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首页> 外文期刊>Frontiers in Veterinary Science >Differentiating Batrachochytrium dendrobatidis and B. salamandrivorans in amphibian chytridiomycosis using RNAScope? in situ hybridization
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Differentiating Batrachochytrium dendrobatidis and B. salamandrivorans in amphibian chytridiomycosis using RNAScope? in situ hybridization

机译:使用RNAScope区分两栖性滴虫病中的Batrachochytrium dendrobatidis和B. salamandrivorans。原位杂交

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Batrachochytrium dendrobatidis and B. salamandrivorans are important amphibian pathogens responsible for morbidity and mortality in free-ranging and captive frogs, salamanders, and caecilians. While B. dendrobatidis has a widespread global distribution, B. salamandrivorans has only been detected in amphibians in Asia and Europe. Although molecular detection methods for these fungi are well characterized, differentiation of the morphologically similar organisms in the tissues of affected amphibians is incredibly difficult. Moreover, an accurate tool to identify and differentiate Batrachochytrium in affected amphibian tissues is essential for a specific diagnosis of the causative agent in chytridiomycosis cases. To address this need, an automated dual-plex chromogenic RNAScope? in situ hybridization (ISH) assay was developed and characterized for simultaneous detection and differentiation of B. dendrobatidis and B. salamandrivorans. The assay, utilizing double Z target probe pairs designed to hybridize to 28S rRNA sequences, was specific for the identification of both organisms in culture and in formalin-fixed paraffin-embedded amphibian tissues. The assay successfully identified organisms in tissue samples from five salamander and one frog species preserved in formalin for up to 364 days and was sensitive for the detection of Batrachochytrium in animals with qPCR loads as low as 1.1 x 102 zoospores/microliter. ISH staining of B. salamandrivorans also highlighted the infection of dermal cutaneous glands, a feature not observed in amphibian B. dendrobatidis cases and which may play an important role in B. salamandrivorans pathogenesis in salamanders. The developed ISH assay will benefit both amphibian chytridiomycosis surveillance projects and pathogenesis studies by providing a reliable tool for Batrachochytrium differentiation in tissues.
机译:Batrachochytrium dendrobatidis和B. salamandrivorans是重要的两栖动物病原体,负责散养和圈养的青蛙,sal和凯撒虫的发病和死亡。虽然B. dendrobatidis在全球范围内分布广泛,但仅在亚洲和欧洲的两栖动物中发现了B. salamandrivorans。尽管这些真菌的分子检测方法已得到很好的表征,但是在受影响的两栖动物的组织中很难区分形态相似的生物。此外,在乳糜菌病病例中对致病因子进行特异性诊断时,一种准确的工具,可以在受影响的两栖动物组织中鉴定和区分巴曲毛壶菌。为了满足这一需求,自动双重生色RNAScope?开发了原位杂交(ISH)测定法,并对其特征进行了鉴定,以同时检测和区分B. dendrobatidis和B. salamandrivorans。该方法利用设计为与28S rRNA序列杂交的双Z靶探针对,专门用于鉴定培养物中和福尔马林固定石蜡包埋的两栖动物组织中的两种生物。该测定法成功地鉴定了福尔马林中保存的多达5种five和一种青蛙物种的组织样品中的生物,该物种长达364天,并且对qPCR量低至1.1 x 102游动孢子/微升的动物中的细支气管细菌的检测非常敏感。 ISH对B. salamandrivorans的染色也突出了真皮皮肤腺体的感染,这是在两栖类B. dendrobatidis病例中未观察到的特征,并且可能在sal中B. salamandrivorans的发病机理中起重要作用。通过提供一种可靠的工具来区分组织中的细支气管梭菌,开发的ISH测定方法将有益于两栖类壶菌的监测项目和发病机理研究。

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