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Recent advances and future prospects in peptaibiotics, hydrophobin, and mycotoxin research, and their importance for chemotaxonomy of Trichoderma and Hypocrea

机译:肽类抗生素,疏水蛋白和霉菌毒素研究的最新进展和未来展望,以及它们对木霉菌和下丘脑化学分类的重要性

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摘要

Fungi of the genus Trichoderma with teleomorphs in Hypocrea are abundant producers of a group of amphiphilic, non-ribosomal peptide antibiotics, which are rich in the non-proteinogenic amino acid Aib (a-aminoisobutyric acid). They are referred to as peptaibioties, or peptaibols, if a 1,2-amino alcohol is present at the C-terminus. Trichoderma/Hypocrea, like other ascomycetous fungi, also produce hydrophobins, a class of small, cysteine-rich proteins. Advanced soft ionization mass spectrometric techniques such as LC-CID-MS, LC-ESI-MSn, and IC-MALDI-TOF-MS enabled the high-throughput analysis, simultaneous detection and sequence determination of peptaibioties and hydrophobins from minute quantities of fungal materials. Some Trichoderma species have been recognized to produce peptaibiotics as well as simple mycotoxins of the trichothecene group. The combination of sequence data of both groups of peptides with the pattern of low-molecular-weight secondary metabolites, including trichothecene-type mycotoxins, independently confirmed the results of morphological, molecular, and phylogenetic analyses. Ibis approach established a new lineage in TrichodermalHypocrea, the Brevicompactum clade, comprising four new and one redescribed species. Notably, commercial preparations of single or mixed cultures of Trichoderma species, in particular T harzianum, and T koningii, are registered as biocontrol agents for soil and plant pathogens. In this context, it is emphasized that the four mycotoxin-producing species of the recently established Brevicompactum clade (T brevicompactum, T arundinaceum, T turrialbense, and T protrudens) are not closely related to any of the Trichoderma species currently used as biocontrol agents. Furthermore, possible health concerns about release of peptaibiotics in the biosphere are discussed with respect to their bioactivities and their use as drugs in human and veterinary medicine. Finally, future prospects regarding novel bioactivities and further research needs, including interdisciplinary taxonomic approaches, are outlined.
机译:木霉属的真菌在下壶菌中有变型,是一组两亲性,非核糖体肽抗生素的丰富生产者,这些抗生素富含非蛋白原性氨基酸Aib(α-氨基异丁酸)。如果在C端存在1,2-氨基醇,它们被称为肽生物素或肽醇。与其他子囊真菌一样,木霉属/ hypocrea也产生疏水蛋白,疏水蛋白是一类小的,富含半胱氨酸的蛋白质。先进的软电离质谱技术,例如LC-CID-MS,LC-ESI-MSn和IC-MALDI-TOF-MS,可实现高通量分析,同时检测和序列测定微量真菌物质中的肽和疏水蛋白。一些木霉属物种已被公认可产生肽类抗生素以及单木霉菌类的简单霉菌毒素。两组肽的序列数据与低分子量次级代谢产物(包括天花粉型霉菌毒素)的模式相结合,独立地证实了形态,分子和系统发育分析的结果。宜必思方法在短缩密螺旋体TrichodermalHypocrea中建立了一个新谱系,包括四个新物种和一个重新描述的物种。值得注意的是,木霉属物种的单一或混合培养物的商业制剂,特别是哈茨木霉和科宁木霉,被注册为土壤和植物病原体的生物防治剂。在这种情况下,需要强调的是,最近建立的短缩杆菌属进化枝的四个产真菌毒素的物种(短缩杆菌,T藜,run草和突生菌)与目前用作生物防治剂的木霉属物种都不密切相关。此外,就肽生物素在生物圈中的生物活性及其在人和兽药中的用途方面进行了讨论,可能涉及健康问题。最后,概述了有关新型生物活性和进一步研究需求的未来前景,包括跨学科分类方法。

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