转录因子BES1/BZR1调控植物生长发育及抗逆性
收稿日期: 2018-09-07
修回日期: 2019-02-20
网络出版日期: 2019-02-22
基金资助
四川省科技计划应用基础项目(2018JY0470)
The BES1/BZR1 transcription factors regulate growth, development and stress resistance in plants
Received date: 2018-09-07
Revised date: 2019-02-20
Online published: 2019-02-22
Supported by
Supported by the Sichuan Science and Technology Program(2018JY0470)
油菜素内酯(brassinosteroid, BR)是植物特有的甾体激素,在植物生长发育及逆境应答过程中起重要作用。转录因子BES1/BZR1(BRI1 EMS SUPPRESSOR 1/BRASSINAZOLE RESISTANT 1)是BR信号转导的核心成员,被BR信号激活后,结合到下游靶基因启动子区的E框(CANNTG)或BRRE元件(CGTGT/CG),调节靶基因表达。除介导BR信号,BES1/BZR1还参与脱落酸、赤霉素及光等信号转导途径,协同调控植物的生长发育。最新研究发现,BES1/BZR1还参与调控植物的抗逆性。本文对转录因子BES1/BZR1通过信号转导调控植物生长发育和抗逆性分子机制的新近研究进展进行了综述,以期为相关研究提供参考。
关键词: 油菜素内酯; 生长发育; 信号转导; 抗逆性; BES1/BZR1转录因子
于好强,孙福艾,冯文奇,路风中,李晚忱,付凤玲 . 转录因子BES1/BZR1调控植物生长发育及抗逆性[J]. 遗传, 2019 , 41(3) : 206 -214 . DOI: 10.16288/j.yczz.18-253
Brassinosteroid (BR) is a class of plant-specific steroidal hormone and plays vital roles in plant growth, developmental and stress response. As the core component of BR signaling, the BES1/BZR1 transcription factors are activated by the BR signal, bind to the E-box (CANNTG) or BRRE element (CGTGT/CG) enriched in the promoter of downstream target genes and regulate their expression. Besides BR signal transduction, BES1/BZR1s are also involved in other signaling pathways such as abscisic acid, gibberellin and light to co-regulate plant growth and development. Recently, BES1/BZR1s were found to be related to stress resistance. In this review, we summarize recent advances of molecular mechanism of the BES1/BZR1 transcription factors regulating plant growth, development and stress resistance through signal transduction to provide a reference for related researches.
| [1] | Nolan T, Chen J, Yin Y . Cross-talk of brassinosteroid signaling in controlling growth and stress responses. Biochem J, 2017,474(16):2641-2661. | |||
| [2] | Song XJ . Crop seed size: BR matters. Mol Plant, 2017,10(5):668-669. | |||
| [3] | Li XJ, Chen XJ, Guo X, Yin LL, Ahammed GJ, Xu CJ, Chen KS, Liu CC, Xia XJ, Shi K, Zhou J, Zhou YH, Yu JQ . DWARF overexpression induces alteration in phytohormone homeostasis, development, architecture and carotenoid accumulation in tomato. Plant Biotechnol J, 2016,14:1021-1033. | |||
| [4] | Lv B, Tian H, Zhang F, Liu J, Lu S, Bai M, Li C, Ding Z . Brassinosteroids regulate root growth by controlling reactive oxygen species homeostasis and dual effect on ethylene synthesis in Arabidopsis. PLoS Genet, 2018,14(1):e1007144. | |||
| [5] | Sahni S, Prasad BD, Liu Q, Grbic V, Sharpe A, Singh SP, Krishna P . Overexpression of the brassinosteroid biosynthetic gene DWF4 in Brassica napus simultaneously increases seed yield and stress tolerance. Sci Rep, 2016,6:28298. | |||
| [6] | Yang J, Thames S, Best NB, Jiang H, Huang P, Dilkes BP, Eveland AL . Brassinosteroids modulate meristem fate and differentiation of unique inflorescence morphology in Setaria viridis. Plant Cell, 2018,30(1):48-66. | |||
| [7] | Corvalán C, Choe S . Identification of brassinosteroid genes in Brachypodium distachyon. BMC Plant Biol, 2017,17(1):5. | |||
| [8] | Kir G, Ye H, Nelissen H, Neelakandan AK, Kusnandar AS, Luo A, Inzé D, Sylvester AW, Yin Y, Becraft PW . RNA interference knockdown of BRASSINOSTEROID INSENSITIVE1 in maize reveals novel functions for brassinosteroid signaling in controlling plant architecture. Plant Physiol, 2015,169(1):826-839. | |||
| [9] | Belkhadir Y, Jaillais Y . The molecular circuitry of brassinosteroid signaling. New Phytol, 2015,206(2):522-540. | |||
| [10] | Yin Y, Vafeados D, Tao Y, Yoshida S, Asami T, Chory J . A new class of transcription factors mediates brassinosteroid- regulated gene expression in Arabidopsis. Cell, 2005,120(2):249-259. | |||
| [11] | Wang ZY, Bai MY, Oh E, Zhu JY . Brassinosteroid signaling network and regulation of photomorphogenesis. Annu Rev Genet, 2012,46:701-724. | |||
| [12] | Yu H, Feng W, Sun F, Zhang YY, Qu JT, Liu B, Lu F, Yang L, Fu F, Li W . Cloning and characterization of BES1/ BZR1 transcription factor genes in maize. Plant Growth Regul, 2018,86(2):235-249. | |||
| [13] | Oh E, Zhu JY, Wang ZY . Interaction between BZR1 and PIF4 integrates brassinosteroid and environmental responses. Nat Cell Biol, 2012,14(8):802-809. | |||
| [14] | Qiao S, Sun S, Wang L, Wu Z, Li C, Li X, Wang T, Leng L, Tian W, Lu T, Wang X . The RLA1/SMOS1 transcr
/
|