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17个黑粉菌科高质量基因组序列助力系统发育基因组学分析并为次级代谢产物合成提供见解。

Seventeen Ustilaginaceae High-Quality Genome Sequences Allow Phylogenomic Analysis and Provide Insights into Secondary Metabolite Synthesis.

作者信息

Ullmann Lena, Wibberg Daniel, Busche Tobias, Rückert Christian, Müsgens Andreas, Kalinowski Jörn, Blank Lars M

机构信息

iAMB-Institute of Applied Microbiology, ABBt-Aachen Biology and Biotechnology, RWTH Aachen University, Worringerweg 1, 52074 Aachen, Germany.

Center for Biotechnology (CeBiTec), Bielefeld University, Universitätsstraße 27, 33615 Bielefeld, Germany.

出版信息

J Fungi (Basel). 2022 Mar 8;8(3):269. doi: 10.3390/jof8030269.

Abstract

The family of Ustilaginaceae belongs to the order of Basidiomycetes. Despite their plant pathogenicity causing, e.g., corn smut disease, they are also known as natural producers of value-added chemicals such as extracellular glycolipids, organic acids, and polyols. Here, we present 17 high-quality draft genome sequences (N50 > 1 Mb) combining third-generation nanopore and second-generation Illumina sequencing. The data were analyzed with taxonomical genome-based bioinformatics methods such as Percentage of Conserved Proteins (POCP), Average Nucleotide Identity (ANI), and Average Amino Acid Identity (AAI) analyses indicating that a reclassification of the Ustilaginaceae family might be required. Further, conserved core genes were determined to calculate a phylogenomic core genome tree of the Ustilaginaceae that also supported the results of the other phylogenomic analysis. In addition, to genomic comparisons, secondary metabolite clusters (e.g., itaconic acid, mannosylerythritol lipids, and ustilagic acid) of biotechnological interest were analyzed, whereas the sheer number of clusters did not differ much between species.

摘要

黑粉菌科属于担子菌纲。尽管它们具有植物致病性,例如会引发玉米黑粉病,但它们也是细胞外糖脂、有机酸和多元醇等增值化学品的天然生产者。在此,我们结合第三代纳米孔测序和第二代Illumina测序,展示了17个高质量的基因组草图序列(N50 > 1 Mb)。使用基于分类基因组的生物信息学方法对数据进行分析,如保守蛋白质百分比(POCP)、平均核苷酸同一性(ANI)和平均氨基酸同一性(AAI)分析,结果表明可能需要对黑粉菌科进行重新分类。此外,确定了保守核心基因以计算黑粉菌科的系统发育核心基因组树,这也支持了其他系统发育分析的结果。此外,除了基因组比较外,还分析了具有生物技术意义的次生代谢物簇(例如衣康酸、甘露糖赤藓糖醇脂和黑粉菌酸),而不同物种之间簇的数量差异不大。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e6ca/8951962/c74194f5bccf/jof-08-00269-g001.jpg

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