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C-terminus of serine–arginine protein kinase-like protein, SrpkF, is involved in conidiophore formation and hyphal growth under salt stress in Aspergillus aculeatus / El extremo C de la proteína similar a la serina-arginina proteína quinasa, SrpkF, participa en la formación de conidióforos y el crecimiento de hifas bajo estrés salino en Aspergillus aculeatus
Kobayashi, Natsumi; Katayama, Ryohei; Minamoto, Kentaro; Kawaguchi, Takashi; Tani, Shuji.
Afiliación
  • Kobayashi, Natsumi; Osaka Prefecture University. School of Life and Environmental Sciences. Gakuen-cho. Japan
  • Katayama, Ryohei; Osaka Prefecture University. School of Life and Environmental Sciences. Gakuen-cho. Japan
  • Minamoto, Kentaro; Osaka Prefecture University. School of Life and Environmental Sciences. Gakuen-cho. Japan
  • Kawaguchi, Takashi; Osaka Prefecture University. School of Life and Environmental Sciences. Gakuen-cho. Japan
  • Tani, Shuji; Osaka Prefecture University. School of Life and Environmental Sciences. Gakuen-cho. Japan
Int. microbiol ; 27(1): 91-100, Feb. 2024. ilus, graf
Article en En | IBECS | ID: ibc-230246
Biblioteca responsable: ES1.1
Ubicación: ES15.1 - BNCS
ABSTRACT
The serine–arginine protein kinase–like protein, SrpkF, was identified as a regulator for the cellulose-responsive induction of cellulase genes in Aspergillus aculeatus. To analyze various aspects of SrpkF function, we examined the growth of the control strain (MR12); C-terminus deletion mutant, which produced SrpkF1–327 (ΔCsrpkF); whole gene-deletion mutant of srpkF (ΔsrpkF), srpkF overexpressing strain (OEsprkF); and the complemented strain (srpkF+) under various stress conditions. All test strains grew normally on minimal medium under control, high salt (1.5 M KCl), and high osmolality (2.0 M sorbitol and 1.0 M sucrose). However, only ΔCsrpkF showed reduced conidiation on 1.0 M NaCl media. Conidiation of ΔCsrpkF on 1.0 M NaCl media was reduced to 12% compared with that of srpkF+. Further, when OEsprkF and ΔCsrpkF were pre-cultured under salt stress conditions, germination under salt stress conditions was enhanced in both strains. By contrast, deletion of srpkF did not affect hyphal growth and conidiation under the same conditions. We then quantified the transcripts of the regulators involved in the central asexual conidiation pathway in A. aculeatus. The findings revealed that the expression of brlA, abaA, wetA, and vosA was reduced in ΔCsrpkF under salt stress. These data suggest that in A. aculeatus, SrpkF regulates conidiophore development. The C-terminus of SrpkF seems to be important for regulating SrpkF function in response to culture conditions such as salt stress.(AU)
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Colección: 06-national / ES Base de datos: IBECS Asunto principal: Arginina Quinasa / Aspergilosis / Proteínas Fúngicas / Proteínas Serina-Treonina Quinasas Límite: Humans Idioma: En Revista: Int. microbiol Año: 2024 Tipo del documento: Article
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Colección: 06-national / ES Base de datos: IBECS Asunto principal: Arginina Quinasa / Aspergilosis / Proteínas Fúngicas / Proteínas Serina-Treonina Quinasas Límite: Humans Idioma: En Revista: Int. microbiol Año: 2024 Tipo del documento: Article