Author:
Zhang Runji,Chen Yulan,Wang Wenxian,Chen Juan,Liu Dongyang,Zhang Lingzi,Xiang Quanju,Zhao Ke,Ma Menggen,Yu Xiumei,Chen Qiang,Penttinen Petri,Gu Yunfu
Abstract
The process of carbohydrate metabolism and genetic information transfer is an important part of the study on the effects of the external environment on microbial growth and development. As one of the most significant environmental parameters, pH has an important effect on mycelial growth. In this study, the effects of environmental pH on the growth and nutrient composition of Aspergillus niger (A. niger) filaments were determined. The pH values of the medium were 5, 7, and 9, respectively, and the molecular mechanism was further investigated by transcriptomics and metabolomics methods. The results showed that pH 5 and 9 significantly inhibited filament growth and polysaccharide accumulation of A. niger. Further, the mycelium biomass of A. niger and the crude polysaccharide content was higher when the medium's pH was 7. The DEGs related to ribosome biogenesis were the most abundant, and the downregulated expression of genes encoding XRN1, RRM, and RIO1 affected protein translation, modification, and carbohydrate metabolism in fungi. The dynamic changes of pargyline and choline were in response to the oxidative metabolism of A. niger SICU-33. The ribophorin_I enzymes and DL-lactate may be important substances related to pH changes during carbohydrate metabolism of A.niger SICU-33. The results of this study provide useful transcriptomic and metabolomic information for further analyzing the bioinformatic characteristics of A. niger and improving the application in ecological agricultural fermentation.
Funder
National Natural Science Foundation of China
Reference86 articles.
1. “Aspergillus: biodiversity, ecological significances, and industrial applications,”;Abdel-Azeem,2019
2. Gapped BLAST and PSI-BLAST: a new generation of protein database search programs;Altschul;Nucleic Acids Res,1997
3. Beyond transcription: RNA-binding proteins as emerging regulators of plant response to environmental constraints;Ambrosone;Plant Sci,2012
4. Metabolic model integration of the bibliome, genome, metabolome and reactome of Aspergillus niger;Andersen;Mol. Syst. Biol,2008
5. UniProt: the universal protein knowledgebase;Apweiler;Nucleic Acids Res,2004