Literature DB >> 26468060

Interactive effects of silicon and arbuscular mycorrhiza in modulating ascorbate-glutathione cycle and antioxidant scavenging capacity in differentially salt-tolerant Cicer arietinum L. genotypes subjected to long-term salinity.

Neera Garg1, Purnima Bhandari2.   

Abstract

Salinity is the major environmental constraint that affects legume productivity by inducing oxidative stress. Individually, both silicon (Si) nutrition and mycorrhization have been reported to alleviate salt stress. However, the mechanisms adopted by both in mediating stress responses are poorly understood. Thus, pot trials were undertaken to evaluate comparative as well as interactive effects of Si and/or arbuscular mycorrhiza (AM) in alleviating NaCl toxicity in modulating oxidative stress and antioxidant defence mechanisms in two Cicer arietinum L. (chickpea) genotypes-HC 3 (salt-tolerant) and CSG 9505 (salt-sensitive). Plants subjected to different NaCl concentrations (0-100 mM) recorded a substantial increase in the rate of superoxide radical (O2 (·-)), H2O2, lipoxygenase (LOX) activity and malondialdehyde (MDA) content, which induced leakage of ions and disturbed Ca(2+)/Na(+) ratio in roots and leaves. Individually, Si and AM reduced oxidative burst by strengthening antioxidant enzymatic activities (superoxide dismutase (SOD), catalase (CAT) and guaiacol peroxidase (GPOX)). Si was relatively more efficient in reducing accumulation of stress metabolites, while mycorrhization significantly up-regulated antioxidant machinery and modulated ascorbate-glutathione (ASA-GSH) cycle. Combined applications of Si and AM complemented each other in reducing reactive oxygen species (ROS) build-up by further enhancing the antioxidant defence responses. Magnitude of ROS-mediated oxidative burden was lower in HC 3 which correlated strongly with more effective AM symbiosis, better capacity to accumulate Si and stronger defence response when compared with CSG 9505. Study indicated that Si and/or AM fungal amendments upgraded salt tolerance through a dynamic shift from oxidative destruction towards favourable antioxidant defence system in stressed chickpea plants.

Entities:  

Keywords:  Arbuscular mycorrhiza; Ascorbate-glutathione cycle; Cicer arietinum L; Genotypes; Oxidative burst; Salinity; Silicon

Mesh:

Substances:

Year:  2015        PMID: 26468060     DOI: 10.1007/s00709-015-0892-4

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


  42 in total

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Review 2.  Pathways of oxidative damage.

Authors:  James A Imlay
Journal:  Annu Rev Microbiol       Date:  2003       Impact factor: 15.500

Review 3.  Mechanisms of salinity tolerance.

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4.  Na+ and Cl(-) ions show additive effects under NaCl stress on induction of oxidative stress and the responsive antioxidative defense in rice.

Authors:  Tushar Khare; Vinay Kumar; P B Kavi Kishor
Journal:  Protoplasma       Date:  2014-12-30       Impact factor: 3.356

Review 5.  Oxidative stress, antioxidants and stress tolerance.

Authors:  Ron Mittler
Journal:  Trends Plant Sci       Date:  2002-09       Impact factor: 18.313

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Authors:  Li-Juan Quan; Bo Zhang; Wei-Wei Shi; Hong-Yu Li
Journal:  J Integr Plant Biol       Date:  2008-01       Impact factor: 7.061

7.  Silicon-enhanced resistance to cadmium toxicity in Brassica chinensis L. is attributed to Si-suppressed cadmium uptake and transport and Si-enhanced antioxidant defense capacity.

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Journal:  J Exp Bot       Date:  2012-01-30       Impact factor: 6.992

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  9 in total

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Journal:  Physiol Mol Biol Plants       Date:  2018-05-09

Review 4.  Silicon-mediated Improvement in Plant Salinity Tolerance: The Role of Aquaporins.

Authors:  Juan J Rios; Maria C Martínez-Ballesta; Juan M Ruiz; Begoña Blasco; Micaela Carvajal
Journal:  Front Plant Sci       Date:  2017-06-08       Impact factor: 5.753

Review 5.  Mechanisms of Silicon-Mediated Amelioration of Salt Stress in Plants.

Authors:  Boling Liu; Prabhakaran Soundararajan; Abinaya Manivannan
Journal:  Plants (Basel)       Date:  2019-08-27

6.  Assessing Silicon-Mediated Growth Performances in Contrasting Rice Cultivars under Salt Stress.

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Review 7.  Arbuscular Mycorrhiza-Mediated Regulation of Polyamines and Aquaporins During Abiotic Stress: Deep Insights on the Recondite Players.

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Journal:  Front Plant Sci       Date:  2021-06-17       Impact factor: 5.753

Review 8.  Contribution of Arbuscular Mycorrhizal Fungi, Phosphate-Solubilizing Bacteria, and Silicon to P Uptake by Plant.

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Journal:  Front Plant Sci       Date:  2021-07-01       Impact factor: 5.753

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Journal:  J Exp Bot       Date:  2016-04-27       Impact factor: 6.992

  9 in total

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