4.5 Article

GABA reverses salt-inhibited photosynthetic and growth responses through its influence on NO-mediated nitrogen-sulfur assimilation and antioxidant system in wheat

Journal

JOURNAL OF BIOTECHNOLOGY
Volume 325, Issue -, Pages 73-82

Publisher

ELSEVIER
DOI: 10.1016/j.jbiotec.2020.11.015

Keywords

Antioxidants; Ascorbate-glutathione cycle; GABA; Nitric oxide; Photosynthesis

Funding

  1. SERB-DST grant [SRG/2020/001004]
  2. King Saud University, Riyadh, Saudi Arabia [RSP-2020-122]

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The study shows that GABA helps improve nitrogen metabolism, sulfur assimilation, ion homeostasis, growth, and photosynthesis in wheat under salt stress, while mitigating oxidative stress induced by salt stress. Additionally, the impact of GABA on growth and photosynthesis under salt stress is mediated by nitric oxide (NO), influencing nitrogen and sulfur assimilation and antioxidant systems.
Gamma-aminobutyric acid (GABA) is a newly recognized signaling molecule participating in physiological processes, growth, and development of plants under optimal and stressful environments. In the present reported research, we investigated the role of GABA in imparting salt stress tolerance in wheat (Triticum aestivum L.). Exposure of wheat plants to 100 mM NaCl resulted in increased oxidative stress, glucose content, nitric oxide (NO) production together with reduced growth and photosynthetic traits of plants. Contrarily, GABA application improved nitrogen (N) metabolism, sulfur (S) assimilation, ion homeostasis, growth and photosynthesis under salt stress. Additionally, GABA mitigated oxidative stress induced by salt stress with the increased ascorbate-glutathione cycle and proline metabolism. The study with NO inhibitor, c-PTIO [2-(4-carboxyphenyl)-4,4,5,5-tetramethylimidazoline-1-oxy-3-oxide] in GABA experiment suggested that the impact of GABA on improvement of growth and photosynthesis under salt stress was mediated by NO and influenced N and S assimilation and antioxidant systems. The results suggested that the GABA has a significant potential in reversing the salt stress response in wheat plants, and GABA-mediated signals are manifested through NO.

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