A Myb transcription factor, PgMyb308-like, enhances the level of shikimate, aromatic amino acids, and lignins, but represses the synthesis of flavonoids and hydrolyzable tannins, in pomegranate (Punica granatum L.).


Journal

Horticulture research
ISSN: 2662-6810
Titre abrégé: Hortic Res
Pays: England
ID NLM: 101655540

Informations de publication

Date de publication:
11 Feb 2022
Historique:
entrez: 11 2 2022
pubmed: 12 2 2022
medline: 12 2 2022
Statut: aheadofprint

Résumé

Pomegranate fruit peels are highly abundant in metabolites derived from the shikimate pathway, such as hydrolyzable tannins (HTs) and flavonoids. These metabolites are beneficial to human health (commercial juice is enriched with peel metabolites), and also protect the fruit from environmental stresses. To understand the transcriptional control of shikimate pathway-related metabolites in pomegranate, we cloned and characterized a subgroup S4 R2R3 Myb transcription factor, PgMyb308-like. Overexpressing PgMyb308-like in pomegranate hairy roots increased the accumulation of shikimate, aromatic amino acids, isoferulic acid, and total lignins, but led to reduced gallic acid and its downstream products HTs, as well as multiple flavonoids. Changes in these metabolites are supported by the increased expression of 3-deoxy-D-arabino-heptulosonate 7-phosphate synthase and shikimate dehydrogenase 1 (PgSDH1) (the SDH isoform associated with shikimate biosynthesis), and the reduced expression of PgSDH4 (the SDH isoform suggested to produce gallic acid). Transcriptome analysis of PgMyb308-like-overexpressing hairy roots further revealed reprogramming of cell wall-related genes, while overexpression of PgMyb308-like in Arabidopsis thaliana plants uncovered its distinct role in a different genetic and metabolic background. These results together suggest that PgMyb308-like activates genes in the shikimate pathway and lignin biosynthesis, but suppresses those involved in the production of HTs and flavonoids.

Identifiants

pubmed: 35147167
pii: 6526913
doi: 10.1093/hr/uhac008
pmc: PMC9113223
pii:
doi:

Types de publication

Journal Article

Langues

eng

Informations de copyright

© The Author(s) 2022. Published by Oxford University Press. All rights reserved.

Références

BMC Genomics. 2019 Jan 09;20(1):24
pubmed: 30626333
Curr Opin Biotechnol. 2011 Apr;22(2):239-44
pubmed: 21144730
Plant Biotechnol J. 2015 Dec;13(9):1224-32
pubmed: 25417596
Proc Natl Acad Sci U S A. 2012 Aug 28;109(35):14253-8
pubmed: 22893684
Biology (Basel). 2020 Mar 24;9(3):
pubmed: 32213912
New Phytol. 2012 Jan;193(1):121-136
pubmed: 21988539
J Exp Bot. 2014 Feb;65(2):495-508
pubmed: 24336492
Plant J. 2018 Oct;96(1):223-232
pubmed: 29979480
Plant Physiol. 2015 Mar;167(3):693-710
pubmed: 25624398
Front Plant Sci. 2019 May 17;10:620
pubmed: 31164897
Plant Cell Physiol. 2018 May 1;59(5):903-915
pubmed: 29562362
Plant J. 2018 Dec;96(5):949-965
pubmed: 30176084
J Agric Food Chem. 2007 Nov 14;55(23):9559-70
pubmed: 17914875
Molecules. 2017 Jan 24;22(1):
pubmed: 28125044
Front Plant Sci. 2017 Jun 12;8:943
pubmed: 28659938
Plant Cell. 2005 May;17(5):1612-24
pubmed: 15805488
J Agric Food Chem. 2002 Oct 9;50(21):6008-16
pubmed: 12358473
Front Plant Sci. 2016 Aug 10;7:984
pubmed: 27559336
Plant Physiol. 2009 Feb;149(2):1028-41
pubmed: 19098092
Plant Physiol. 2014 Nov;166(3):1575-92
pubmed: 25232013
J Mol Biol. 2000 Sep 8;302(1):205-17
pubmed: 10964570
Front Plant Sci. 2021 Jan 12;11:604349
pubmed: 33510749
J Chromatogr A. 2017 Jan 13;1480:20-31
pubmed: 27989467
J Exp Bot. 2016 May;67(11):3537-50
pubmed: 27241494
Clin Nutr. 2004 Jun;23(3):423-33
pubmed: 15158307
BMC Plant Biol. 2019 Nov 6;19(1):476
pubmed: 31694546
Plant Mol Biol. 2013 Jul;82(4-5):457-71
pubmed: 23689818
Plant Cell. 1998 Feb;10(2):135-54
pubmed: 9490739
Mol Plant. 2015 May;8(5):689-708
pubmed: 25840349
PLoS One. 2015 Nov 18;10(11):e0142777
pubmed: 26581077
New Phytol. 2014 Feb;201(3):795-809
pubmed: 24147899
Plant Mol Biol. 2011 Apr;75(6):555-65
pubmed: 21279669
J Agric Food Chem. 2000 Oct;48(10):4581-9
pubmed: 11052704
Nat Protoc. 2006;1(2):641-6
pubmed: 17406292
Cell Rep Med. 2021 May 18;2(5):100281
pubmed: 34095883
Cell Rep. 2019 Nov 19;29(8):2144-2153.e7
pubmed: 31747589
Planta. 2011 Nov;234(5):865-81
pubmed: 21643990
Planta. 2012 Sep;236(3):931-41
pubmed: 22810948
Plant J. 2008 Sep;55(6):954-67
pubmed: 18532977
Int J Mol Sci. 2012 Dec 27;14(1):594-610
pubmed: 23271373
Plant Physiol. 2005 Sep;139(1):5-17
pubmed: 16166256
Annu Rev Plant Biol. 2012;63:73-105
pubmed: 22554242
J Exp Bot. 2019 Oct 24;70(20):5591-5601
pubmed: 31294799
Mini Rev Med Chem. 2018;18(6):507-526
pubmed: 28425868

Auteurs

Rohit Dhakarey (R)

Migal - Galilee Technology Center, P.O. Box 831, Kiryat Shmona 1101600, Israel.

Uri Yaritz (U)

Migal - Galilee Technology Center, P.O. Box 831, Kiryat Shmona 1101600, Israel.
Tel-Hai College, Upper Galilee, 1220800, Israel.

Li Tian (L)

Department of Plant Sciences, University of California, Davis, CA 95616, USA.

Rachel Amir (R)

Migal - Galilee Technology Center, P.O. Box 831, Kiryat Shmona 1101600, Israel.
Tel-Hai College, Upper Galilee, 1220800, Israel.

Classifications MeSH