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木霉的遗传与代谢多样性:以东南亚分离株为例的研究

Genetic and metabolic diversity of Trichoderma: a case study on South-East Asian isolates.

作者信息

Kubicek Christian P, Bissett John, Druzhinina Irina, Kullnig-Gradinger Cornelia, Szakacs George

机构信息

Microbial Biochemistry and Gene Technology Group, Institute of Chemical Engineering, Technical University of Vienna, Getreidemarkt 9/166, A-1060, Vienna, Austria.

出版信息

Fungal Genet Biol. 2003 Apr;38(3):310-9. doi: 10.1016/s1087-1845(02)00583-2.

Abstract

We have used isolates of Trichoderma spp. collected in South-East Asia, including Taiwan and Western Indonesia, to assess the genetic and metabolic diversity of endemic species of Trichoderma. Ninety-six strains were isolated in total, and identified at the species level by analysis of morphological and biochemical characters (Biolog system), and by sequence analysis of their internal transcribed spacer regions 1 and 2 (ITS1 and 2) of the rDNA cluster, using ex-type strains and taxonomically established isolates of Trichoderma as reference. Seventy-eight isolates were positively identified as Trichoderma harzianum/Trichoderma inhamatum (37 strains) Trichoderma virens (16 strains), Trichoderma spirale (8 strains), Trichoderma koningii (3 strains), Trichoderma atroviride (3 strains), Trichoderma asperellum (4 strains), Hypocrea jecorina (anamorph: Trichoderma reesei; 2 strains), Trichoderma viride (2 strains), Trichoderma hamatum (1 strain), and Trichoderma ghanense (1 strain). Analysis of biochemical characters revealed that T. virens, T. spirale, T. asperellum, T. koningii, H. jecorina, and T. ghanense formed clearly defined clusters, thus exhibiting species-specific metabolic properties. In biochemical character analysis T. atroviride and T. viride formed partially overlapping clusters, indicating that these two species may share overlapping metabolic characteristics. This behavior was even more striking with T. harzianum/T. inhamatum where genotypes defined on the basis of ITS1 and 2 sequences overlapped significantly with adjacent genotypes in the biochemical character analysis, and four strains from the same location (Bali, Indonesia) even clustered with species from section Longibrachiatum. The data indicate that the T. harzianum/T. inhamatum group represents species with high metabolic diversity and partially unique metabolic characteristics. Nineteen strains yielded three different ITS1/2 sequence types which were not alignable with any known species. They were also uniquely characterized by morphological and biochemical characters and therefore represent three new taxa of Trichoderma.

摘要

我们使用了在东南亚(包括台湾和印度尼西亚西部)收集的木霉属菌株,来评估木霉属地方物种的遗传和代谢多样性。总共分离出96株菌株,并通过形态学和生化特征分析(Biolog系统)以及rDNA簇的内部转录间隔区1和2(ITS1和2)的序列分析,以木霉属的模式菌株和分类学上已确定的菌株作为参考,在种水平上进行鉴定。78株菌株被明确鉴定为哈茨木霉/印度木霉(37株)、绿色木霉(16株)、螺旋木霉(8株)、康氏木霉(3株)、深绿木霉(3株)、棘孢木霉(4株)、嗜松青霉(无性型:里氏木霉;2株)、绿色木霉(2株)、钩状木霉(1株)和加纳木霉(1株)。生化特征分析表明,绿色木霉、螺旋木霉、棘孢木霉、康氏木霉、嗜松青霉和加纳木霉形成了明确的聚类,从而表现出物种特异性的代谢特性。在生化特征分析中,深绿木霉和绿色木霉形成了部分重叠的聚类,表明这两个物种可能具有重叠的代谢特征。哈茨木霉/印度木霉的这种情况更为显著,基于ITS1和2序列定义的基因型在生化特征分析中与相邻基因型有很大重叠,来自同一地点(印度尼西亚巴厘岛) 的4株菌株甚至与长枝木霉组的物种聚类在一起。数据表明,哈茨木霉/印度木霉组代表了具有高代谢多样性和部分独特代谢特征的物种。19株菌株产生了三种不同的ITS1/2序列类型,它们与任何已知物种都无法比对。它们在形态学和生化特征上也具有独特性,因此代表了木霉属的三个新分类单元。

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