鉴定(生物学)
真菌学
DNA条形码
生物
生物沉积
数据库
计算生物学
计算机科学
进化生物学
生物信息学
生态学
生命银行
古生物学
作者
László Irinyi,Carolina Serena,Dea Garcia‐Hermoso,Michael Arabatzis,Marie Desnos‐Ollivier,Duong Vu,Gianluigi Cardinali,Ian Arthur,Anne‐Cécile Normand,Alejandra Giraldo,Keith Cássia da Cunha,Marcelo Sandoval‐Denis,Marijke Hendrickx,Angela Satie Nishikaku,Analy Salles de Azevedo Melo,Karina Bellinghausen Merseguel,Aziza Khan,Juliana Alves Parente Rocha,Paula Sampaio,Marcelo R. S. Briones
出处
期刊:Medical Mycology
[Oxford University Press]
日期:2015-03-24
卷期号:53 (4): 313-337
被引量:319
摘要
Human and animal fungal pathogens are a growing threat worldwide leading to emerging infections and creating new risks for established ones. There is a growing need for a rapid and accurate identification of pathogens to enable early diagnosis and targeted antifungal therapy. Morphological and biochemical identification methods are time-consuming and require trained experts. Alternatively, molecular methods, such as DNA barcoding, a powerful and easy tool for rapid monophasic identification, offer a practical approach for species identification and less demanding in terms of taxonomical expertise. However, its wide-spread use is still limited by a lack of quality-controlled reference databases and the evolving recognition and definition of new fungal species/complexes. An international consortium of medical mycology laboratories was formed aiming to establish a quality controlled ITS database under the umbrella of the ISHAM working group on "DNA barcoding of human and animal pathogenic fungi." A new database, containing 2800 ITS sequences representing 421 fungal species, providing the medical community with a freely accessible tool at http://www.isham.org/ and http://its.mycologylab.org/ to rapidly and reliably identify most agents of mycoses, was established. The generated sequences included in the new database were used to evaluate the variation and overall utility of the ITS region for the identification of pathogenic fungi at intra-and interspecies level. The average intraspecies variation ranged from 0 to 2.25%. This highlighted selected pathogenic fungal species, such as the dermatophytes and emerging yeast, for which additional molecular methods/genetic markers are required for their reliable identification from clinical and veterinary specimens.
科研通智能强力驱动
Strongly Powered by AbleSci AI