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Article

BplMYB46 from Betula platyphylla Can Form Homodimers and Heterodimers and Is Involved in Salt and Osmotic Stresses

1
State Key Laboratory of Tree Genetics and Breeding, Northeast Forestry University, Harbin 150040, China
2
Key Laboratory of Fast-Growing Tree Cultivating of Heilongjiang Province, Forestry Science Research Institute of Heilongjiang Province, Harbin 150040, China
3
College of Forestry, Shenyang Agricultural University, Shenyang 110866, China
*
Authors to whom correspondence should be addressed.
Int. J. Mol. Sci. 2019, 20(5), 1171; https://doi.org/10.3390/ijms20051171
Submission received: 11 January 2019 / Revised: 26 February 2019 / Accepted: 4 March 2019 / Published: 7 March 2019
(This article belongs to the Section Molecular Plant Sciences)

Abstract

MYB proteins play important roles in the regulation of plant growth, development, and stress responses. Overexpression of BplMYB46 from Betula platyphylla improved plant salt and osmotic tolerances. In the present study, the interaction of eight avian myeloblastosis viral oncogene homolog (MYB) transcription factors with BplMYB46 was investigated using the yeast two-hybrid system, which showed that BplMYB46 could form homodimers and heterodimers with BplMYB6, BplMYB8, BplMYB11, BplMYB12, and BplMYB13. Relative beta-glucuronidase activity and chromatin immunoprecipitation assays showed that the interaction between BplMYB46 and the five MYBs increased the binding of BplMYB46 to the MYBCORE motif. A subcellular localization study showed that these MYBs were all located in the nucleus. Real-time fluorescence quantitative PCR results indicated that the expressions of BplMYB46 and the five MYB genes could be induced by salt and osmotic stress, and the BplMYB46 and BplMYB13 exhibited the most similar expression patterns. BplMYB46 and BplMYB13 co-overexpression in tobacco using transient transformation technology improved tobacco’s tolerance to salt and osmotic stresses compared with overexpressing BplMYB13 or BplMYB46 alone. Taken together, these results demonstrated that BplMYB46 could interact with five other MYBs to form heterodimers that activate the transcription of target genes via an enhanced binding ability to the MYBCORE motif to mediate reactive oxygen species scavenging in response to salt and osmotic stresses.
Keywords: Betula platyphylla; MYB; dimerization; yeast two-hybrid; stress response Betula platyphylla; MYB; dimerization; yeast two-hybrid; stress response

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MDPI and ACS Style

Wang, Y.-M.; Wang, C.; Guo, H.-Y.; Wang, Y.-C. BplMYB46 from Betula platyphylla Can Form Homodimers and Heterodimers and Is Involved in Salt and Osmotic Stresses. Int. J. Mol. Sci. 2019, 20, 1171. https://doi.org/10.3390/ijms20051171

AMA Style

Wang Y-M, Wang C, Guo H-Y, Wang Y-C. BplMYB46 from Betula platyphylla Can Form Homodimers and Heterodimers and Is Involved in Salt and Osmotic Stresses. International Journal of Molecular Sciences. 2019; 20(5):1171. https://doi.org/10.3390/ijms20051171

Chicago/Turabian Style

Wang, Yan-Min, Chao Wang, Hui-Yan Guo, and Yu-Cheng Wang. 2019. "BplMYB46 from Betula platyphylla Can Form Homodimers and Heterodimers and Is Involved in Salt and Osmotic Stresses" International Journal of Molecular Sciences 20, no. 5: 1171. https://doi.org/10.3390/ijms20051171

APA Style

Wang, Y.-M., Wang, C., Guo, H.-Y., & Wang, Y.-C. (2019). BplMYB46 from Betula platyphylla Can Form Homodimers and Heterodimers and Is Involved in Salt and Osmotic Stresses. International Journal of Molecular Sciences, 20(5), 1171. https://doi.org/10.3390/ijms20051171

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