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一种综合方法用于确定在马铃薯葡萄糖琼脂上生长的M7的氮杂环戊酮色素生物合成基因簇的边界。

An Integrated Approach to Determine the Boundaries of the Azaphilone Pigment Biosynthetic Gene Cluster of M7 Grown on Potato Dextrose Agar.

作者信息

Liu Qingpei, Zhong Siyu, Wang Xinrui, Gao Shuaibiao, Yang Xiaolong, Chen Fusheng, Molnár István

机构信息

The Modernization Engineering Technology Research Center of Ethnic Minority Medicine of Hubei Province, School of Pharmaceutical Sciences, South-Central University for Nationalities, Wuhan, China.

Southwest Center for Natural Products Research, The University of Arizona, Tucson, AZ, United States.

出版信息

Front Microbiol. 2021 Jun 16;12:680629. doi: 10.3389/fmicb.2021.680629. eCollection 2021.

Abstract

type azaphilone pigments (MonAzPs) are produced in multi-thousand ton quantities each year and used as food colorants and nutraceuticals in East Asia. Several groups, including ours, described MonAzPs biosynthesis as a highly complex pathway with many branch points, affording more than 110 MonAzP congeners in a small group of fungi in the Eurotiales order. MonAzPs biosynthetic gene clusters (BGCs) are also very complex and mosaic-like, with some genes involved in more than one pathway, while other genes playing no apparent role in MonAzPs production. Due to this complexity, MonAzPs BGCs have been delimited differently in various fungi. Since most of these predictions rely primarily on bioinformatic analyses, it is possible that genes immediately outside the currently predicted BGC borders are also involved, especially those whose function cannot be predicted from sequence similarities alone. Conversely, some peripheral genes presumed to be part of the BGC may in fact lay outside the boundaries. This study uses a combination of computational and transcriptional analyses to predict the extent of the MonAzPs BGC in M7. Gene knockouts and analysis of MonAzPs production of the mutants are then used to validate the prediction, revealing that the BGC consists of 16 genes, extending from to . We further predict that two strains of , ATCC 18224 and PM1, encode an orthologous but non-syntenic MonAzPs BGC with 14 genes. This work highlights the need to use comprehensive, integrated approaches for the more precise determination of secondary metabolite BGC boundaries.

摘要

氮杂菲酮类色素(MonAzPs)每年的产量达数千吨,并在东亚地区用作食品着色剂和营养保健品。包括我们团队在内的多个研究小组均描述了MonAzPs的生物合成是一条高度复杂的途径,存在许多分支点,在一小群曲霉目真菌中可产生110多种MonAzP同系物。MonAzPs生物合成基因簇(BGCs)也非常复杂且呈镶嵌状,一些基因参与多条途径,而其他基因在MonAzPs的产生过程中似乎没有明显作用。由于这种复杂性,不同真菌中的MonAzPs BGCs界定方式各异。由于这些预测大多主要依赖生物信息学分析,当前预测的BGC边界之外紧邻的基因也有可能参与其中,尤其是那些仅从序列相似性无法预测其功能的基因。相反,一些被认为是BGC一部分的外围基因实际上可能位于边界之外。本研究结合计算分析和转录分析来预测M7中MonAzPs BGC的范围。然后通过基因敲除和突变体MonAzPs产量分析来验证该预测,结果表明该BGC由16个基因组成,范围从……到……。我们进一步预测,两株……,ATCC 18224和PM1,编码一个具有14个基因的直系同源但非共线性的MonAzPs BGC。这项工作凸显了需要采用全面、综合的方法来更精确地确定次生代谢物BGC边界。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9bd8/8241920/9169fb1fab4c/fmicb-12-680629-g001.jpg

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