Serotonin-Salt-Stress Model-Induced Cell Growth via Promoting an Antioxidant System and Secondary Metabolites in Capsicum annuum Cell Suspension Culture DOI Creative Commons

Monisha Arya,

Gyanendra Kumar,

Parvatam Giridhar

et al.

ACS Omega, Journal Year: 2024, Volume and Issue: 9(35), P. 37330 - 37342

Published: Aug. 22, 2024

contains potential therapeutic capsaicinoids, and various stress factors influence plant productivity. Serotonin is an indoleamine involved in signaling several response mechanisms plants. However, the of serotonin on cell growth accumulation secondary metabolites, mainly capsaicinoids production, not yet clearly defined under salt stress. In this study, we optimized chili suspension cultures to maximize biomass, phenolic compounds production using surface methodology with two variables (serotonin NaCl) different concentrations culture media supplemented 2,4-dichlorophenoxyacetic acid Kinetin. The results revealed a significant increase biomass (14.3 g/L FW), capsaicin (0.93 μg/g dihydrocapsaicin content (0.32 FW) compared control. Among all compounds, chlorogenic was enhanced (17.4 control cultures. exhibited mitigation effects boosted antioxidant present illustrated that conditions can be used scale-up studies through bioreactor.

Language: Английский

The mechanisms of melatonin in low‐temperature stress tolerance in postharvest fruits and vegetables DOI Creative Commons
Renu Bhardwaj, Hansika Sati, Harinder Singh Oberoi

et al.

Future Postharvest and Food, Journal Year: 2024, Volume and Issue: unknown

Published: March 27, 2024

Abstract Low‐temperature storage of fresh fruits and vegetables, especially below the critical temperatures, leads to chilling injury that makes produce unsuitable for market use. Postharvest application melatonin alleviation in vegetables is an alternative preventive measure longer persistence on market. This review classified mechanisms involved melatonin‐mediated tolerance into physiological, biochemical (sugar metabolism, organic acids, lignification respiratory modulation, ripening, senescence, membrane structure, maintenance antioxidant system, endogenous proline, polyamine, γ ‐amino butyric acid shunt pathway, modulation energy status), hormonal (ethylene, indole acetic acid, jasmonic abscisic regulation) pathways. Melatonin acted via several mechanisms, including activity elevation, induction enzymes, gene expression regulation, gamma‐aminobutyric stress‐tolerant proteins, cell stabilization. However, dose duration exposure optimization, along with means mass production melatonin, required promote trails.

Language: Английский

Citations

1

Monitoring the temporal variations of plant stress using the air pollution tolerance index in the Sejzi industrial area (Isfahan, Iran) DOI

Moslem Yazdani,

Hamidreza Karimzadeh, H R Azimzadeh

et al.

Environmental Science and Pollution Research, Journal Year: 2024, Volume and Issue: unknown

Published: Sept. 23, 2024

Language: Английский

Citations

1

Study on the Mechanism of Flavonoid Enrichment in Black Soybean Sprouts by Abscisic Acid/Melatonin Under Slight Acid Treatment DOI Creative Commons

Jiyuan Xue,

Xiaolan Quan,

Yang Jia

et al.

Foods, Journal Year: 2024, Volume and Issue: 13(22), P. 3567 - 3567

Published: Nov. 7, 2024

Plant hormones play a critical role in the physiological and biochemical mechanisms of plants, with functions such as regulating metabolic pathways secondary metabolite production alleviating external stresses. In this study, synthesis flavonoids black soybean sprouts was induced by slight acid combined plant abscisic (ABA) melatonin (MT). The results indicated that contents daidzin, genistin, daidzein, genistein treated were increased 10 μM ABA 75 MT, total flavonoid content significantly enhanced. Compared treatment, H

Language: Английский

Citations

1

Melatonin application enhances salt stress‐induced decreases in minerals, betalains, and phenolic acids in beet (Beta vulgaris L.) cultivars DOI
Nesrin Çolak, Ana Slatnar, Aljaž Medič

et al.

Physiologia Plantarum, Journal Year: 2024, Volume and Issue: 176(6)

Published: Nov. 1, 2024

Melatonin is a potentially active signaling molecule and plays crucial role in regulating the growth development of plants under stress conditions, alleviating oxidative damage, enhancing antioxidant defence mechanisms ion homeostasis. This study examined effects exogenous melatonin application on leaf biomass, concentrations, betalains, phenolic acid endogenous contents comparing red beet (Beta vulgaris L. 'Ruby Queen' 'Scarlet Supreme') white ('Rodeo' 'Ansa') cultivars increasing salinity levels 50, 150, 250 mM NaCl. Exogenous increased salinity-induced reductions fresh dry weights osmotic potential leaves. Na

Language: Английский

Citations

1

Serotonin-Salt-Stress Model-Induced Cell Growth via Promoting an Antioxidant System and Secondary Metabolites in Capsicum annuum Cell Suspension Culture DOI Creative Commons

Monisha Arya,

Gyanendra Kumar,

Parvatam Giridhar

et al.

ACS Omega, Journal Year: 2024, Volume and Issue: 9(35), P. 37330 - 37342

Published: Aug. 22, 2024

contains potential therapeutic capsaicinoids, and various stress factors influence plant productivity. Serotonin is an indoleamine involved in signaling several response mechanisms plants. However, the of serotonin on cell growth accumulation secondary metabolites, mainly capsaicinoids production, not yet clearly defined under salt stress. In this study, we optimized chili suspension cultures to maximize biomass, phenolic compounds production using surface methodology with two variables (serotonin NaCl) different concentrations culture media supplemented 2,4-dichlorophenoxyacetic acid Kinetin. The results revealed a significant increase biomass (14.3 g/L FW), capsaicin (0.93 μg/g dihydrocapsaicin content (0.32 FW) compared control. Among all compounds, chlorogenic was enhanced (17.4 control cultures. exhibited mitigation effects boosted antioxidant present illustrated that conditions can be used scale-up studies through bioreactor.

Language: Английский

Citations

0