Data from: Ubiquitin-like SUMO protease expansion in rice (Oryza sativa L.)
Data files
Apr 24, 2026 version files 73.96 MB
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Mix-model_correct_ULP_Sc_Sp_At_Os_rm_short.fasta
47.90 KB
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README.md
3.41 KB
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RPRP_rice_ulp_pdb.zip
42.31 MB
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wild_rice_ulp_pdb.zip
31.59 MB
Abstract
SUMOylation is a protein post-translational modification that is essential for plant growth and response to changing environments. However, past work in this area has mainly focused on simple sequence similarity methods for discovering SUMOylation genes, often using orthologue mapping from yeast (Saccharomyces cerevisiae) or Arabidopsis (Arabidopsis thaliana). In this work, we employed a range of computational techniques and approaches to describe and characterise the SUMOylation machinery in Asian rice (Oryza sativa), as a globally important stable crop, and where the SUMOylation system has been shown to play key roles in responses to biotic and abiotic stresses. We describe and analyse the ULP system at the phylogenetic, transcriptional, and protein structural levels, with a focus on the rice reference genome, a well-annotated Rice Population Reference Panel (RPRP), and wild rice genomes. Our analysis revealed the expansion of ULPs in the reference genome and RPRP set (32 – 45 ULPs) compared to wild rice (9-36 ULPs), raising an intriguing hypothesis about the expansion of the ULP family being driven by selective breeding pressure. We provide evidence of potential functional ULPs and their possible roles in biotic and abiotic stress responses in cultivated rice. These insights offer valuable resources for future rice breeding and crop improvement.
Dataset DOI: 10.5061/dryad.1ns1rn97f
Description of the data and file structure
ULP proteins in the RPRP and wild relatives of rice were identified using Mix-model_correct_ULP_Sc_Sp_At_Os_rm_short.fasta as the BLASTP query.
Protein structures for the ULP representatives from the RPRP pan-genes and all identified ULPs in wild relatives of rice were predicted using colabfold (https://github.com/YoshitakaMo/localcolabfold; Mirdita et al. (2022)). The colabfold parameters were set as generating three models (--num-models 3), using amber for the structure refinement (--amber), and running on GPU (--use-gpu-relax). Only the relaxed_rank_001 structures were further investigated. The ULP protein structures predicted by Alphafold2 (pdb files) are in the folders: RPRP_rice_ulp_pdb.zip (RPRP rice) and wild_rice_ulp_pdb.zip (wild rice).
reference: Mirdita, M., Schutze, K., Moriwaki, Y., Heo, L., Ovchinnikov, S., & Steinegger, M. (2022). ColabFold: making protein folding accessible to all. Nat Methods, 19(6), 679-682. https://doi.org/10.1038/s41592-022-01488-1
Files and variables
File: Mix-model_correct_ULP_Sc_Sp_At_Os_rm_short.fasta
Description:
Fasta format file of known ULPs from yeast (Saccharomyces cerevisiae and Schizosaccharomyces pombe), Arabidopsis thaliana, and Oryza sativa (6 known, and the result from the first BLASTP analysis).
File: RPRP_rice_ulp_pdb.zip
Description:
Predicted structures of ULP proteins from the RPRP rice population using AlphaFold2 (PDB files)
| Gene code | O. sativa variety |
|---|---|
| OsARC_ | ARC |
| OsGoSa_ | Gobolsail |
| OsIR4_ | IR64 |
| OsKYG_ | Khao_yai_guang |
| OsLaMu_ | Larha_mugad |
| OsLima_ | Lima |
| OsLiXu_ | Liu_Xu |
| OsMH63_ | MH63 |
| OsPr106_ | PR106 |
| OsZS97_ | ZS97 |
| OsN22_ | Nagina22 |
| OsNaBo_ | Natel_boro |
| OsAzu_ | Azucena |
| OsCMeo_ | Chaomeo |
| OsKeNa_ | Ketan_nangka |
| Os, LOC_, OsNip_ | *Japonica |
*IRGSP RefSeq – three annotation sets from RAP-DB (Os), RGAP (LOC_) and Gramene (OsNip) databases.
Note: IRGSP (International Rice Genome Sequencing Project), RAP-DB (The Rice Annotation Project), RGAP (Rice Genome Annotation Project)
File: wild_rice_ulp_pdb.zip
Description:
Predicted structures of ULP proteins from the wild relative rice species using AlphaFold2 (PDB files)
| Gene codes | Species |
|---|---|
| OB | O. brachyantha |
| OGLUM | O. glumipatula |
| KN538684.1 | O. longistaminata |
| ONIVA | O. nivara |
| OPUNC | O. punctata |
| ORUFI | O. rufipogon |
| OBART | O. barthii |
| ORGLA | O. glaberrima |
| LPERR | Leersia perrieri |
