OsWHY1/OsTRXz/OsMORFs complex is essential for RNA modification and early chloroplast development in rice
Zheng, X.; Lu, Q.; Luo, Y.; Xu, J.; Wang, W.; Tan, M.; Liao, D.; Hong, W.; Chen, S.; Lin, C.; Wang, X.; Fan, C.; Habiba, ; Wang, X.; Li, Y.; Zhang, Y.; Lin, W.; Miao, Y.
Show abstract
WHIRLY (WHY) proteins are single-stranded DNA/RNA-binding proteins that play multifaceted roles in various plant species. The regulatory mechanisms of WHY proteins in rice remains blank. Here we demonstrate that OsWHY1 in rice is required for early chloroplast development. CRISPR/Cas9-generated oswhy1 knockout lines displayed albino seedling phenotypes, abnormal chloroplast structure and comprised redox balance in leaves. OsWHY1 interacts with multiple plastid proteins, including the thioredoxin OsTRXz and two multiple organellar RNA editing factors (OsMORF8 and OsMORF9) in chloroplasts. Accordingly, several plastid genes dependent on plastid-encoded RNA polymerase (PEP) in the oswhy1 mutants were significantly depressed at both transcript and protein levels. The editing of rps14 transcripts and splicing of rpl2, along with their protein expression, were defective in the oswhy1 mutants. OsWHY1 exhibited RNA-binding activity, specifically binding to rps14 and rpl2 precursor RNAs, which underscores its role as a post-transcriptional regulator essential for normal protein synthesis in chloroplasts. Loss-of- function mutants of either OsWHY1 or OsMORF9 and OsTRXz displayed albino phenotypes, disrupted H2O2 homeostasis, and defective RNA processing in rps14 and rpl2, suggesting the OsWHY1-OsTRXz-OsMORFs regulatory module is vital for maintaining chloroplast stability and integrity through its RNA-binding activity and its role in recruiting OsTRXz and OsMORFs to ensure proper RNA modification. One sentence summaryOsWHY1 is integral to chloroplast development in rice through its RNA-binding activity and its role in recruiting OsTRXz and OsMORFs to ensure proper RNA modification.
Matching journals
The top 4 journals account for 50% of the predicted probability mass.
Similar papers in this journal
Similar papers in this journal
- Transcriptomic dynamics of petal development in the one-day flower species, Japanese morning glory (Ipomoea nil) 96%
- Multifaceted roles of rice ABA/stress-induced intrinsically disordered proteins in augmenting drought resistance 96%
- DLDG1, the Arabidopsis Homolog of the Cyanobacterial H+-Extrusion Protein, Regulates Non-Photochemical Quenching in Chloroplasts 96%
Similar papers in this journal
- OsIRO3 negatively regulates Fe homeostasis by repressing the expression of OsIRO2 97%
- WHIRLY1 regulates aliphatic glucosinolate biosynthesis in early seedling development of Arabidopsis 96%
- GUN1 influences the accumulation of NEP-dependent transcripts and chloroplast protein import in Arabidopsis cotyledons upon perturbation of chloroplast protein homeostasis 96%
Similar papers in this journal
Similar papers in this journal
- OsNLP3/4-OsRFL module regulates nitrogen-promoted panicle architecture in rice 96%
- Ustilaginoidea virens suppresses floral immunity through promoting GA biosynthesis by the effector SCRE9 96%
- Rice embryogenic trigger BABY BOOM1 promotes somatic embryogenesis by upregulation of auxin biosynthesis genes 96%
"Similar papers" are the closest papers from that journal in the model's embedding space. They show what the match is built on, but the ranking comes mostly from a classifier over the whole training set, not from these examples alone.