Article ID | Journal | Published Year | Pages | File Type |
---|---|---|---|---|
8292898 | Biochemical and Biophysical Research Communications | 2018 | 6 Pages |
Abstract
The cold-induced metabolic pathway and anthocyanin biosynthesis play important roles in plant growth. In this study, we identified a bHLH binding motif in the MdMYB15L protein using protein sequence analyses. Yeast two-hybrid and pull-down assays showed that MdMYB15L could interact with MdbHLH33. Overexpressing MdMYB15L in red-fleshed callus inhibited the expression of MdCBF2 and resulted in reduced cold tolerance but did not affect anthocyanin levels. Chip-PCR and EMSA analysis showed that MdMYB15L could bind the type II cis-acting element found in the MdCBF2 promoter. Overexpressing MdMYB15L in red-fleshed callus overexpressing MdbHLH33 also reduced cold tolerance and reduced MdbHLH33-induced anthocyanin biosynthesis. Knocking out the bHLH binding sequence of MdMYB15L (LBSMdMYB15L) prevented LBSMdMYB15L from interacting with MdbHLH33. Overexpressing LBSMdMYB15L in red-fleshed callus overexpressing MdbHLH33 also reduced cold tolerance and reduced MdbHLH33-induced anthocyanin biosynthesis. Together, these results suggested that an apple repressor MdMYB15L might play a key role in the cold signaling and anthocyanin metabolic pathways.
Keywords
CBFAnthocyanin SynthaseChIP-PCRbHLHUFGTY2HGSTGFPMurashige and Skoogelectrophoretic mobility shift assaysAnthocyaninbasic helix-loop-helixCold toleranceHISBinding domainactivation domainRepressorANSEMSA یا electrophoretic mobility shift assay antiYeast two hybridhistidineAntibodygreen fluorescent proteinCdSCoding DNA Sequenceglutathione S-transferaseIce
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Authors
Haifeng Xu, Guanxian Yang, Jing Zhang, Yicheng Wang, Tianliang Zhang, Nan Wang, Shenghui Jiang, Zongying Zhang, Xuesen Chen,