| Literature DB >> 31650621 |
Congyi Zhu1, Yuying Wang2, Xu Hu2, Mengying Lei3, Mingshuang Wang2, Jiwu Zeng1, Hongye Li4, Zheyu Liu1, Ting Zhou2, Dongliang Yu5.
Abstract
Involvement of LaeA in various biological processes of filamentous fungi has been demonstrated. However, its role in Penicillium digitatum, the causal agent of citrus postharvest green mold, remains unclear. In this study, a ΔPdLaeA mutant was constructed using homologous recombination. The production of conidia by the ΔPdLaeA mutant was reduced by half compared with that of the wild-type strain. The sensitivity of the ΔPdLaeA mutant increased under alkaline conditions. The virulence assay revealed that PdLaeA was dispensable for the virulence of P. digitatum. Comparative transcriptome analysis revealed that the function loss of PdLaeA resulted in the reduced expression of several secondary metabolite gene clusters. In addition, expression of several key regulators of conidiation (BrlA, FlbA, FlbC, FlbD, and FluG) was also downregulated in the ΔPdLaeA mutant. In summary, the present work demonstrated that PdLaeA was involved in the regulation of SM biosynthesis, as well as the development and environmental adaptation of P. digitatum.Entities:
Keywords: LaeA; Penicillium digitatum; conidia production; gene regulation; secondary metabolism; virulence
Year: 2019 PMID: 31650621 DOI: 10.1002/jobm.201900367
Source DB: PubMed Journal: J Basic Microbiol ISSN: 0233-111X Impact factor: 2.281