Martínez-Rivas Félix J, Blanco-Portales Rosario, Serratosa María P, Ric-Varas Pablo, Guerrero-Sánchez Víctor, Medina-Puche Laura, Moyano Lourdes, Mercado José A, Alseekh Saleh, Caballero José L, Fernie Alisdair R, Muñoz-Blanco Juan, Molina-Hidalgo Francisco J
Department of Biochemistry and Molecular Biology, University of Cordoba, Edificio Severo Ochoa, Campus de Rabanales, E-14014, Córdoba, Spain.
Max-Planck-Institute of Molecular Plant Physiology, Am Mühlenberg 1, 14476, Potsdam-Golm, Germany.
Plant J. 2023 May;114(3):683-698. doi: 10.1111/tpj.16166. Epub 2023 Mar 15.
In this work, we identified and functionally characterized the strawberry (Fragaria × ananassa) R2R3 MYB transcription factor FaMYB123. As in most genes associated with organoleptic properties of ripe fruit, FaMYB123 expression is ripening-related, receptacle-specific, and antagonistically regulated by ABA and auxin. Knockdown of FaMYB123 expression by RNAi in ripe strawberry fruit receptacles downregulated the expression of enzymes involved in the late steps of anthocyanin/flavonoid biosynthesis. Transgenic fruits showed a parallel decrease in the contents of total anthocyanin and flavonoid, especially malonyl derivatives of pelargonidin and cyanidins. The decrease was concomitant with accumulation of proanthocyanin, propelargonidins, and other condensed tannins associated mainly with green receptacles. Potential coregulation between FaMYB123 and FaMYB10, which may act on different sets of genes for the enzymes involved in anthocyanin production, was explored. FaMYB123 and FabHLH3 were found to interact and to be involved in the transcriptional activation of FaMT1, a gene responsible for the malonylation of anthocyanin components during ripening. Taken together, these results demonstrate that FaMYB123 regulates the late steps of the flavonoid pathway in a specific manner. In this study, a new function for an R2R3 MYB transcription factor, regulating the expression of a gene that encodes a malonyltransferase, has been elucidated.
在本研究中,我们鉴定了草莓(Fragaria × ananassa)R2R3 MYB转录因子FaMYB123并对其功能进行了表征。与大多数与成熟果实感官特性相关的基因一样,FaMYB123的表达与成熟相关,具有花托特异性,且受脱落酸和生长素的拮抗调节。在成熟草莓果实花托中通过RNA干扰敲低FaMYB123的表达,下调了花青素/类黄酮生物合成后期步骤中相关酶的表达。转基因果实中总花青素和类黄酮含量,尤其是天竺葵素和花青素的丙二酰衍生物含量平行下降。这种下降伴随着原花青素、原天竺葵素和其他主要与绿色花托相关的缩合单宁的积累。我们还探讨了FaMYB123与FaMYB10之间可能的共调控作用,它们可能作用于花青素生成相关酶的不同基因集。研究发现FaMYB123与FabHLH3相互作用,并参与FaMT1的转录激活,FaMT1是一个在成熟过程中负责花青素成分丙二酰化的基因。综上所述,这些结果表明FaMYB123以特定方式调控类黄酮途径的后期步骤。在本研究中,阐明了R2R3 MYB转录因子的一个新功能,即调控编码丙二酰转移酶的基因的表达。