The blue light receptor gene PoWC-1 plays a role in the formation of Pleurotus ostreatus primordia

Blue light is a critical environmental signal that triggers fruiting body initiation in mushroom-forming fungi. Pleurotus ostreatus is a widely cultivated model mushroom, yet the molecular mechanisms linking light perception to primordia formation remain poorly understood. Here, we functionally characterized the blue light receptor gene PoWC-1, a homolog of Neurospora crassa white collar 1, during early morphogenesis. Antisense-mediated silencing of PoWC-1 caused a marked delay in primordia formation under light/dark cycles and complete arrest at the undifferentiated mycelial stage under continuous darkness, underscoring its role in developmental progression. Even in darkness, PoWC-1 silencing downregulated key developmental transcription factors, including hom1, hom2, Pofst3, and fst4, suggesting that PoWC-1 may contribute to developmental competence independently of light. Comparative transcriptomics further revealed that PoWC-1 influences a range of metabolic pathways-such as glycolysis/gluconeogenesis, the pentose phosphate pathway, and amino sugar metabolism-that may support the energetic and biosynthetic demands of fruiting initiation. In addition, PoWC-1 appears to affect upstream signaling components, including the MAPK pathway and the two-component system, along with a suite of downstream transcription factors. These findings suggest that PoWC-1 functions as a key regulator integrating blue light signals into a multi-layered network involved in metabolic reprogramming, signal transduction, and transcriptional regulation during primordia formation in P. ostreatus. Collectively, this study provides a molecular framework for understanding photomorphogenesis in edible mushrooms.

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Publication Details

Journal
Canadian Journal of Microbiology
Published
2026-08-31
DOI
https://doi.org/10.1139/cjm-2026-0052
Primary Topic
Fungal and yeast genetics research
Type
article
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article

The blue light receptor gene PoWC-1 plays a role in the formation of Pleurotus ostreatus primordia

Wenfeng Xie, Mingyu Jia, Yanru Hu, Yuancheng Qi et al.
Canadian Journal of Microbiology
Fungal and yeast genetics research
article

The blue light receptor gene PoWC-1 plays a role in the formation of Pleurotus ostreatus primordia

Wenfeng Xie, Mingyu Jia, Yanru Hu, Yuancheng Qi, Qing Liu, Qing Wen, Jinwen Shen, Ruyi Huang, Xiaojuan Hou, Fengqin Wang
article en

Abstract

Blue light is a critical environmental signal that triggers fruiting body initiation in mushroom-forming fungi. Pleurotus ostreatus is a widely cultivated model mushroom, yet the molecular mechanisms linking light perception to primordia formation remain poorly understood. Here, we functionally characterized the blue light receptor gene PoWC-1, a homolog of Neurospora crassa white collar 1, during early morphogenesis. Antisense-mediated silencing of PoWC-1 caused a marked delay in primordia formation under light/dark cycles and complete arrest at the undifferentiated mycelial stage under continuous darkness, underscoring its role in developmental progression. Even in darkness, PoWC-1 silencing downregulated key developmental transcription factors, including hom1, hom2, Pofst3, and fst4, suggesting that PoWC-1 may contribute to developmental competence independently of light. Comparative transcriptomics further revealed that PoWC-1 influences a range of metabolic pathways-such as glycolysis/gluconeogenesis, the pentose phosphate pathway, and amino sugar metabolism-that may support the energetic and biosynthetic demands of fruiting initiation. In addition, PoWC-1 appears to affect upstream signaling components, including the MAPK pathway and the two-component system, along with a suite of downstream transcription factors. These findings suggest that PoWC-1 functions as a key regulator integrating blue light signals into a multi-layered network involved in metabolic reprogramming, signal transduction, and transcriptional regulation during primordia formation in P. ostreatus. Collectively, this study provides a molecular framework for understanding photomorphogenesis in edible mushrooms.

Canadian Journal of Microbiology
Henan Agricultural University (CN)
Life in Land
Openalex Percentile: Top 18%
Fungal and yeast genetics research
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The blue light receptor gene PoWC-1 plays a role in the formation of Pleurotus ostreatus primordia — Wenfeng Xie, Mingyu Jia, et al. · Canadian Journal of Microbiology (2026) | TGRS Research Map | TGRS