Unraveling the regulation of sugar beet pulp utilization in the industrially relevant fungus Aspergillus niger

Efficient utilization of agro-industrial waste, such as sugar beet pulp, is crucial for the bio-based economy. The fungus Aspergillus niger possesses a wide array of enzymes that degrade complex plant biomass substrates, and several regulators have been reported to play a role in their production. T...

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Veröffentlicht in:iScience 2022-04, Vol.25 (4), p.104065-104065, Article 104065
Hauptverfasser: Garrigues, Sandra, Kun, Roland S., Peng, Mao, Bauer, Diane, Keymanesh, Keykhosrow, Lipzen, Anna, Ng, Vivian, Grigoriev, Igor V., de Vries, Ronald P.
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Sprache:eng
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Zusammenfassung:Efficient utilization of agro-industrial waste, such as sugar beet pulp, is crucial for the bio-based economy. The fungus Aspergillus niger possesses a wide array of enzymes that degrade complex plant biomass substrates, and several regulators have been reported to play a role in their production. The role of the regulators GaaR, AraR, and RhaR in sugar beet pectin degradation has previously been reported. However, genetic regulation of the degradation of sugar beet pulp has not been assessed in detail. In this study, we generated a set of single and combinatorial deletion mutants targeting the pectinolytic regulators GaaR, AraR, RhaR, and GalX as well as the (hemi-)cellulolytic regulators XlnR and ClrB to address their relative contribution to the utilization of sugar beet pulp. We show that A. niger has a flexible regulatory network, adapting to the utilization of (hemi-)cellulose at early timepoints when pectin degradation is impaired. [Display omitted] •Major sugar beet pulp components are sequentially utilized by A. niger•Contribution of major regulators toward sugar beet pulp utilization was compared•Deletion of araR and clrB showed high impact on growth after 8 and 24 h, respectively Microbial metabolism; Mycology
ISSN:2589-0042
2589-0042
DOI:10.1016/j.isci.2022.104065