A Comparative Transcriptome Analysis Unveils the Mechanisms of Response in Feather Degradation by Pseudomonas aeruginosa Gxun-7

被引:2
作者
Song, Chaodong [1 ]
Liu, Rui [1 ]
Yin, Doudou [1 ]
Xie, Chenjie [1 ]
Liang, Ying [1 ]
Yang, Dengfeng [2 ]
Jiang, Mingguo [1 ]
Zhang, Hongyan [1 ]
Shen, Naikun [1 ]
机构
[1] Guangxi Minzu Univ, Sch Marine Sci & Biotechnol, Guangxi Key Lab Polysaccharide Mat & Modificat, Nanning 530000, Peoples R China
[2] Guangxi Acad Sci, Guangxi Beibu Gulf Marine Res Ctr, Guangxi Key Lab Marine Nat Prod & Combinatorial Bi, 98, Daxue Rd, Nanning 530007, Peoples R China
关键词
Pseudomonas aeruginosa; feather degradation; comparative transcriptome analysis; degradation mechanism; VI SECRETION SYSTEM; ENZYMES; SULFITE; T6SS;
D O I
10.3390/microorganisms12040841
中图分类号
Q93 [微生物学];
学科分类号
071005 ; 100705 ;
摘要
Microbial degradation of feathers offers potential for bioremediation, yet the microbial response mechanisms warrant additional investigation. In prior work, Pseudomonas aeruginosa Gxun-7, which demonstrated robust degradation of feathers at elevated concentrations, was isolated. However, the molecular mechanism of this degradation remains only partially understood. To investigate this, we used RNA sequencing (RNA-seq) to examine the genes that were expressed differentially in P. aeruginosa Gxun-7 when exposed to 25 g/L of feather substrate. The RNA-seq analysis identified 5571 differentially expressed genes; of these, 795 were upregulated and 603 were downregulated. Upregulated genes primarily participated in proteolysis, amino acid, and pyruvate metabolism. Genes encoding proteases, as well as those involved in sulfur metabolism, phenazine synthesis, and type VI secretion systems, were notably elevated, highlighting their crucial function in feather decomposition. Integration of Gene Ontology (GO) and Kyoto Encyclopedia of Genes and Genomes (KEGG) taxonomies, combined with a review of the literature, led us to propose that metabolic feather degradation involves environmental activation, reducing agent secretion, protease release, peptide/amino acid uptake, and metabolic processes. Sulfite has emerged as a critical activator of keratinase catalysis, while cysteine serves as a regulatory mediator. qRT-PCR assay results for 11 selected gene subset corroborated the RNA-seq findings. This study enhances our understanding of the transcriptomic responses of P. aeruginosa Gxun-7 to feather degradation and offers insights into potential degradation mechanisms, thereby aiding in the formulation of effective feather waste management strategies in poultry farming.
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页数:17
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