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An ETHYLENE RESPONSE FACTOR-MYB Transcription Complex Regulates Furaneol Biosynthesis by Activating QUINONE OXIDOREDUCTASE Expression in Strawberry.

Plant Physiology, pp.00598.2018. 2018-09; 
Yuanyuan Zhang, Xueren Yin, Yuwei Xiao, Zuying Zhang, Shaojia Li Xiaofen Liu, Bo Zhang, Xiaofang Yang, Donald Grierson, Guihua Jiang, Harry J. Klee, Kunsong Chen
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Recombinant Proteins Conserved domains within the FaAP2/ERF proteins and FaMYB98 were analysed by CD-search (https://www.ncbi.nlm.nih.gov/Structure/cdd/wrpsb.cgi), and cellular locations of proteins, including FaERF#9 and FaMYB98, were predicted with the WoLF PSORT program (https://www.genscript.com/wolf-psort.html). Get A Quote

摘要

of strawberry (Fragaria × ananassa) fruit, and the last step in its biosynthesis is catalysed by Fragaria × ananassa quinone oxidoreductase (FaQR). Here, an ethylene response factor (FaERF#9) was characterized as a positive regulator of the FaQR promoter. Linear regression analysis indicated that FaERF#9 transcript levels were significantly correlated with both FaQR transcripts and furanone content in different strawberry cultivars. Transient overexpression of FaERF#9 in strawberry fruit significantly increased FaQR expression and furaneol production. Yeast one-hybrid assays, however, indicated that FaERF#9 by itself did not bind to the FaQR promoter. An MYB transcription factor (FaMYB... More

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