数字农科院2.0

Ftsad2 And Ftjaz1 Regulate Activity O.f The Ftmyb11 Transcription R epressor Of The Phenylpropanoid Pathway In Fagopyrum Tataricum

文献类型: 外文期刊

作者: Wu, Yanmin;Yan, Mingli;Kreft, Ivan;Zhou, Meiliang;Shao, Jirong;Zhou, Meiliang;Zhu, Xuemei;Tang, Yixiong;Wang, Dan;Ding, Mengqi;Sun, Zhanmin;Zhou, Meiliang;Zhou, Meiliang;Logacheva, Maria D.

作者机构:

关键词: buckwheat; MYB transcription factor; phenylpropanoid pathway; repressor; rutin

期刊名称: NEW PHYTOLOGIST

ISSN: 0028-646X

年卷期: 2017 年 216 卷 3 期

页码:

摘要: Little is known about the molecular mechanism of the R2R3-MYB transcriptional repressors involved in plant phenylpropanoid metabolism. Here, we describe one R2R3-type MYB repressor, FtMYB11 from Fagopyrum tataricum. It contains the SID-like motif GGDFNFDL and it is regulated by both the importin protein 'Sensitive to ABA and Drought 2' (SAD2) and the jasmonates signalling cascade repressor JAZ protein. Yeast two hybrid and bimolecular fluorescence complementation assays demonstrated that FtMYB11 interacts with SAD2 and FtJAZ1. Protoplast transactivation assays demonstrated that FtMYB11 acts synergistically with FtSAD2 or FtJAZ1 and directly represses its target genes via the MYB-core element AATAGTT. Changing the Asp122 residue to Asn in the SID-like motif results in cytoplasmic localization of FtMYB11 because of loss of interaction with SAD2, while changing the Asp126 residue to Asn results in the loss of interaction with FtJAZ1. Overexpression of FtMYB11or FtMYB11 D126N in F. tataricum hairy roots resulted in reduced accumulation of rutin, while overexpression of FtMYB11 D122N in hairy roots did not lead to such a change. The results indicate that FtMYB11 acts as a regulator via interacting with FtSAD2 or FtJAZ1 to repress phenylpropanoid biosynthesis, and this repression depends on two conserved Asp residues of its SID-like motif.

分类号:

  • 相关文献

[1]Jasmonate-Responsive Myb Factors Spatially Repress R.utin Biosynthesis In Fagopyrum T ataricum. Li, Long,Yang, Fuyu,Yan, Mingli,Meng, Yu,Wang, Zhiyong,Janovska, Dagmar,Georgiev, Milen I.,Georgiev, Milen I.,Wan, Dongpu,Wan, Dongpu,Li, Long,Zhou, Meiliang,Hu, Jianping,Yu, Zhuo,Zhang, Kaixuan,Logacheva, Maria D.. 2018

[2]Jasmonate-Responsive Myb Factors Spatially Repress R.utin Biosynthesis In Fagopyrum Tataricum. Zhang, KX, Logacheva, MD, Meng, Y, Hu, JP, Wan, DP, Li, L, Janovska, D, Wang, ZY, Georgiev, MI, Yu, Z, Yang, FY, Yan, ML, Zhou, ML. 2018

[3]Ftmyb16 Interacts With Ftimportin-Alpha 1 T.o Regulate Rutin Biosynthesis I n Tartary Buckwheat. Li, JB, Zhang, KX, Meng, Y, Li, Q, Ding, MQ, Zhou, ML. 2019

[4]Overexpression Of Pvpin1, A Bamboo H.omolog Of Pin1-Type Parvulin 1 , Delays Flowering Time In Transgenic Arabidopsis And Rice. Zheng, ZG, Yang, XM, Fu, YP, Zhu, LF, Wei, HT, Lin, XC. 2017

[5]Gbmybr1Fromginkgo Bilobarepresses Phenylpropanoid Biosynthesis And Trichome Development Inarabidopsis. Su, XJ, Xia, YY, Jiang, WB, Shen, G, Pang, YZ. 2020

[6]Differential Expression Of Genes Encoding P.henylpropanoid Enzymes In An A pricot Cultivar (Prunus Armeniaca L.) With Cleavable Endocarp. Zhang, Qiuping,Liu, Weisheng,Sun, Xinyu,Du, Xiao,Zhang, Xiao,Dong, Wenxuan. 2019

