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Alternaria brassicicola is a successful saprophyte and necrotrophic plant pathogen. Several A. brassicicola genes have been characterized as virulence factors affecting pathogenesis of Brassica species. To study regulatory mechanisms of pathogenesis, we mined 421 genes in silico encoding putative ...
ORGANISM(S): Alternaria brassicicola 
Melanin, as a pivotal antioxidant pigment, plays a critical role in the pathogenicity of Cryptococcus neoformans. However, the underlying signaling pathways responsible for melanin biosynthesis in C. neoformans are not yet fully elucidated. In this study, proteome and metabolomics analyses were cond...
ORGANISM(S): Cryptococcus neoformans var. grubii serotype A (strain H99 / ATCC 208821 / CBS 10515 / FGSC 9487) (Filobasidiella neoformans var. grubii) 
2025-07-23 | PXD056054 | Pride
The fungal pathogen Candida albicans produces dark-pigmented melanin when grown in a basal medium containing 1 mM l-DOPA as melanin substrate. In the widely used C. albicans strain SC5314, melanin appeared after 3-4 days of incubation in l-DOPA medium. The experiment was designed to reveal cadidat...
ORGANISM(S): Candida albicans 
Unravelling of the novel melanin biosynthesis-signalling networks in Cryptococcus neoformans
Melanin is an antioxidant polyphenol pigment, which is required for the pathogenicity of many human and plant fungal pathogens. Nevertheless, its comprehensive regulatory mechanism still remain elusive. In this study, we systematically analyzed melanin-regulating signaling pathways in Cryptococcus n...
ORGANISM(S): Cryptococcus neoformans H99 
2019-05-30 | GSE131891 | GEO

Gliotoxin is a secondary metabolite produced by Aspergillus fumigatus, known to play a significant role in immune regulation and virulence phenotypes. This study investigates how the deletion of gliotoxin biosynthesis remodels the metabolic state of A. fumigatus and subsequently af...

2026-05-11 | MTBLS14011 | MetaboLights
Alternaria brassicicola is a successful saprophyte and necrotrophic plant pathogen. Several A. brassicicola genes have been characterized as virulence factors affecting pathogenesis of Brassica species. To study regulatory mechanisms of pathogenesis, we mined 421 genes in silico encoding putative tr...
ORGANISM(S): Alternaria brassicicola 
2013-02-19 | GSE36781 | GEO
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