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Investigation of inter- and intraspecies variation through genome sequencing of Aspergillus section Nigri

机译:通过曲霉区段基因组测序调查曲线组序列

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摘要

Aspergillus section Nigri comprises filamentous fungi relevant to biomedicine, bioenergy, health, and biotechnology. To learn more about what genetically sets these species apart, as well as about potential applications in biotechnology and biomedicine, we sequenced 23 genomes de novo, forming a full genome compendium for the section (26 species), as well as 6 Aspergillus niger isolates. This allowed us to quantify both inter-and intraspecies genomic variation. We further predicted 17,903 carbohydrateactive enzymes and 2,717 secondary metabolite gene clusters, which we condensed into 455 distinct families corresponding to compound classes, 49% of which are only found in single species. We performed metabolomics and genetic engineering to correlate genotypes to phenotypes, as demonstrated for the metabolite aurasperone, and by heterologous transfer of citrate production to Aspergillus nidulans. Experimental and computational analyses showed that both secondary metabolism and regulation are key factors that are significant in the delineation of Aspergillus species.
机译:曲霉部分NIGRI包括与生物医学,生物能源,健康和生物技术相关的丝状真菌。要了解有关基因上的内容,以及关于生物技术和生物医学的潜在应用,我们测序了23种Genomes de Novo,形成了部分(26种)的完整基因组纲要,以及6个Aspergillus Niger分离物。这使我们可以量化间间和内部内部基因组变异。我们进一步预测了17,903个碳水化合物反应性酶和2,717个次级代谢物基因簇,其浓缩成455个与复合类别的不同家族,其中49%仅在单一物种中发现。我们进行了代谢组科和基因工程,以将基因型与表型相关,如代谢物菌血酸盐,以及柠檬酸盐产生的异源转移到Aspergillus Nidulans。实验和计算分析表明,二次代谢和调节是曲霉属植物划分的关键因素。

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