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One-pot consolidated bioprocessing of waste potatoes to l-malic acid by a thermotolerant and metabolically versatile Aspergillus terreus BD isolate

dc.contributor.authorGopaliya, Deeksha
dc.contributor.authorSrivastava, Nitin
dc.contributor.authorKumar, Vinod
dc.contributor.authorKhare, Sunil Kumar
dc.date.accessioned2026-06-18T15:20:12Z
dc.date.available2026-06-18T15:20:12Z
dc.date.freetoread2026-06-18
dc.date.issued2026-05
dc.date.pubOnline2026-05-07
dc.description.abstractThis study explores a metabolically versatile and thermotolerant Aspergillus terreus BD isolate, which exhibited selective itaconic acid (IA) and L-malic acid (L-MA) production under distinct fermentation conditions at 45 °C. An acidic fermentation medium (pH 3.4) with an inorganic nitrogen source favoured predominant IA synthesis. Contrastingly, organic nitrogen supplementation in a near-neutral medium (pH 6.0) diverted the metabolic flux towards L-MA. Relative gene expression analysis supported the differential IA and L-MA production under selective media conditions, showing upregulation of key genes in their respective biosynthetic pathways. Furthermore, the isolate was employed for the valorization of waste potato biomass (WPB), which is a major food waste worldwide. Fermentation of the enzymatic WPB hydrolysate at 45 °C generated a substantial L-MA titer (37 g L−1) without requiring CaCO3 supplementation. Operating at elevated temperatures reduces cooling demands, minimizes contamination risks, and improves compatibility with saccharification conditions. Eliminating CaCO3 minimizes chemical inputs and neutralization sludge outputs, thereby lowering the environmental burden and downstream complications. Harnessing these significant attributes, the isolate was integrated into a one-pot bioprocess employing simultaneous and semi-simultaneous saccharification and fermentation approaches. Process optimization, including solid loading, pH, inoculum size, pre-hydrolysis time, and enzyme dosage, yielded 60 g L-MA per kg WPB. Finally, extraction using n-butanol led to the recovery of 58% L-MA. Overall, these findings present A. terreus BD, integrated into an efficient one-pot bioprocess, as a promising platform for the sustainable and economically viable production and recovery of L-MA from starch-rich agro-industrial waste.
dc.description.journalNameSustainable Energy & Fuels
dc.description.sponsorshipDeeksha Gopaliya is thankful to the Government of India for the Prime Minister's Research Fellowship (PMRF ID: 1401206).
dc.format.extentpp. 2969-2982
dc.identifier.citationGopaliya D, Srivastava N, Kumar V, Khare SK. (2026) One-pot consolidated bioprocessing of waste potatoes to l-malic acid by a thermotolerant and metabolically versatile Aspergillus terreus BD isolate. Sustainable Energy & Fuels, Volume 10, Issue 12, May 2026, pp. 2969-2982en_UK
dc.identifier.eissn2398-4902
dc.identifier.elementsID870708
dc.identifier.issn2398-4902
dc.identifier.issueNo12
dc.identifier.urihttps://doi.org/10.1039/d6se00083e
dc.identifier.urihttps://dspace.lib.cranfield.ac.uk/handle/1826/25318
dc.identifier.volumeNo10
dc.languageEnglish
dc.language.isoen
dc.publisherRoyal Society of Chemistry (RSC)en_UK
dc.publisher.urihttps://pubs.rsc.org/en/content/articlelanding/2026/se/d6se00083e
dc.relation.isreferencedbyhttps://www.rsc.org/suppdata/d6/se/d6se00083e/d6se00083e1.pdf
dc.rightsAttribution 4.0 Internationalen
dc.rights.urihttp://creativecommons.org/licenses/by/4.0/
dc.subject34 Chemical Sciencesen_UK
dc.subject40 Engineeringen_UK
dc.subject12 Responsible Consumption and Productionen_UK
dc.subject3406 Physical chemistryen_UK
dc.subject4004 Chemical engineeringen_UK
dc.subject4008 Electrical engineeringen_UK
dc.subjectL-Malic aciden_UK
dc.subjectPotato waste fermentationen_UK
dc.subjectConsolidated bioprocessingen_UK
dc.subjectSimultaneous saccharification and fermentationen_UK
dc.subjectDownstream processingen_UK
dc.titleOne-pot consolidated bioprocessing of waste potatoes to l-malic acid by a thermotolerant and metabolically versatile Aspergillus terreus BD isolateen_UK
dc.typeArticle
dc.type.subtypeJournal Article
dcterms.dateAccepted2026-05-06

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