Song Fang, Li Zixuan, Wang Ce, Jiang Yingchun, Wang Zhijing, He Ligang, Ma Xiaofang, Zhang Yu, Song Xin, Liu Jihong, Wu Liming
Hubei Key Laboratory of Germplasm Innovation and Utilization of Fruit Trees, Institute of Fruit and Tea, Hubei Academy of Agricultural Science, Wuhan, China.
Hubei Hongshan Laboratory, Wuhan, China.
Front Plant Sci. 2023 Jun 30;14:1223820. doi: 10.3389/fpls.2023.1223820. eCollection 2023.
'Lane Late', a late-maturing navel orange cultivar, is mainly distributed in the Three Gorges Reservoir area, which matures in the late March of the next year and needs overwintering cultivation. Citrus fruit granulation is a physiological disorder, which is characterized by lignification and dehydration of juice sac cells, seriously affecting the commercial value of citrus fruits. The pre-harvest granulation of late-maturing navel orange is main caused by low temperature in the winter, but its mechanism and regulation pattern remain unclear. In this study, a SG2-type R2R3-MYB transcription factor, , was identified from , which was significantly induced by both juice sac granulation and low temperature treatment. Subcellular localization analysis and transcriptional activation assay revealed that CsMYB15 protein was localized to the nucleus, and it exhibited transcriptional activation activity in yeast. Over-expression of by stable transformation in navel orange calli and transient transformation in kumquat fruits and navel orange juice sacs significantly increased lignin content in the transgenic lines. Further, Yeast one hybrid, EMSA, and LUC assays demonstrated that CsMYB15 directly bound to the promoter and activated its expression, thereby causing a high accumulation of lignin in citrus. Taken together, these results elucidated the biological function of CsMYB15 in regulating -mediated lignin biosynthesis, and provided novel insight into the transcriptional regulation mechanism underlying the juice sac granulation of late-maturing navel orange.
“伦晚”是一种晚熟脐橙品种,主要分布在三峡库区,次年3月下旬成熟,需进行越冬栽培。柑橘果实粒化是一种生理病害,其特征是汁囊细胞木质化和脱水,严重影响柑橘果实的商业价值。晚熟脐橙采前粒化主要由冬季低温引起,但其机制和调控模式尚不清楚。在本研究中,从[具体材料]中鉴定出一个SG2型R2R3-MYB转录因子[具体名称],其在汁囊粒化和低温处理下均显著诱导表达。亚细胞定位分析和转录激活试验表明,CsMYB15蛋白定位于细胞核,且在酵母中表现出转录激活活性。通过在脐橙愈伤组织中稳定转化以及在金橘果实和脐橙汁囊中瞬时转化过表达[具体基因],显著增加了转基因系中的木质素含量。此外,酵母单杂交、电泳迁移率变动分析和荧光素酶试验表明,CsMYB15直接结合到[具体基因]启动子并激活其表达,从而导致柑橘中木质素的高积累。综上所述,这些结果阐明了CsMYB15在调控[具体基因]介导的木质素生物合成中的生物学功能,并为晚熟脐橙汁囊粒化的转录调控机制提供了新的见解。