Escuela de Microbiología, Universidad de Antioquia, Medellín, Colombia.
Biomedica. 2023 Aug 31;43(Sp. 1):288-311. doi: 10.7705/biomedica.7052.
Fungi are multifaceted organisms found in almost all ecosystems on Earth, where they establish various types of symbiosis with other living beings. Despite being recognized by humans since ancient times, and the high number of works delving into their biology and ecology, much is still unknown about these organisms. Some criteria classically used for their study are nowadays limited, generating confusion in categorizing them, and even more, when trying to understand their genealogical relationships. To identify species within Fungi, phenotypic characters to date are not sufficient, and to construct a broad phylogeny or a phylogeny of a particular group, there are still gaps affecting the generated trees, making them unstable and easily debated. For health professionals, fungal identification at lower levels such as genus and species, is enough to select the most appropriate therapy for their control, understand the epidemiology of clinical pictures associated, and recognize outbreaks and antimicrobial resistance. However, the taxonomic location within the kingdom, information with apparently little relevance, can allow phylogenetic relationships to be established between fungal taxa, facilitating the understanding of their biology, distribution in nature, and pathogenic potential evolution. Advances in molecular biology and computer science techniques from the last 30 years have led to crucial changes aiming to establish the criteria to define a fungal species, allowing us to reach a kind of stable phylogenetic construction. However, there is still a long way to go, and it requires the joint work of the scientific community at a global level and support for basic research.
真菌是在地球上几乎所有生态系统中都存在的多面生物体,它们与其他生物建立各种类型的共生关系。尽管人类自古以来就认识到真菌的存在,并且有大量的研究深入探讨了它们的生物学和生态学,但对这些生物体仍有很多未知之处。目前,一些经典的用于研究真菌的标准受到了限制,这导致了它们分类的混淆,甚至在试图理解它们的系统发育关系时也是如此。为了鉴定真菌中的物种,目前基于表型特征还不够,并且为了构建广泛的系统发育或特定类群的系统发育,仍然存在影响生成树的差距,使它们不稳定且容易引发争议。对于健康专业人员来说,鉴定真菌在属和种等较低水平就足以选择最适合控制它们的疗法,了解相关临床图片的流行病学,并识别暴发和抗微生物药物耐药性。然而,在王国内的分类位置信息,虽然看似相关性不大,但可以在真菌分类群之间建立系统发育关系,从而有助于理解它们的生物学、在自然界中的分布和潜在的致病性进化。过去 30 年来,分子生物学和计算机科学技术的进步带来了重要的变革,旨在确立定义真菌物种的标准,使我们能够实现一种稳定的系统发育构建。然而,还有很长的路要走,这需要全球科学界的共同努力和对基础研究的支持。