Literature DB >> 18448193

Accumulation of phenylpropanoid derivatives in chitosan-induced cell suspension culture of Cocos nucifera.

Moumita Chakraborty1, Anitha Karun, Adinpunya Mitra.   

Abstract

Chitosan-induced elicitation responses of dark-incubated Cocos nucifera (coconut) endosperm cell suspension cultures led to the rapid formation of phenylpropanoid derivatives, which essentially mimics the defense-induced biochemical changes in coconut palm as observed under in vivo conditions. An enhanced accumulation of p-hydroxybenzoic acid as the major wall-bound phenolics was evident. This was followed by p-coumaric acid and ferulic acid. Along with enhanced peroxidases activities in elicited lines, the increase in activities of the early phenylpropanoid pathway enzymes such as, phenylalanine ammonia lyase (PAL), p-coumaroyl-CoA ligase (4CL) and p-hydroxybenzaldehyde dehydrogenase (HBD) in elicited cell cultures were also observed. Furthermore, supplementation of specific inhibitors of PAL, C4H and 4CL in elicited cell cultures led to suppressed accumulation of p-hydroxybenzoic acid, which opens up interesting questions regarding the probable route of the biosynthesis of this phenolic acid in C. nucifera.

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Year:  2008        PMID: 18448193     DOI: 10.1016/j.jplph.2008.02.004

Source DB:  PubMed          Journal:  J Plant Physiol        ISSN: 0176-1617            Impact factor:   3.549


  10 in total

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Journal:  Physiol Mol Biol Plants       Date:  2019-01-01

2.  Phenolics and terpenoids change in response to yeast extract and chitosan elicitation in Zataria multiflora cell suspension culture.

Authors:  Khadijeh Bavi; Ramazan Ali Khavari-Nejad; Farzaneh Najafi; Faezeh Ghanati
Journal:  3 Biotech       Date:  2022-07-09       Impact factor: 2.893

3.  Chitosan as a MAMP, searching for a PRR.

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Journal:  Plant Signal Behav       Date:  2009-01

4.  The Allelochemical MDCA Inhibits Lignification and Affects Auxin Homeostasis.

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Journal:  Plant Physiol       Date:  2016-08-09       Impact factor: 8.340

5.  Enhanced lignin monomer production caused by cinnamic Acid and its hydroxylated derivatives inhibits soybean root growth.

Authors:  Rogério Barbosa Lima; Victor Hugo Salvador; Wanderley Dantas dos Santos; Gisele Adriana Bubna; Aline Finger-Teixeira; Anderson Ricardo Soares; Rogério Marchiosi; Maria de Lourdes Lucio Ferrarese; Osvaldo Ferrarese-Filho
Journal:  PLoS One       Date:  2013-12-03       Impact factor: 3.240

6.  Influence of Chitosan, Salicylic Acid and Jasmonic Acid on Phenylpropanoid Accumulation in Germinated Buckwheat (Fagopyrum esculentum Moench).

Authors:  Chang Ha Park; Hyeon Ji Yeo; Ye Eun Park; Se Won Chun; Yong Suk Chung; Sook Young Lee; Sang Un Park
Journal:  Foods       Date:  2019-05-06

7.  Chitosan oligosaccharides affect xanthone and VOC biosynthesis in Hypericum perforatum root cultures and enhance the antifungal activity of root extracts.

Authors:  Camilla Badiali; Giulia De Angelis; Giovanna Simonetti; Elisa Brasili; Eric de Castro Tobaruela; Eduardo Purgatto; Heng Yin; Alessio Valletta; Gabriella Pasqua
Journal:  Plant Cell Rep       Date:  2018-06-28       Impact factor: 4.570

8.  Phenylpropanoid Defences in Nicotiana tabacum Cells: Overlapping Metabolomes Indicate Common Aspects to Priming Responses Induced by Lipopolysaccharides, Chitosan and Flagellin-22.

Authors:  Msizi I Mhlongo; Lizelle A Piater; Ntakadzeni E Madala; Paul A Steenkamp; Ian A Dubery
Journal:  PLoS One       Date:  2016-03-15       Impact factor: 3.240

9.  Chitosan enhances rosmarinic acid production in shoot cultures of Melissa officinalis L. through the induction of methyl jasmonate.

Authors:  Ghazaleh Fooladi Vanda; Leila Shabani; Roya Razavizadeh
Journal:  Bot Stud       Date:  2019-10-17       Impact factor: 2.787

10.  Tree Fern Cyathea lepifera May Survive by Its Phytotoxic Property.

Authors:  Noriyuki Ida; Arihiro Iwasaki; Toshiaki Teruya; Kiyotake Suenaga; Hisashi Kato-Noguchi
Journal:  Plants (Basel)       Date:  2019-12-28
  10 in total

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