[7]Gamma-Aminobutyric Acid Is Closely Associated W.ith Accumulation Of Flavonoids. Xie, TT, Ji, J, Chen, W, Yue, JY, Du, CJ, Sun, JC, Chen, LZ, Jiang, ZP, Shi, SQ. 2019

[8]Proteomic Analysis Of Ubiquitinated Proteins I.n Rice (Oryza Sativa) A fter Treatment With Pathogen-Associated Molecular Pattern (Pamp) Elicitors. Chen, Xiao-Lin,Chen, Xiao-Lin,Liu, Caiyun,Liu, Wende,Luo, Feng,Xie, Xin,Wang, Guo-Liang,Wu, Liye,Wang, Guo-Liang,Zeng, Lirong,Zhou, Xueping. 2018

[9]Trmyb4 Transcription Factor Regulates The Rutin Biosynthesis In Hairy Roots Of F. Cymosum. Luo, QL, Li, JT, Wang, CL, Cheng, C, Shao, JR, Hui, JC, Zeng, Y, Wang, JY, Zhu, XM, Xu, Y. 2020

[10]Diverse effects of rutin and quercetin on the pasting, rheological and structural properties of Tartary buckwheat starch. Libo Wang,Lijuan Wang,Zaigui Li,Yanxiang Gao,Steve W. Cui,Tongtong Wang,Ju Qiu. 2021

[11]Baba Application Improves Soybean Resistance T.o Aphid Through Activation O f Phenylpropanoid Metabolism And Callose Deposition. Yao, LM, Zhong, YP, Wang, B, Yan, JH, Wu, TL. 2019

[12]Phenotypic And Transcriptomic Response Of The Grasshopper Oedaleus Asiaticus (Orthoptera: Acrididae) To Toxic Rutin. Huang, XB, Lv, SJ, Zhang, ZH, Chang, BH. 2020

[13]Exogenous Brassinosteroid Enhances Plant Defense A.gainst Colletotrichum Gloeosporioides By A ctivating Phenylpropanoid Pathway In Camellia Sinensis L.. Zhang, L, Ahammed, GJ, Li, X, Wei, JP, Li, Y, Yan, P, Zhang, LP, Han, WY. 2018

[14]Breeding Buckwheat For Nutritional Quality. Kreft, I, Zhou, ML, Golob, A, Germ, M, Likar, M, Dziedzic, K, Luthar, Z. 2020

[15]Methyl Salicylate Enhances Flavonoid Biosynthesis I.n Tea Leaves By S timulating The Phenylpropanoid Pathway. Li, X, Zhang, LP, Zhang, L, Yan, P, Ahammed, GJ, Han, WY. 2019

[16]Comparison of quercetin and rutin inhibitory influence on Tartary buckwheat starch digestion in vitro and their differences in binding sites with the digestive enzyme. Wang L., Wang L., Wang T., Li Z., Gao Y., Cui S.W., Qiu J.. 2022

[17]Baba Application Improves Soybean Resistance To Aphid Through Activation Of Phenylpropanoid Metabolism And Callose Deposition. Yao, LM, Zhong, YP, Wang, B, Yan, JH, Wu, TL. 2020

[18]Myb Transcription Repressors Regulate Plant S.econdary Metabolism. Chen, Cheng,He, Ming,Khurshid, Muhammad,Georgiev, Milen I.,Chen, Cheng,Georgiev, Milen I.,Zhang, Xinquan,Zhou, Meiliang,Zhang, Kaixuan,Khurshid, Muhammad,Li, Jinbo. 2019

[19]Osarm1, An R2R3 Myb Transcription F.actor, Is Involved In R egulation Of The Response To Arsenic Stress In Rice. Wang, FZ, Chen, MX, Yu, LJ, Xie, LJ, Yuan, LB, Qi, H, Xiao, M, Guo, WX, Chen, Z, Yi, KK, Zhang, JH, Qiu, RL, Shu, WS, Xiao, S, Chen, QF. 2017

[20]Preliminary Study of the Anther-Specific Gene ZmMYB150 in Maize. Zhao, Zhuofan,Yue, Yujing,Zhang, Peng,Liu, Xiaowei,Yang, Tian,Liu, Yongming,Zheng, Yu,Li, Chuan,Yi, Hongyang,Yu, Tao,Cao, Moju. 2021

作者其他论文 更多>>