Oryza sativa ObgC1 Acts as a Key Regulator of DNA Replication and Ribosome Biogenesis in Chloroplast Nucleoids
Background The Spo0B-associated GTP-binding protein (Obg) GTPase, has diverse and important functions in bacteria, including morphological development, DNA replication and ribosome maturation. Homologs of the Bacillus subtilis Obg have been also found in chloroplast of Oryza sativa , but their prima...
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Veröffentlicht in: | Rice 2021-12, Vol.14 (1), p.65-65, Article 65 |
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Sprache: | eng |
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Zusammenfassung: | Background
The Spo0B-associated GTP-binding protein (Obg) GTPase, has diverse and important functions in bacteria, including morphological development, DNA replication and ribosome maturation. Homologs of the
Bacillus subtilis
Obg have been also found in chloroplast of
Oryza sativa
, but their primary roles remain unknown.
Results
We clarify that OsObgC1 is a functional homolog of AtObgC. The mutant
obgc1-d1
exhibited hypersensitivity to the DNA replication inhibitor hydroxyurea. Quantitative PCR results showed that the ratio of chloroplast DNA to nuclear DNA in the mutants was higher than that of the wild-type plants. After DAPI staining,
OsObgC1
mutants showed abnormal nucleoid architectures. The specific punctate staining pattern of OsObgC1-GFP signal suggests that this protein localizes to the chloroplast nucleoids. Furthermore, loss-of-function mutation in
OsObgC1
led to a severe suppression of protein biosynthesis by affecting plastid rRNA processing. It was also demonstrated through rRNA profiling that plastid rRNA processing was decreased in
obgc1-d
mutants, which resulted in impaired ribosome biogenesis. The sucrose density gradient profiles revealed a defective chloroplast ribosome maturation of
obgc1-d1
mutants.
Conclusion
Our findings here indicate that the OsObgC1 retains the evolutionarily biological conserved roles of prokaryotic Obg, which acts as a signaling hub that regulates DNA replication and ribosome biogenesis in chloroplast nucleoids. |
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ISSN: | 1939-8425 1939-8433 1934-8037 |
DOI: | 10.1186/s12284-021-00498-5 |