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Peptaibols from Trichoderma asperellum TR356 strain isolated from Brazilian soil

机译:从巴西土壤分离的曲霉木霉TR356菌株的肽醇

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摘要

The Trichoderma genus consists of a group of free-living filamentous fungi, including species able to act as biological control agents (BCAs) against pathogenic fungi. It is believed that this ability is due to synergy between several mechanisms, including the production of a wide variety of secondary metabolites by these organisms. Among these, we highlight the production of peptaibols, an antibiotic peptide group characterized by the presence of non-proteinogenic amino acids such as α-aminoisobutyrate (Aib), as well as by N-terminal modifications and amino alcohols in the C-terminal region. This study aimed to outline a profile of peptaibol production and to identify secreted peptaibols from the Trichoderma asperellum TR356 strain, described as an efficient BCA against S. sclerotiorum. The fungus was grown on TLE 0.3% glucose medium for 5 days, with agitation at 120 rpm in the dark. Liquid medium filtrate was used as the metabolite source. These extracts were subjected to high performance liquid chromatography (HPLC) and subsequent analysis by matrix-assisted laser desorption ionization mass spectrometry (MALDI-TOF). The results indicate the production of two classes of peptaibols for this T. asperellum strain. Primary structures of two asperelines (A and E) and five trichotoxins (T5D2, T5E, T5F, T5G and 1717A) have been elucidated. Most of these peptaibols had been previously described in T. viride and T. asperellum marine strains. This is the first report of some of these compounds being produced by a T. asperellum strain from soil. Future analyses will be necessary to elucidate the three-dimensional structures and their activities against pathogens.
机译:木霉属由一组自由生活的丝状真菌组成,包括能够充当针对病原性真菌的生物防治剂(BCA)的物种。相信该能力是由于几种机制之间的协同作用,包括这些生物体产生多种次级代谢产物。其中,我们重点介绍了肽肽的生产,肽肽是一种抗生素肽基团,其特征在于存在非蛋白原性氨基酸,例如α-氨基异丁酸酯(Aib),以及在C端区域存在N端修饰和氨基醇。这项研究旨在概述肽醇的生产概况,并鉴定来自曲霉木霉TR356菌株的分泌肽肽,该菌株被描述为抗菌核菌的有效BCA。将真菌在TLE 0.3%葡萄糖培养基上生长5天,在黑暗中以120 rpm的速度搅拌。液体培养基滤液用作代谢物来源。将这些提取物进行高效液相色谱(HPLC),然后通过基质辅助激光解吸电离质谱(MALDI-TOF)进行分析。结果表明该曲霉菌菌株产生两种类肽醇。阐明了两个曲霉毒素(A和E)和五个曲霉毒素(T5D2,T5E,T5F,T5G和1717A)的一级结构。这些肽聚糖中的大多数以前已在T. viride和T. asperellum海洋菌株中进行了描述。这是首次报道土壤曲霉菌株产生这些化合物。未来的分析对于阐明三维结构及其对病原体的活性将是必要的。

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