Root-Specific Expression of OsNAC10 Improves Drought Tolerance and Grain Yield in Rice under Field Drought Conditions
Seoul National University · National Academy of Agricultural Science · +1 more institution
Abstract
Drought poses a serious threat to the sustainability of rice (Oryza sativa) yields in rain-fed agriculture. Here, we report the results of a functional genomics approach that identified a rice NAC (an acronym for NAM [No Apical Meristem], ATAF1-2, and CUC2 [Cup-Shaped Cotyledon]) domain gene, OsNAC10, which improved performance of transgenic rice plants under field drought conditions. Of the 140 OsNAC genes predicted in rice, 18 were identified to be induced by stress conditions. Phylogenic analysis of the 18 OsNAC genes revealed the presence of three subgroups with distinct signature motifs. A group of OsNAC genes were prescreened for enhanced stress tolerance when overexpressed in rice. OsNAC10, one of the…
Citation impact
- FWCI
- 52.17
- Percentile
- 100%
- References
- 44
Authors
9- JSJin Seo JeongCorresponding
Seoul National University, National Academy of Agricultural Science, Myongji University
- YSYoun Shic Kim
Seoul National University, National Academy of Agricultural Science, Myongji University
- KHKwang Hun Baek
Seoul National University, National Academy of Agricultural Science, Myongji University
- HJHarin Jung
Seoul National University, National Academy of Agricultural Science, Myongji University
- SHSun‐Hwa Ha
Seoul National University, National Academy of Agricultural Science, Myongji University
Topics & keywords
- Panicle
- Oryza sativa
- Drought tolerance
- Biology
- Genetically modified rice
- Abscisic acid
- Oryza
- Salinity
- Zero hunger