Literature DB >> 28905119

Jasmonic acid-induced tolerance to root-knot nematodes in tomato plants through altered photosynthetic and antioxidative defense mechanisms.

Shagun Bali1, Parminder Kaur1, Anket Sharma2, Puja Ohri3, Renu Bhardwaj4, M N Alyemeni5, Leonard Wijaya5, Parvaiz Ahmad6,7.   

Abstract

Plant parasitic nematodes cause severe damage to cultivated crops globally. Management of nematode population is a major concern as chemicals used as nematicides have negative impact on the environment. Natural plant products can be safely used for the control of nematodes. Among various plant metabolites, plant hormones play an essential role in developmental and physiological processes and also assist the plants to encounter stressful conditions. Keeping this in mind, the present study was designed to evaluate the effect of jasmonic acid (JA) on the growth, pigments, polyphenols, antioxidants, osmolytes, and organic acids under nematode infection in tomato seedlings. It was observed that nematode inoculation reduced the growth of seedlings. Treatment with JA improved root growth (32.79%), total chlorophylls (71.51%), xanthophylls (94.63%), anthocyanins (37.5%), and flavonoids content (21.11%) when compared to inoculated seedlings alone. The JA application enhanced the total antioxidant capacity (lipid- and water-soluble antioxidants) by 38.23 and 34.37%, respectively, in comparison to infected seedlings. Confocal studies revealed that there was higher accumulation of glutathione in hormone-treated seedlings under nematode infection. Treatment with JA increased total polyphenols content (74.56%) in comparison to nematode-infested seedlings. JA-treated seedlings also enhanced osmolyte and organic acid contents under nematode stress. Overall, treatment with JA improved growth, enhanced pigment levels, modulated antioxidant content, and enhanced osmolyte and organic acid content in nematode-infected seedlings.

Entities:  

Keywords:  Antioxidants; Organic acids; Photosynthetic pigments; Polyphenols; Root-knot nematodes; Tomato

Mesh:

Substances:

Year:  2017        PMID: 28905119     DOI: 10.1007/s00709-017-1160-6

Source DB:  PubMed          Journal:  Protoplasma        ISSN: 0033-183X            Impact factor:   3.356


  39 in total

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Authors:  Miguel Angel Torres; Jonathan D G Jones; Jeffery L Dangl
Journal:  Plant Physiol       Date:  2006-06       Impact factor: 8.340

4.  COPPER ENZYMES IN ISOLATED CHLOROPLASTS. POLYPHENOLOXIDASE IN BETA VULGARIS.

Authors:  D I Arnon
Journal:  Plant Physiol       Date:  1949-01       Impact factor: 8.340

5.  Estimation of total, protein-bound, and nonprotein sulfhydryl groups in tissue with Ellman's reagent.

Authors:  J Sedlak; R H Lindsay
Journal:  Anal Biochem       Date:  1968-10-24       Impact factor: 3.365

6.  Violaxanthin de-epoxidase.

Authors:  D C Rockholm; H Y Yamamoto
Journal:  Plant Physiol       Date:  1996-02       Impact factor: 8.340

7.  Impact of mitochondrial alternative oxidase expression on the response of Nicotiana tabacum to cold temperature.

Authors:  Jia Wang; Nirusan Rajakulendran; Sasan Amirsadeghi; Greg C Vanlerberghe
Journal:  Physiol Plant       Date:  2011-04-13       Impact factor: 4.500

8.  Combined effect of 24-epibrassinolide and salicylic acid mitigates lead (Pb) toxicity by modulating various metabolites in Brassica juncea L. seedlings.

Authors:  Sukhmeen Kaur Kohli; Neha Handa; Anket Sharma; Vandana Gautam; Saroj Arora; Renu Bhardwaj; Mohammed Nasser Alyemeni; Leonard Wijaya; Parvaiz Ahmad
Journal:  Protoplasma       Date:  2017-06-01       Impact factor: 3.356

9.  Molecular mechanism for jasmonate-induction of anthocyanin accumulation in Arabidopsis.

Authors:  Xiaoyi Shan; Yongsheng Zhang; Wen Peng; Zhilong Wang; Daoxin Xie
Journal:  J Exp Bot       Date:  2009-07-12       Impact factor: 6.992

10.  Changes of organic acid exudation and rhizosphere pH in rice plants under chromium stress.

Authors:  Fanrong Zeng; Song Chen; Ying Miao; Feibo Wu; Guoping Zhang
Journal:  Environ Pollut       Date:  2007-12-26       Impact factor: 8.071

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Review 3.  Role of jasmonic acid in plants: the molecular point of view.

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Journal:  Plant Cell Rep       Date:  2021-04-05       Impact factor: 4.570

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Review 5.  Phytohormones Regulate Accumulation of Osmolytes Under Abiotic Stress.

Authors:  Anket Sharma; Babar Shahzad; Vinod Kumar; Sukhmeen Kaur Kohli; Gagan Preet Singh Sidhu; Aditi Shreeya Bali; Neha Handa; Dhriti Kapoor; Renu Bhardwaj; Bingsong Zheng
Journal:  Biomolecules       Date:  2019-07-17

6.  Seed Priming with Jasmonic Acid Counteracts Root Knot Nematode Infection in Tomato by Modulating the Activity and Expression of Antioxidative Enzymes.

Authors:  Shagun Bali; Parminder Kaur; Vijay Lakshmi Jamwal; Sumit G Gandhi; Anket Sharma; Puja Ohri; Renu Bhardwaj; Mohammad Ajmal Ali; Parvaiz Ahmad
Journal:  Biomolecules       Date:  2020-01-07

7.  Nematicidal Volatiles from Bacillus atrophaeus GBSC56 Promote Growth and Stimulate Induced Systemic Resistance in Tomato against Meloidogyne incognita.

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Journal:  Int J Mol Sci       Date:  2021-05-10       Impact factor: 5.923

8.  Red Light-Induced Systemic Resistance Against Root-Knot Nematode Is Mediated by a Coordinated Regulation of Salicylic Acid, Jasmonic Acid and Redox Signaling in Watermelon.

Authors:  You-Xin Yang; Chaoqun Wu; Golam J Ahammed; Caijun Wu; Zemao Yang; Chunpeng Wan; Jinyin Chen
Journal:  Front Plant Sci       Date:  2018-07-10       Impact factor: 5.753

9.  Jasmonic Acid Seed Treatment Stimulates Insecticide Detoxification in Brassica juncea L.

Authors:  Anket Sharma; Vinod Kumar; Huwei Yuan; Mukesh Kumar Kanwar; Renu Bhardwaj; Ashwani Kumar Thukral; Bingsong Zheng
Journal:  Front Plant Sci       Date:  2018-11-02       Impact factor: 5.753

10.  Identification of the Complex Interplay Between Nematode-Related lncRNAs and Their Target Genes in Glycine max L.

Authors:  Masoumeh Ahmadi Khoei; Marzieh Karimi; Roya Karamian; Sahand Amini; Aboozar Soorni
Journal:  Front Plant Sci       Date:  2021-12-10       Impact factor: 5.753

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