Abstract
Multiple transcriptional regulators play important roles in
the coordination of developmental processes, including asexual
and sexual development, and secondary metabolism in the
filamentous fungus Aspergillus nidulans. In the present study,
we characterized a novel putative C2H2-type transcription
factor (TF), RocA, in relation to development and secondary
metabolism. Deletion of rocA increased conidiation and caused
defective sexual development. In contrast, the overexpression
of rocA exerted opposite effects on both phenotypes. Additionally,
nullifying rocA resulted in enhanced brlA expression
and reduced nsdC expression, whereas its overexpression
exerted the opposite effects. These results suggest that RocA
functions as a negative regulator of asexual development by
repressing the expression of brlA encoding a key asexual development
activator, but as a positive regulator of sexual development
by enhancing the expression of nsdC encoding a
pivotal sexual development activator. Deletion of rocA increased
the production of sterigmatocystin (ST), as well as the
expression of its biosynthetic genes, aflR and stcU. Additionally,
the expression of the biosynthetic genes for penicillin
(PN), ipnA and acvA, and for terrequinone (TQ), tdiB and
tdiE, was increased by rocA deletion. Thus, it appears that
RocA functions as a negative transcriptional modulator of the
secondary metabolic genes involved in ST, PN, and TQ biosynthesis.
Taken together, we propose that RocA is a novel
transcriptional regulator that may act either positively or negatively
at multiple target genes necessary for asexual and
sexual development and secondary metabolism.
Citations
Citations to this article as recorded by

- srdA mutations suppress the rseA/cpsA deletion mutant conidiation defect in Aspergillus nidulans
Masahiro Ogawa, Ryouichi Fukuda, Ryo Iwama, Yasuji Koyama, Hiroyuki Horiuchi
Scientific Reports.2023;[Epub] CrossRef - Identification of a Novel Pleiotropic Transcriptional Regulator Involved in Sporulation and Secondary Metabolism Production in Chaetomium globosum
Shanshan Zhao, Kai Zhang, Congyu Lin, Ming Cheng, Jinzhu Song, Xin Ru, Zhengran Wang, Wan Wang, Qian Yang
International Journal of Molecular Sciences.2022; 23(23): 14849. CrossRef