Institute of Fungus Resource, College of Life Science, Guizhou University, Guiyang, 550025, Guizhou, China.
Curr Microbiol. 2024 Jun 16;81(8):227. doi: 10.1007/s00284-024-03757-y.
Microbial degradation of keratin is characterized by its inherent safety, remarkable efficiency, and the production of copious degradation products. All these attributes contribute to the effective management of waste materials at high value-added and in a sustainable manner. Microbial degradation of keratin materials remains unclear, however, with variations observed in the degradation genes and pathways among different microorganisms. In this study, we sequenced the transcriptome of Purpureocillium lilacinum GZAC18-2JMP mycelia on control medium and the medium containing 1% feather powder, analyzed the differentially expressed genes, and revealed the degradation mechanism of chicken feathers by P. lilacinum GZAC18-2JMP. The results showed that the chicken feather degradation rate of P. lilacinum GZAC18-2JMP reached 64% after 216 h of incubation in the fermentation medium, reaching a peak value of 148.9 μg·mL at 192 h, and the keratinase enzyme activity reached a peak value of 211 U·mL at 168 h, which revealed that P. lilacinum GZAC18-2JMP had a better keratin degradation effect. A total of 1001 differentially expressed genes (DEGs) were identified from the transcriptome database, including 475 upregulated genes and 577 downregulated genes. Kyoto encyclopedia of genes and genomes (KEGG) enrichment analysis of the DEGs revealed that the metabolic pathways related to keratin degradation were mainly sulfur metabolism, ABC transporters, and amino acid metabolism. Therefore, the results of this study provide an opportunity to gain further insight into keratin degradation and promote the biotransformation of feather wastes.
角蛋白的微生物降解具有安全性高、效率显著、降解产物丰富等特点,可实现高附加值、可持续地有效管理废物材料。然而,角蛋白材料的微生物降解机制尚不清楚,不同微生物的降解基因和途径存在差异。本研究对紫色毛壳菌 GZAC18-2JMP 菌丝在对照培养基和含 1%羽毛粉的培养基中的转录组进行测序,分析差异表达基因,揭示紫色毛壳菌 GZAC18-2JMP 降解鸡毛的机制。结果表明,紫色毛壳菌 GZAC18-2JMP 在发酵培养基中培养 216 h 后,鸡毛降解率达到 64%,192 h 时达到 148.9μg·mL-1的峰值,角蛋白酶酶活在 168 h 时达到 211 U·mL-1的峰值,表明紫色毛壳菌 GZAC18-2JMP 具有较好的角蛋白降解效果。从转录组数据库中共鉴定出 1001 个差异表达基因(DEGs),包括 475 个上调基因和 577 个下调基因。KEGG 富集分析显示,与角蛋白降解相关的代谢途径主要为硫代谢、ABC 转运蛋白和氨基酸代谢。因此,本研究结果为深入了解角蛋白降解机制提供了机会,促进了羽毛废物的生物转化。