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真菌分类学新时代中的嗜热真菌

Thermophilic fungi in the new age of fungal taxonomy.

作者信息

de Oliveira Tássio Brito, Gomes Eleni, Rodrigues Andre

机构信息

Departamento de Bioquímica e Microbiologia, UNESP - Univ Estadual Paulista, Avenida 24-A, n. 1515, Bela Vista, Rio Claro, SP, 13560-900, Brazil.

出版信息

Extremophiles. 2015 Jan;19(1):31-7. doi: 10.1007/s00792-014-0707-0. Epub 2014 Nov 16.

DOI:10.1007/s00792-014-0707-0
PMID:25399310
Abstract

Thermophilic fungi are of wide interest due to their potential to produce heat-tolerant enzymes for biotechnological processes. However, the taxonomy of such organisms remains obscure, especially given new developments in the nomenclature of fungi. Here, we examine the taxonomy of the thermophilic fungi most commonly used in industry in light of the recent taxonomic changes following the adoption of the International Code of Nomenclature for Algae, Fungi and Plants and also based on the movement One Fungus = One Name. Despite the widespread use of these fungi in applied research, several thermotolerant fungi still remain classified as thermophiles. Furthermore, we found that while some thermophilic fungi have had their genomes sequenced, many taxa still do not have barcode sequences of reference strains available in public databases. This lack of basic information is a limiting factor for the species identification of thermophilic fungi and for metagenomic studies in this field. Based on next-generation sequencing, such studies generate large amounts of data, which may reveal new species of thermophilic fungi in different substrates (composting systems, geothermal areas, piles of plant material). As discussed in this study, there are intrinsic problems associated with this method, considering the actual state of the taxonomy of thermophilic fungi. To overcome such difficulties, the taxonomic classification of this group should move towards standardizing the commonly used species names in industry and to assess the possibility of including new systems for describing species based on environmental sequences.

摘要

嗜热真菌因其具有为生物技术过程生产耐热酶的潜力而备受关注。然而,这类生物的分类学仍然模糊不清,尤其是考虑到真菌命名法的新发展。在此,我们根据藻类、真菌和植物国际命名法规采用后最近的分类学变化,并基于“一种真菌 = 一个名称”的行动,来审视工业中最常用的嗜热真菌的分类学。尽管这些真菌在应用研究中广泛使用,但仍有几种耐热真菌仍被归类为嗜热菌。此外,我们发现,虽然一些嗜热真菌的基因组已被测序,但许多分类单元在公共数据库中仍没有参考菌株的条形码序列。这种基本信息的缺乏是嗜热真菌物种鉴定以及该领域宏基因组研究的一个限制因素。基于下一代测序,这类研究产生大量数据,这些数据可能揭示不同底物(堆肥系统、地热区、植物材料堆)中嗜热真菌的新物种。如本研究中所讨论的,考虑到嗜热真菌分类学的实际状况,这种方法存在一些内在问题。为克服这些困难,该类群的分类学分类应朝着规范工业中常用的物种名称以及评估基于环境序列纳入新的物种描述系统的可能性发展。

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2
Fungal succession in an in-vessel composting system characterized using 454 pyrosequencing.采用 454 焦磷酸测序技术研究罐式堆肥系统中真菌的演替。
FEMS Microbiol Ecol. 2014 May;88(2):296-308. doi: 10.1111/1574-6941.12293. Epub 2014 Feb 24.
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Modern taxonomy of biotechnologically important Aspergillus and Penicillium species.
FEMS Microbiol Ecol. 2024 Oct 25;100(11). doi: 10.1093/femsec/fiae128.
4
Thermophilic fungus uses anthraquinones to modulate ferrous excretion, sterol-mediated endocytosis, and iron storage in response to cold stress.嗜热真菌利用蒽醌类化合物来调节亚铁排泄、固醇介导的内吞作用和铁储存,以应对冷应激。
Microb Biotechnol. 2024 Sep;17(9):e70002. doi: 10.1111/1751-7915.70002.
5
E_15.1: A Novel Thermophilic Endophyte from a Volcanic Crater Unveiled through Comprehensive Genome-Wide, Phenotypic Analysis, and Plant Growth-Promoting Trails.E_15.1:通过全基因组综合分析、表型分析及促进植物生长试验揭示的一种来自火山口的新型嗜热内生菌
J Fungi (Basel). 2024 Jul 25;10(8):517. doi: 10.3390/jof10080517.
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Melanin precursors mediated adaption to temperature changes in fungus and animal via inhibition of lipid-mediated ferroptosis.黑色素前体通过抑制脂质介导的铁死亡来介导真菌和动物对温度变化的适应。
Sci China Life Sci. 2023 Aug;66(8):1800-1817. doi: 10.1007/s11427-022-2265-6. Epub 2023 Mar 17.
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Tryptophan-centered metabolic alterations coincides with lipid-mediated fungal response to cold stress.以色氨酸为中心的代谢改变与脂质介导的真菌对冷应激的反应相一致。
Heliyon. 2023 Jan 21;9(2):e13066. doi: 10.1016/j.heliyon.2023.e13066. eCollection 2023 Feb.
8
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