Literature DB >> 33313802

Regulation of glucosinolate biosynthesis.

Simon Mitreiter1, Tamara Gigolashvili1.   

Abstract

Glucosinolates are secondary defense metabolites produced by plants of the order Brassicales, which includes the model species Arabidopsis and many crop species. In the past 13 years, the regulation of glucosinolate synthesis in plants has been intensively studied, with recent research revealing complex molecular mechanisms that connect glucosinolate production with responses to other central pathways. In this review, we discuss how the regulation of glucosinolate biosynthesis is ecologically relevant for plants, how it is controlled by transcription factors, and how this transcriptional machinery interacts with hormonal, environmental, and epigenetic mechanisms. We present the central players in glucosinolate regulation, MYB and basic helix-loop-helix transcription factors, as well as the plant hormone jasmonate, which together with other hormones and environmental signals allow the coordinated and rapid regulation of glucosinolate genes. Furthermore, we highlight the regulatory connections between glucosinolates, auxin, and sulfur metabolism and discuss emerging insights and open questions on the regulation of glucosinolate biosynthesis.
© The Author(s) 2020. Published by Oxford University Press on behalf of the Society for Experimental Biology. All rights reserved. For permissions, please email: journals.permissions@oup.com.

Entities:  

Keywords:  MYB; bHLH; gene regulation; glucosinolate; jasmonate

Mesh:

Substances:

Year:  2021        PMID: 33313802     DOI: 10.1093/jxb/eraa479

Source DB:  PubMed          Journal:  J Exp Bot        ISSN: 0022-0957            Impact factor:   6.992


  15 in total

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Authors:  Christian Obermeier; Annaliese S Mason; Torsten Meiners; Georg Petschenka; Michael Rostás; Torsten Will; Benjamin Wittkop; Nadine Austel
Journal:  Theor Appl Genet       Date:  2022-03-16       Impact factor: 5.699

2.  Transcriptomics analysis of genes induced by melatonin related to glucosinolates synthesis in broccoli hairy roots.

Authors:  Peng Tian; Xu Lu; Jinyu Bao; Xiumin Zhang; Yaqi Lu; Xiaoling Zhang; Yunchun Wei; Jie Yang; Sheng Li; Shaoying Ma
Journal:  Plant Signal Behav       Date:  2021-09-21

3.  Manipulation of the Phytochemical Profile of Tenderstem® Broccoli Florets by Short Duration, Pre-Harvest LED Lighting.

Authors:  Faye M A Langston; James M Monaghan; Olivia Cousins; Geoffrey R Nash; John R Bows; Gemma Chope
Journal:  Molecules       Date:  2022-05-18       Impact factor: 4.927

Review 4.  Repressors of anthocyanin biosynthesis.

Authors:  Amy M LaFountain; Yao-Wu Yuan
Journal:  New Phytol       Date:  2021-05-28       Impact factor: 10.151

5.  NtMYB305a binds to the jasmonate-responsive GAG region of NtPMT1a promoter to regulate nicotine biosynthesis.

Authors:  Shiquan Bian; Xueyi Sui; Jiahao Wang; Tian Tian; Chunkai Wang; Xue Zhao; Xiaofeng Liu; Ning Fang; Yu Zhang; Yanhua Liu; Yongmei Du; Bingwu Wang; Michael P Timko; Zhongfeng Zhang; Hongbo Zhang
Journal:  Plant Physiol       Date:  2022-01-20       Impact factor: 8.005

6.  Jasmonate regulates the FAMA/mediator complex subunit 8-THIOGLUCOSIDE GLUCOHYDROLASE 1 cascade and myrosinase activity.

Authors:  Qingkai Feng; Liping Li; Yan Liu; Xingfeng Shao; Xiaohui Li
Journal:  Plant Physiol       Date:  2021-10-05       Impact factor: 8.005

7.  Genetic encoding of complex traits.

Authors:  Stanislav Kopriva; Andreas P M Weber
Journal:  J Exp Bot       Date:  2021-01-20       Impact factor: 6.992

8.  New Insights on the Regulation of Glucosinolate Biosynthesis via COP1 and DELLA Proteins in Arabidopsis Thaliana.

Authors:  Henning Frerigmann; Ute Hoecker; Tamara Gigolashvili
Journal:  Front Plant Sci       Date:  2021-07-01       Impact factor: 5.753

9.  Genome-Wide Identification and Co-Expression Analysis of ARF and IAA Family Genes in Euscaphis konishii: Potential Regulators of Triterpenoids and Anthocyanin Biosynthesis.

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Journal:  Front Genet       Date:  2022-01-05       Impact factor: 4.599

10.  2',3'-cAMP treatment mimics the stress molecular response in Arabidopsis thaliana.

Authors:  Monika Chodasiewicz; Olga Kerber; Michal Gorka; Juan C Moreno; Israel Maruri-Lopez; Romina I Minen; Arun Sampathkumar; Andrew D L Nelson; Aleksandra Skirycz
Journal:  Plant Physiol       Date:  2022-03-28       Impact factor: 8.340

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