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FaMYB44.2, a transcriptional repressor, negatively regulates sucrose accumulation in strawberry receptacles through interplay with FaMYB10

Sugar and acid metabolism are critical for fruit ripening and quality formation, but the underlying regulatory mechanisms are largely unknown. Here, we identified a transcriptional repressor, FaMYB44.2, that regulates sugar and acid accumulation in strawberry (Fragaria × ananassa ‘Benihoppe’) recept...

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Autores principales: Wei, Lingzhi, Mao, Wenwen, Jia, Meiru, Xing, Sinian, Ali, Usman, Zhao, Yaoyao, Chen, Yating, Cao, Minglin, Dai, Zhengrong, Zhang, Kai, Dou, Zhechao, Jia, Wensuo, Li, Bingbing
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Oxford University Press 2018
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6137983/
https://www.ncbi.nlm.nih.gov/pubmed/30085079
http://dx.doi.org/10.1093/jxb/ery249
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author Wei, Lingzhi
Mao, Wenwen
Jia, Meiru
Xing, Sinian
Ali, Usman
Zhao, Yaoyao
Chen, Yating
Cao, Minglin
Dai, Zhengrong
Zhang, Kai
Dou, Zhechao
Jia, Wensuo
Li, Bingbing
author_facet Wei, Lingzhi
Mao, Wenwen
Jia, Meiru
Xing, Sinian
Ali, Usman
Zhao, Yaoyao
Chen, Yating
Cao, Minglin
Dai, Zhengrong
Zhang, Kai
Dou, Zhechao
Jia, Wensuo
Li, Bingbing
author_sort Wei, Lingzhi
collection PubMed
description Sugar and acid metabolism are critical for fruit ripening and quality formation, but the underlying regulatory mechanisms are largely unknown. Here, we identified a transcriptional repressor, FaMYB44.2, that regulates sugar and acid accumulation in strawberry (Fragaria × ananassa ‘Benihoppe’) receptacles. We transiently expressed FaMYB44.2 in strawberry fruit and conducted metabolic and molecular analyses to explore the role of FaMYB44.2 in sugar and acid accumulation in strawberry. We found that FaMYB44.2 negatively regulates soluble sugar accumulation and malic acid content and represses the expression of numerous structural genes, including FaSPS3, a key gene in sucrose accumulation. From the white fruit stage onwards, the repressive effect of FaMYB44.2 on FaSPS3 is reversed by FaMYB10, which positively regulates anthocyanin accumulation. Our results indicate that FaMYB10 suppresses FaMYB44.2 expression; weakens the interaction between FaMYB44.2 and its co-repressor, FabHLH3; and cooperates with FabHLH3 to activate the expression of FaSPS3. The interplay between FaMYB10 and FaMYB44.2 results in sucrose accumulation in ripe strawberry fruits. In addition, the repressive effect of FaMYB44.2 on sucrose accumulation is enhanced by jasmonic acid. This study provides new insights into the regulatory mechanisms of sucrose accumulation and sheds light on the interplay between regulatory proteins during strawberry fruit ripening and quality formation.
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spelling pubmed-61379832018-09-24 FaMYB44.2, a transcriptional repressor, negatively regulates sucrose accumulation in strawberry receptacles through interplay with FaMYB10 Wei, Lingzhi Mao, Wenwen Jia, Meiru Xing, Sinian Ali, Usman Zhao, Yaoyao Chen, Yating Cao, Minglin Dai, Zhengrong Zhang, Kai Dou, Zhechao Jia, Wensuo Li, Bingbing J Exp Bot Research Papers Sugar and acid metabolism are critical for fruit ripening and quality formation, but the underlying regulatory mechanisms are largely unknown. Here, we identified a transcriptional repressor, FaMYB44.2, that regulates sugar and acid accumulation in strawberry (Fragaria × ananassa ‘Benihoppe’) receptacles. We transiently expressed FaMYB44.2 in strawberry fruit and conducted metabolic and molecular analyses to explore the role of FaMYB44.2 in sugar and acid accumulation in strawberry. We found that FaMYB44.2 negatively regulates soluble sugar accumulation and malic acid content and represses the expression of numerous structural genes, including FaSPS3, a key gene in sucrose accumulation. From the white fruit stage onwards, the repressive effect of FaMYB44.2 on FaSPS3 is reversed by FaMYB10, which positively regulates anthocyanin accumulation. Our results indicate that FaMYB10 suppresses FaMYB44.2 expression; weakens the interaction between FaMYB44.2 and its co-repressor, FabHLH3; and cooperates with FabHLH3 to activate the expression of FaSPS3. The interplay between FaMYB10 and FaMYB44.2 results in sucrose accumulation in ripe strawberry fruits. In addition, the repressive effect of FaMYB44.2 on sucrose accumulation is enhanced by jasmonic acid. This study provides new insights into the regulatory mechanisms of sucrose accumulation and sheds light on the interplay between regulatory proteins during strawberry fruit ripening and quality formation. Oxford University Press 2018-09-14 2018-08-02 /pmc/articles/PMC6137983/ /pubmed/30085079 http://dx.doi.org/10.1093/jxb/ery249 Text en © The Author(s) 2018. Published by Oxford University Press on behalf of the Society for Experimental Biology. http://creativecommons.org/licenses/by/4.0/ This is an Open Access article distributed under the terms of the Creative Commons Attribution License (http://creativecommons.org/licenses/by/4.0/), which permits unrestricted reuse, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Research Papers
Wei, Lingzhi
Mao, Wenwen
Jia, Meiru
Xing, Sinian
Ali, Usman
Zhao, Yaoyao
Chen, Yating
Cao, Minglin
Dai, Zhengrong
Zhang, Kai
Dou, Zhechao
Jia, Wensuo
Li, Bingbing
FaMYB44.2, a transcriptional repressor, negatively regulates sucrose accumulation in strawberry receptacles through interplay with FaMYB10
title FaMYB44.2, a transcriptional repressor, negatively regulates sucrose accumulation in strawberry receptacles through interplay with FaMYB10
title_full FaMYB44.2, a transcriptional repressor, negatively regulates sucrose accumulation in strawberry receptacles through interplay with FaMYB10
title_fullStr FaMYB44.2, a transcriptional repressor, negatively regulates sucrose accumulation in strawberry receptacles through interplay with FaMYB10
title_full_unstemmed FaMYB44.2, a transcriptional repressor, negatively regulates sucrose accumulation in strawberry receptacles through interplay with FaMYB10
title_short FaMYB44.2, a transcriptional repressor, negatively regulates sucrose accumulation in strawberry receptacles through interplay with FaMYB10
title_sort famyb44.2, a transcriptional repressor, negatively regulates sucrose accumulation in strawberry receptacles through interplay with famyb10
topic Research Papers
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6137983/
https://www.ncbi.nlm.nih.gov/pubmed/30085079
http://dx.doi.org/10.1093/jxb/ery249
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