫孢子,这些孢子在形态和分子上与粘孢子虫 Myxobolus neurophilus(Guilford 1963)一致,该寄生虫已知存在于其原生范围内的黄鲈中。我们从 22 条鱼的鳃丝中鉴定出另一种 Myxobolus 物种。来自鳃丝的孢子呈椭圆形,长 11.7(10.7-12.3)μm×宽 8.6(7.7-9.0)μm×厚 5.2(4.6-5.6)μm,有两个椭圆形的极囊 5.7(5.1-6.5)μm×宽 2.7(2.4-3.2)μm,每个极囊内都有一个带有 8-9 圈的极管。四个原生质体的小亚基核糖体 DNA 序列完全相同,与最接近的已知粘孢子虫相差 4.0%(超过 1800 个核苷酸)。有趣的是,这些序列在其色谱图中具有重叠的峰,这表明存在多种物种的 DNA。因此,我们分离并测序了三个单独的孢子,发现它们的色谱图也有重叠,这表明每个孢子中至少存在两种小亚基核糖体 DNA 序列类型(GenBank 登录号 MK592012、MK592013),这在描述的粘孢子虫中是一种罕见的特征。孢子形态、形态测量、组织嗜性和 DNA 序列支持了一种新物种的诊断,即双型粘孢子虫 Myxobolus doubleae n. sp。该寄生虫在其原生范围内的黄鲈中是未知的,尽管进行了广泛的历史调查,但这表明引入的黄鲈可能通过从另一种鱼类宿主的溢出而获得了地方性的粘孢子虫物种。

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