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Oyster Mushroom · 2021 · Research Article

High relevance

Identification and physiological function of one microRNA (Po-MilR-1) in oyster mushroom Pleurotus ostreatus.

Pleurotus ostreatus

Metabolic health
SpeciesOyster Mushroom
JournalMycoscience
Year2021

Key points

  • MicroRNAs are essential regulators of gene expression and have been extensively studied in plants and animals; however, few reports have been published in mushrooms
  • Po-MilR-1 is a novel microRNA with a length of 22 bp in Pleurotus ostreatus
  • Expression profile analysis showed Po-MilR-1 had specific expression in the primordium and fruiting body
  • The transformants showed slow mycelium growth rate and abnormal pileus with irregular edge, which suggested Po-MilR-1 plays an important role in P. ostreatus development
  • Additionally, Po-MilR-1 and one of its target hydrophobin genes POH1 had opposite temporal expression profiles in the primordium and fruiting body, which revealed that Po-MilR-1 may perform its physiological function through the negative regulation of POH1
  • This study explored the development-related function of a mushroom microRNA and will provide a reference for other microRNAs

Metadata-grounded summary

Citation abstract

MicroRNAs are essential regulators of gene expression and have been extensively studied in plants and animals; however, few reports have been published in mushrooms. Po-MilR-1 is a novel microRNA with a length of 22 bp in Pleurotus ostreatus. The secondary structures of five precursors and the target genes of Po-MilR-1 were predicted. Expression profile analysis showed Po-MilR-1 had specific expression in the primordium and fruiting body. To explore its physiological function, Po-MilR-1 was overexpressed in P. ostreatus. The transformants showed slow mycelium growth rate and abnormal pileus with irregular edge, which suggested Po-MilR-1 plays an important role in P. ostreatus development. Additionally, Po-MilR-1 and one of its target hydrophobin genes POH1 had opposite temporal expression profiles in the primordium and fruiting body, which revealed that Po-MilR-1 may perform its physiological function through the negative regulation of POH1. This study explored the development-related function of a mushroom microRNA and will provide a reference for other microRNAs.

Citation

Xu D, Zhou Q, Yan B, Ma A (2021). Identification and physiological function of one microRNA (Po-MilR-1) in oyster mushroom Pleurotus ostreatus. Mycoscience https://doi.org/10.47371/mycosci.2021.01.004 PMID: 37091326

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