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[具体物种]的全线粒体基因组为进化和检测提供了见解。 (此处原文中“of”后缺少具体物种信息)

Whole-mitochondrial genomes of provide insights in evolution and detection.

作者信息

Powell Daniel, Schwessinger Benjamin, Frère Céline H

机构信息

Centre for Bioinnovation University of the Sunshine Coast Sippy Downs Queensland Australia.

School of Biological Sciences University of Queensland St Lucia Queensland Australia.

出版信息

Ecol Evol. 2023 Mar 27;13(3):e9955. doi: 10.1002/ece3.9955. eCollection 2023 Mar.

Abstract

Infectious fungal diseases can have devastating effects on wildlife health and a detailed understanding of the evolution of related emerging fungal pathogen along with the ability to detect them in the wild is considered indispensable for effective management strategies. Several fungi from the genera and are emerging pathogens of reptiles and have been observed to cause disease in a wide range of taxa. has become a particularly important pathogen of Australian reptiles with an increasing number of herpetofauna being reported with cases of infection from across the country. Here, we present the mitochondrial genome sequences and phylogenetic analysis for seven species in this group of fungi uncovering new information on the evolutionary relationship of these emerging pathogens. From this analysis, we designed a species-specific qPCR assay for the rapid detection of and demonstrate its application in a wild urban population of a dragon lizard.

摘要

传染性真菌疾病会对野生动物健康产生毁灭性影响,详细了解相关新兴真菌病原体的进化以及在野外检测它们的能力被认为是有效管理策略不可或缺的。来自多个属的几种真菌是爬行动物的新兴病原体,并且已观察到它们在广泛的分类群中引发疾病。[具体真菌属名]已成为澳大利亚爬行动物的一种特别重要的病原体,全国各地越来越多的爬行动物被报道感染病例。在此,我们展示了该组真菌中七个物种的线粒体基因组序列和系统发育分析,揭示了这些新兴病原体进化关系的新信息。通过该分析,我们设计了一种用于快速检测[具体真菌名]的物种特异性定量聚合酶链反应(qPCR)检测方法,并证明了其在城市野生鬃狮蜥种群中的应用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/dfbb/10041364/015679dae31b/ECE3-13-e9955-g005.jpg

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