MicroRNAs Roles in Plants Secondary Metabolism.

MicroRNAs Secondary metabolism molecular phylogenies primary metabolism and

Journal

Plant signaling & behavior
ISSN: 1559-2324
Titre abrégé: Plant Signal Behav
Pays: United States
ID NLM: 101291431

Informations de publication

Date de publication:
03 07 2021
Historique:
pubmed: 4 5 2021
medline: 22 12 2021
entrez: 3 5 2021
Statut: ppublish

Résumé

Plant growth and development is dependent on the regulation of classes of microRNAs (miRNAs) that have emerged as important gene regulators. These miRNAs can regulate plant gene expression to function. They play an important roles in biological homeostasis and environmental response controls. A wide range of plant biological and metabolic processes, including developmental timing, tissues specific development, and differentiation, depends on miRNAs. They perpetually regulate secondary metabolite functions in different plant family lines. Mapping of molecular phylogenies shows the distribution of secondary metabolism in the plant territory. More importantly, a lot of information related to miRNA regulatory processes in plants is revealed, but the role of miRNAs in secondary metabolism regulation and functions of the metabolites are still unclear. In this review, we pinnacle some potential miRNAs regulating the secondary metabolite biosynthesis activities in plants. This will provide an alternative knowledge for functional studies of secondary metabolism.

Identifiants

pubmed: 33938393
doi: 10.1080/15592324.2021.1915590
pmc: PMC8205019
doi:

