Title : Involvement of STH7 in light-adapted development in Arabidopsis thaliana promoted by both strigolactone and karrikin - Thussagunpanit_2017_Biosci.Biotechnol.Biochem_81_292 |
Author(s) : Thussagunpanit J , Nagai Y , Nagae M , Mashiguchi K , Mitsuda N , Ohme-Takagi M , Nakano T , Nakamura H , Asami T |
Ref : Biosci Biotechnol Biochem , 81 :292 , 2017 |
Abstract :
Strigolactones (SLs) and karrikins (KARs) regulate photomorphogenesis. GR24, a synthetic SL and KAR1, a KAR, inhibit the hypocotyl elongation of Arabidopsis thaliana in a weak light. GR24 and KAR1 up-regulate the expression of STH7, encoding a transcription factor belonging to the double B-box zinc finger subfamily. In this study, we used STH7-overexpressing (STH7ox) lines and functionally defective STH7 (STH7-SRDX) mutants to investigate roles of SLs and KARs in photomorphogenesis of Arabidopsis. Hypocotyl elongation of STH7-SRDX mutants was less sensitive to both GR24 and KAR1 treatment than that of wild-type Arabidopsis under weak light conditions. Furthermore, the chlorophyll and anthocyanin content was increased in STH7ox lines when de-etiolated with light and GR24-treated plants had enhanced anthocyanin production. GR24 and KAR1 treatment significantly increased the expression level of photosynthesis-related genes LHCB1 and rbcS. The results strongly suggest that SL and KAR induce photomorphogenesis of Arabidopsis in an STH7-dependent manner. |
PubMedSearch : Thussagunpanit_2017_Biosci.Biotechnol.Biochem_81_292 |
PubMedID: 27858514 |
Thussagunpanit J, Nagai Y, Nagae M, Mashiguchi K, Mitsuda N, Ohme-Takagi M, Nakano T, Nakamura H, Asami T (2017)
Involvement of STH7 in light-adapted development in Arabidopsis thaliana promoted by both strigolactone and karrikin
Biosci Biotechnol Biochem
81 :292
Thussagunpanit J, Nagai Y, Nagae M, Mashiguchi K, Mitsuda N, Ohme-Takagi M, Nakano T, Nakamura H, Asami T (2017)
Biosci Biotechnol Biochem
81 :292