PXD070642 is an
original dataset announced via ProteomeXchange.
Dataset Summary
| Title | Spore inoculum size impacts substrate degradation and sporulation but not the secretome during colonization of whole yellow pea (Pisum sativum) by Aspergillus oryzae |
| Description | Aspergillus oryzae is used in solid-state fermentation (SSF) to produce plant-based foods. To this end, the substrate is inoculated with spores of this fungus. So far, the effect of inoculum size on SSF with A. oryzae has primarily focused on the production of specific enzymes. Therefore, the aim of this study was to examine the impact of inoculum size on the full secretome, combined with enzyme activity assays, assessment of colonization, substrate degradation, and sporulation. To this end, A. oryzae was grown for 7 days on whole yellow pea (Pisum sativum). Fluorescence microscopy with a GFP-expressing A. oryzae strain showed that peas had been colonized externally and internally, irrespective of inoculum size. Yet, the highest inoculum size resulted in a stronger pea biomass reduction when compared to the lowest inoculum size. By contrast, sporulation decreased with increasing inoculum size. Notably, proteomics revealed no effect of inoculum size on the protein profiles of aqueous extracts of the colonized peas. Amylases and proteases were the most abundant secreted proteins, which was consistent with their high activity in the aqueous extracts. Proteomics also identified β-1,3-glucanases and chitinases, indicating hyphal lysis. Indeed, 10–19% of the fungal proteins detected in the aqueous extracts lacked signal peptides. These data contribute to our understanding of colonization of substrates by A. oryzae and may be used to optimize SSF with this food grade fungus. |
| HostingRepository | PRIDE |
| AnnounceDate | 2026-06-27 |
| AnnouncementXML | Submission_2026-06-27_07:41:29.671.xml |
| DigitalObjectIdentifier | https://doi.org/10.6019/PXD070642 |
| ReviewLevel | Peer-reviewed dataset |
| DatasetOrigin | Original dataset |
| RepositorySupport | Supported dataset by repository |
| PrimarySubmitter | Nadzeya Staliarova |
| SpeciesList | scientific name: Pisum sativum (Garden pea); NCBI TaxID: NEWT:3888; scientific name: Aspergillus oryzae RIB40; NCBI TaxID: NEWT:510516; |
| ModificationList | No PTMs are included in the dataset |
| Instrument | Orbitrap Exploris 480 |
Dataset History
| Revision | Datetime | Status | ChangeLog Entry |
| 0 | 2025-11-12 10:30:52 | ID requested | |
| 1 | 2026-06-26 06:32:52 | announced | |
| ⏵ 2 | 2026-06-27 07:41:30 | announced | 2026-06-27: Updated project metadata. |
Publication List
| 10.6019/PXD070642; |
| Braat M, Braat N, Staliarova N, Vellozo-Echevarr, í, a T, Siwek HM, Kemmer JF, Barrett K, Meyer AS, Stecker KE, W, ö, sten HAB, Spore inoculum size impacts substrate degradation and sporulation but not the secretome during colonization of whole yellow pea (Pisum sativum) by Aspergillus oryzae. Int J Food Microbiol, 458():111853(2026) [pubmed] |
| 10.1016/j.ijfoodmicro.2026.111853; |
Keyword List
| submitter keyword: Fungus, solid-state fermentation, plant-based meat alternative, Aspergillus oryzae, Pisum sativum, pea |
Contact List
| Kelly E. Stecker |
| contact affiliation | Biomolecular Mass Spectrometry and Proteomics, Center for Biomolecular Research and Utrecht Institute for Pharmaceutical Sciences, Utrecht University, 3584 CH Utrecht, the Netherlands |
| contact email | k.e.stecker@uu.nl |
| lab head | |
| Nadzeya Staliarova |
| contact affiliation | Utrecht University |
| contact email | n.staliarova@uu.nl |
| dataset submitter | |
Full Dataset Link List
Dataset FTP location
NOTE: Most web browsers have now discontinued native support for FTP access within the browser window. But you can usually install another FTP app (we recommend FileZilla) and configure your browser to launch the external application when you click on this FTP link. Or otherwise, launch an app that supports FTP (like FileZilla) and use this address: ftp://ftp.pride.ebi.ac.uk/pride/data/archive/2026/06/PXD070642 |
| PRIDE project URI |
Repository Record List
[ + ]
[ - ]
- PRIDE
- PXD070642
- Label: PRIDE project
- Name: Spore inoculum size impacts substrate degradation and sporulation but not the secretome during colonization of whole yellow pea (Pisum sativum) by Aspergillus oryzae