Substances chimiques

MicroRNAs 0
RNA, Plant 0

Types de publication

Journal Article Research Support, Non-U.S. Gov't Review

Langues

eng

Sous-ensembles de citation

IM

Pagination

1915590

Références

Apoptosis. 2014 Jan;19(1):19-29
pubmed: 24043355
J Biol Chem. 2003 Nov 7;278(45):43961-72
pubmed: 12941960
Front Plant Sci. 2016 Dec 16;7:1898
pubmed: 28018418
Funct Integr Genomics. 2015 Sep;15(5):523-31
pubmed: 26113396
Curr Opin Plant Biol. 2005 Feb;8(1):38-44
pubmed: 15653398
Nat Genet. 2007 Aug;39(8):1033-7
pubmed: 17643101
Physiol Plant. 2012 Dec;146(4):388-403
pubmed: 22708792
Curr Opin Plant Biol. 2004 Oct;7(5):512-20
pubmed: 15337093
ChemMedChem. 2016 Sep 6;11(17):1915-23
pubmed: 27457559
Biotechnol Lett. 2015 Sep;37(9):1719-27
pubmed: 26003096
Sci Rep. 2018 Jan 31;8(1):1947
pubmed: 29386560
Genet Mol Res. 2013 Sep 19;12(3):3793-805
pubmed: 24085441
BMC Genomics. 2012 Nov 21;13:657
pubmed: 23171001
Front Plant Sci. 2017 Mar 22;8:378
pubmed: 28382044
BMC Plant Biol. 2017 Dec 28;17(1):265
pubmed: 29281971
Front Plant Sci. 2015 Sep 17;6:757
pubmed: 26442070
BMC Genomics. 2010 Apr 17;11:246
pubmed: 20398412
Cell Cycle. 2006 Apr;5(8):837-40
pubmed: 16627994
Front Plant Sci. 2017 Mar 29;8:374
pubmed: 28424705
Planta. 2004 Mar;218(5):683-92
pubmed: 14760535
Trends Plant Sci. 2010 Sep;15(9):488-98
pubmed: 20598625
Plant J. 1996 May;9(5):649-58
pubmed: 8653115
BMC Plant Biol. 2011 Nov 17;11:163
pubmed: 22094046
Plant Physiol. 2014 Feb;164(2):1077-92
pubmed: 24335508
Plant Cell. 2012 Aug;24(8):3320-32
pubmed: 22942378
Biochem Biophys Res Commun. 2010 Mar 12;393(3):345-9
pubmed: 20138828
F1000Res. 2020 Jan 13;9:16
pubmed: 32399197
Biochemistry. 2015 Sep 1;54(34):5255-62
pubmed: 26230427
Plant Physiol. 2013 Apr;161(4):1875-84
pubmed: 23429259
Microrna. 2017;6(1):22-41
pubmed: 28103776
Nat Struct Mol Biol. 2013 Sep;20(9):1106-15
pubmed: 23934148
Mol Biol Evol. 2011 Jan;28(1):377-82
pubmed: 20736450
New Phytol. 2018 Jan;217(2):813-827
pubmed: 29105090
Curr Opin Genet Dev. 2011 Aug;21(4):511-7
pubmed: 21530229
Trends Plant Sci. 2000 Apr;5(4):168-73
pubmed: 10740298
BMC Genomics. 2019 Jul 16;20(1):586
pubmed: 31311515
Plant Physiol. 2016 Jun;171(2):944-59
pubmed: 27208307
Front Plant Sci. 2017 Dec 11;8:2024
pubmed: 29321785
J Agric Food Chem. 2018 Sep 19;66(37):9588-9597
pubmed: 30142272
Cell. 2012 Apr 27;149(3):515-24
pubmed: 22541426
Biochim Biophys Acta. 2008 Nov;1779(11):743-8
pubmed: 18457682
Comput Biol Chem. 2016 Oct;64:154-162
pubmed: 27376499
Plant Cell. 1996 Sep;8(9):1627-39
pubmed: 8837513
Plant Cell Rep. 2008 Apr;27(4):617-31
pubmed: 18246355
PLoS Genet. 2014 Aug 07;10(8):e1004519
pubmed: 25101599
PLoS One. 2015 Mar 13;10(3):e0119153
pubmed: 25769053
Phytochemistry. 2005 Jun;66(11):1374-93
pubmed: 15925393
J Agric Food Chem. 2010 Sep 8;58(17):9572-8
pubmed: 20707346
J Chem Ecol. 2004 Oct;30(10):1985-2002
pubmed: 15609832
Proc Natl Acad Sci U S A. 2007 Jun 5;104(23):9667-72
pubmed: 17535905
Adv Nutr. 2011 Jan;2(1):32-50
pubmed: 22211188
Funct Integr Genomics. 2016 May;16(3):221-33
pubmed: 26141043
Plant J. 2011 Jul;67(2):218-31
pubmed: 21457368
J Cell Physiol. 2015 Jan;230(1):1-15
pubmed: 24909308
ScientificWorldJournal. 2014 Feb 11;2014:840592
pubmed: 24678279
Curr Opin Plant Biol. 2016 Dec;34:68-76
pubmed: 27794260
BMC Genomics. 2013 Apr 11;14:245
pubmed: 23577925
Cell. 2009 Jan 23;136(2):215-33
pubmed: 19167326
Nat Prod Rep. 2010 Oct;27(10):1469-79
pubmed: 20730220
Nat Prod Rep. 1997 Dec;14(6):591-603
pubmed: 9418296
J Hazard Mater. 2016 Oct 5;316:178-85
pubmed: 27232729
Gene. 2019 Jan 15;682:13-24
pubmed: 30267812
Plant Cell. 2011 Apr;23(4):1512-22
pubmed: 21487097
Recent Pat Food Nutr Agric. 2011 Jan;3(1):9-16
pubmed: 21114471
Plant Cell. 2013 Apr;25(4):1258-73
pubmed: 23548744
Traffic. 2011 Nov;12(11):1468-74
pubmed: 21518166
Mol Plant. 2015 Jan;8(1):98-110
pubmed: 25578275
Arabidopsis Book. 2011;9:e0152
pubmed: 22303276
Gene. 2018 Mar 1;645:41-47
pubmed: 29273556
Science. 2002 Sep 20;297(5589):2053-6
pubmed: 12242443
Food Chem. 2018 Feb 1;240:90-103
pubmed: 28946359
PLoS One. 2015 Sep 25;10(9):e0139002
pubmed: 26406988
FASEB J. 2005 Jun;19(8):875-9
pubmed: 15923397
Nat Prod Rep. 2002 Apr;19(2):181-222
pubmed: 12013278
G3 (Bethesda). 2019 Mar 7;9(3):769-787
pubmed: 30647106
Mol Genet Genomics. 2017 Feb;292(1):37-52
pubmed: 27679507
Plant Physiol Biochem. 2014 Jul;80:278-84
pubmed: 24813727
BMC Plant Biol. 2012 Sep 18;12:169
pubmed: 22989211
PLoS One. 2016 Jul 07;11(7):e0158750
pubmed: 27388154

Auteurs

Mark Owusu Adjei (M)

College of Landscape Architecture of Sichuan Agricultural University, Chengdu, Sichuan, China.

Xuzixin Zhou (X)

College of Landscape Architecture of Sichuan Agricultural University, Chengdu, Sichuan, China.

Meiqin Mao (M)

College of Landscape Architecture of Sichuan Agricultural University, Chengdu, Sichuan, China.

Fatima Rafique (F)

College of Landscape Architecture of Sichuan Agricultural University, Chengdu, Sichuan, China.

Jun Ma (J)

College of Landscape Architecture of Sichuan Agricultural University, Chengdu, Sichuan, China.

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Classifications MeSH