The results suggest that StBBX19 and StBBX24 may not function as direct regulators of anthocyanin biosynthesis, but rather enhance anthocyanin accumulation through interaction with StMYB308.
Abstract
BBX transcription factors can respond to UV-B signals, promote plant photomorphogenesis, and regulate plant anthocyanin biosynthesis. Based on transcriptome sequencing analysis, this study analyzed the transcription factors of StBBXs under UV-B treatment and identified two differentially expressed genes, StBBX19 and StBBX24. We explored the protein structures, promoters, and phylogenetics of StBBX19 and StBBX24, speculating that they respond to UV-B treatment and regulate anthocyanin biosynthesis. We constructed overexpression vectors, YFP, and bimolecular fluorescence complementation vectors for the transient transformation of tobacco. The results suggest that StBBX19 and StBBX24 may not function as direct regulators of anthocyanin biosynthesis, but rather enhance anthocyanin accumulation through interaction with StMYB308. Still, after interacting with StMYB308, purple spots appeared on tobacco leaves, suggesting that the interaction between StBBX19, StBBX24, and StMYB308 increases anthocyanin content in tobacco leaves. This study provides significant evidence for the adaptation mechanism of plants under UV-B treatment and offers new insights for molecular plant breeding of pigmented potatoes.
Anthocyanin biosynthesis is a key process determining flower color in lotus. In this study, 145 MYB transcription factors were identified from the lotus genome, of which 124 belong to the R2R3-MYB subfamily. Based on phylogenetic analysis and short-term light-induced transcriptome data, NnMYB38 and NnMYB114 were select...
The bHLH family is considered as the second largest class of transcription factors in plants, playing important roles in various biological processes, particularly in color regulation. Previous research indicated that bHLH family genes were significantly involved in screening for genes associated with color variation i...
Yun-Rong Mo, Hao-Ran Zhang, Qiao-Ling Deng et al.· Plant physiology and biochem...· 0 citations
The genetic and molecular basis underlying anthocyanin accumulation in mei is revealed and a PmbHLH162-PmMYC2 regulatory module in which PmbHLH162 enhances PmMYC2-mediated activation of key anthocyanin biosynthetic genes is identified.
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Evidence is provided suggesting that StFKF1 influences the timing of flowering and tuber initiation, as well as the expression patterns of key regulatory genes, under long-day conditions, thereby contributing to a theoretical foundation for understanding developmental transitions in this specific environmental context.
Zefeng Zhai, Yongguang Liu, Haicai Li et al.· Molecular breeding· 0 citations
A primary focus in reducing biomass recalcitrance in plants to produce second-generation bioethanol (E2G) has been the genetic manipulation of transcription factors (TFs) that regulate lignin content and composition. Little is known about lignin regulation in monocots, particularly in sugarcane, which is a promising...
Juan Pablo Portilla Llerena, R. Figueiredo, I. Cesarino et al.· ACS Agricultural Science &am...· 0 citations
Potato growth and development are inhibited by drought stress, which in extreme situations jeopardises tuber yield and quality. Despite progress in understanding drought stress responses, the full regulatory network remains unclear. In this study, we found that the cell wall-localised expansin gene StEXLB1 was signific...
Hong-Ju Jian, Ke Wang, Wei-Xi Chen et al.· Plant, Cell and Environment· 0 citations
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