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原生质体突变和基因组改组诱导内生真菌 Tubercularia sp. TF5 产生新化合物。

Protoplast mutation and genome shuffling induce the endophytic fungus Tubercularia sp. TF5 to produce new compounds.

机构信息

Key Laboratory of the Ministry of Education for Cell Biology and Tumor Cell Engineering, Xiamen Engineering Research Center of Marine Microbial Drug Discovery, Fujian Laboratory of Pharmaceutical Engineering, School of Life Sciences, Xiamen University, 422 South Siming Road, Xiamen, Fujian 361005, People's Republic of China.

出版信息

Curr Microbiol. 2010 Oct;61(4):254-60. doi: 10.1007/s00284-010-9604-7. Epub 2010 Mar 16.

Abstract

Tubercularia sp. TF5 is an endophytic fungal strain isolated from the medicinal plant Taxus mairei. Previously, taxol has been detected in the fermentation products of this strain. However, it lost the capability of producing taxol after long-term laboratory culture. Herein, we tried to reactivate the production of taxol by protoplast mutations and genome shuffling. The protoplasts of Tub. sp. TF5 were prepared from its mycelia, and mutated by UV and NTG. The mutant strains regenerated from the mutated protoplasts were selected and classified into four groups on the basis of their phenotypes, the profile of their metabolites analyzed by TLC, MS, and bioassay data. Then, genome shuffling was subsequently carried out with eight mutant strains, with two representatives from each protoplast mutant group, and genome shuffling mutant strains were obtained and screened using the same screening procedure. Although taxol has not been detected in any mutant, two important mutants, M-741 and G-444 were selected for metabolites isolation and determination due to their phenotypes, and differences in TLC analysis result from TF5 and other mutants. Three new sesquiterpenoids, namely tuberculariols A-C (1-3), and a known dihydroisocoumarin (4) were obtained from M-741. Eighteen novel compounds were isolated from G-444, including five new sesquiterpenoids (5-9), two new dihydroisocoumarins (10, 11), one new tetralone (12), together with 10 known compounds (13-20, 1, and 2). The compounds isolated from the M-741 and G-444 were different in structure types and substitutions from those of TF5 (15, 21-29). The results showed, for the first time, that protoplast mutations and genome shuffling are efficient approaches to mining natural products from endophytic fungi. Understanding the mechanisms of unlocking the biosynthesis of new metabolites will facilitate the manipulation of the secondary metabolism in fungi.

摘要

塔宾曲霉菌 TF5 是从药用植物南方红豆杉中分离得到的一种内生真菌菌株。此前,从该菌株的发酵产物中检测到紫杉醇。然而,经过长期的实验室培养,该菌株失去了生产紫杉醇的能力。在此,我们尝试通过原生质体突变和基因组改组来重新激活紫杉醇的生产。从塔宾曲霉菌 TF5 的菌丝体制备原生质体,并用 UV 和 NTG 进行诱变。根据表型从突变的原生质体再生的突变株被选择,并基于其代谢产物的 TLC、MS 和生物测定数据的图谱将其分类为四个组。然后,用来自每个原生质体突变体组的两个代表菌株进行了基因组改组,获得了基因组改组突变体,并使用相同的筛选程序进行筛选。尽管在任何突变株中都未检测到紫杉醇,但由于其表型以及与 TF5 和其他突变株的 TLC 分析结果的差异,选择了两个重要的突变株 M-741 和 G-444 进行代谢产物分离和鉴定。从 M-741 中得到了三种新的倍半萜类化合物,即塔宾曲霉菌醇 A-C(1-3),以及一种已知的二氢异香豆素(4)。从 G-444 中分离得到了 18 种新化合物,包括 5 种新的倍半萜类化合物(5-9)、2 种新的二氢异香豆素(10、11)、1 种新的四氢酮(12),以及 10 种已知化合物(13-20、1 和 2)。从 M-741 和 G-444 中分离得到的化合物在结构类型和取代基上与 TF5(15、21-29)不同。结果表明,原生质体突变和基因组改组是从内生真菌中挖掘天然产物的有效方法。了解解锁新代谢产物生物合成的机制将有助于真菌中次级代谢的操纵。

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