Abstract
AbstractAuxin is well known to stimulate coleoptile elongation and rapid seedling growth in the air. However, its role in regulating rice germination and seedling establishment under submergence is largely unknown. Previous studies have shown that excessive levels of IAA frequently cause the inhibition of plant growth and development. In the present study, the high-level accumulation of endogenous IAA is observed under submergence in the dark, stimulating rice coleoptile elongation but limiting the root and primary leaf growth during anaerobic germination (AG). We found that oxygen and light can reduce IAA levels, promote the seedling establishment and enhance rice AG tolerance. miRNA microarray profiling and RNA gel blot analysis results show that the expression of miR167 is negatively regulated by submergence; it subsequently modulates the accumulation of free IAA through the miR167-ARF-GH3 pathway. The OsGH3-8 encodes an IAA-amido synthetase that functions to prevent free IAA accumulation. Reduced miR167 levels or overexpressing OsGH3-8 increase auxin metabolism, reduce endogenous levels of free IAA and enhance rice AG tolerance. The present study reveals that poor seed germination and seedling growth inhibition resulting from excessive IAA accumulation would cause intolerance to submergence in rice, suggesting that a certain threshold level of auxin is essential for rice AG tolerance.
Publisher
Cold Spring Harbor Laboratory
Reference63 articles.
1. Distinctive expression patterns and roles of the miRNA393/TIR1 homolog module in regulating flag leaf inclination and primary and crown root growth in rice (
Oryza sativa
)
2. Biswas, J. , and Yamauchi, M. (1997). Mechanismof seedling establishment of direct-seeded rice (Oryza sativa L.) under lowland conditions. Botanical Bulletin of Academia Sinica 38.
3. Photoregulation of a phytochrome gene promoter from oat transferred into rice by particle bombardment.
4. Cackett, L. , Luginbuehl, L.H. , Schreier, T.B. , Lopez-Juez, E. , and Hibberd, J.M. (2021). Chloroplast development in green plant tissues: the interplaybetween light, hormone, and transcriptional regulation. New Phytologist.
5. Interaction between Rice MYBGA and the Gibberellin Response Element Controls Tissue-Specific Sugar Sensitivity of α-Amylase Genes