Overexpression of OsmiR156k leads to reduced tolerance to cold stress in rice (Oryza Sativa)
2015
Cui, Na | Sun, Xiaoli | Sun, Mingzhe | Jia, Bowei | Duanmu, Huizi | Lv, Dekang | Duan, Xu | Zhu, Yanming
The microRNA156 (miR156) family ‘has’ been well demonstrated to regulate plant growth and development. However, no reports focused on the roles of miR156s in environmental stress responses. In previous studies, we identified 18 cold stress responsive microRNAs in rice by using microarray analysis. Here, in the present study, we focused on the biological function of one of these cold responsive microRNAs, OsmiR156k. We generated the transgenic rice overexpressing OsmiR156k under the control of CaMV35S promoter, and verified the presence of OsmiR156k by using Southern blot analysis. We found that overexpression of OsmiR156k inhibited the seedling growth at the very early seedling stage under cold stress. Furthermore, OsmiR156k overexpression decreased plant cold tolerance at the young seedling growth stage, as evidenced by lower survival rates, chlorophyll contents and proline contents. As expected, we also suggested the down-regulated expression of the cold stress responsive genes, 01g22249 and OsP5CS, and OsmiR156k-tagated SPL genes, SPL3, SPL14 and SPL17, in the OsmiR156k transgenic lines. Taken together, our findings suggest that overexpression of OsmiR156k decreased the tolerance to cold stress in rice.
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