951
Views
1
CrossRef citations to date
0
Altmetric
Research Paper

Synergistic interplay between melatonin and hydrogen sulfide enhances cadmium-induced oxidative stress resistance in stock (Matthiola incana L.)

, , , &
Article: 2331357 | Received 20 Dec 2023, Accepted 14 Feb 2024, Published online: 02 Apr 2024

References

  • Nayeri S, Dehghanian Z, Lajayer BA, Thomson A, Astatkie T, Price GW. CRISPR/Cas9-mediated genetically edited ornamental and aromatic plants: a promising technology in phytoremediation of heavy metals. J Clean Prod. 2023;428:139512. doi:10.1016/j.jclepro.2023.139512.
  • Naing AH, Park DY, Park HC, Kim CK. Removal of heavy metals using iris species: a potential approach for reclamation of heavy metal-polluted sites and environmental beautification. Environ Sci Pollut Res. 2023;30(32):1–9. doi:10.1007/s11356-023-27732-5.
  • Lv Y, Zhao Y, He Y, Wang J, Zheng Y, Chen X, Huang F, Liu J, Yu L. Synergistic effects of gamma-aminobutyric acid and melatonin on seed germination and cadmium tolerance in tomato. Plant Signal Behav. 2023;18(1):2216001. doi:10.1080/15592324.2023.2216001.
  • Wang J, Liu W, Wang X, Zeb A, Wang Q, Mo F, Lian Y, Liu J, Yu M, Li J. Assessing stress responses in potherb mustard (brassica juncea var. multiceps) exposed to a synergy of microplastics and cadmium: insights from physiology, oxidative damage, and metabolomics. Sci Total Environ. 2024;907:167920. doi:10.1016/j.scitotenv.2023.167920.
  • Khan SR, Ahmad Z, Khan Z, Khan U, Asad M, Shah T. Synergistic effect of silicon and arbuscular mycorrhizal fungi reduces cadmium accumulation by regulating hormonal transduction and lignin accumulation in maize. Chemosphere. 2024;346:140507. doi:10.1016/j.chemosphere.2023.140507.
  • Fan P, Wu L, Wang Q, Wang Y, Luo H, Song J, Chen S, Yao H, Chen S. Physiological and molecular mechanisms of medicinal plants in response to cadmium stress: Current status and future perspective. J Hazard Mat. 2023;450:131008. doi:10.1016/j.jhazmat.2023.131008.
  • Shiyu QIN, Hongen LIU, Zhaojun NIE, Rengel Z, Wei GAO, Chang LI, Peng ZHAO. Toxicity of cadmium and its competition with mineral nutrients for uptake by plants: a review. Pedosphere. 2020;30(2):168–180. doi:10.1016/S1002-0160(20)60002-9.
  • Zulfiqar F, Ashraf M. Proline alleviates abiotic stress induced oxidative stress in plants. J Plant Growth Regul. 2022b;42(8):4629–4651. doi:10.1007/s00344-022-10839-3.
  • Fan P, Wu L, Wang Q, Wang Y, Luo H, Song J, Yang M, Yao H, Chen S. Physiological and molecular mechanisms of medicinal plants in response to cadmium stress: Current status and future perspective. J Hazard Mater. 2023;450:131008. doi:10.1016/j.jhazmat.2023.131008.
  • Zulfiqar F, Ashraf M. Antioxidants as modulators of arsenic-induced oxidative stress tolerance in plants: an overview. J Hazard Mat. 2022a;427:127891. doi:10.1016/j.jhazmat.2021.127891.
  • Khan MN, Siddiqui MH, Mukherjee S, AlSolami MA, Alhussaen KM, AlZuaibr FM, Alsubaie QD, Al-Amri AA, Alsubaie QD. Melatonin involves hydrogen sulfide in the regulation of H±ATPase activity, nitrogen metabolism, and ascorbate-glutathione system under chromium toxicity. Environ Pollut. 2023;323:121173. doi:10.1016/j.envpol.2023.121173.
  • Zhao Y, Wang Q, Gu D, Huang F, Liu J, Yu L, Yu X. Melatonin, a phytohormone for enhancing the accumulation of high-value metabolites and stress tolerance in microalgae: applications, mechanisms, and challenges. Bioresour Technol. 2023;130093:130093. doi:10.1016/j.biortech.2023.130093.
  • Song C, Manzoor MA, Mao D, Ren X, Zhang W, Zhang Y. Photosynthetic machinery and antioxidant enzymes system regulation confers cadmium stress tolerance to tomato seedlings pretreated with melatonin. Sci Hortic (Amsterdam). 2024;323:112550.
  • Arnao MB, Hernández‐Ruiz J. Melatonin as a regulatory hub of plant hormone levels and action in stress situations. Plant Biol. 2021;23:7–19.
  • Song C, Manzoor MA, Mao D, Ren X, Zhang W, Zhang Y. Photosynthetic machinery and antioxidant enzymes system regulation confers cadmium stress tolerance to tomato seedlings pretreated with melatonin. Sci Hortic (Amsterdam). 2024;323:112550. doi:10.1016/j.scienta.2023.112550.
  • Yang H, Fang R, Luo L, Yang W, Huang Q, Yang C, Wang J, Gong W, Wang J. Potential roles of melatonin in mitigating the heavy metals toxicity in horticultural plants. Sci Hortic (Amsterdam). 2023;321:112269. doi:10.1016/j.scienta.2023.112269.
  • Zulfiqar F, Akram NA, Ashraf M. Osmoprotection in plants under abiotic stresses: new insights into a classical phenomenon. Planta. 2020;251(1):1–17. doi:10.1007/s00425-019-03293-1.
  • Kaya C, Ugurlar F, Ashraf M, Alyemeni MN, Bajguz A, Ahmad P. The involvement of hydrogen sulphide in melatonin-induced tolerance to arsenic toxicity in pepper (capsicum annuum L.) plants by regulating sequestration and subcellular distribution of arsenic, and antioxidant defense system. Chemosphere. 2022;309:136678. doi:10.1016/j.chemosphere.2022.136678.
  • Khan MN. S-nitrosoglutathione-facilitated activation of ATP synthase involves hydrogen sulfide during the response of plants to cadmium toxicity. S Afr J Bot. 2024;165:176–187. doi:10.1016/j.sajb.2023.12.033.
  • Haghi V, Namdjoyan S, Soorki AA. Interactive effects of exogenous melatonin and hydrogen sulfide in alleviating lead toxicity in safflower seedlings. Ind Crops Prod. 2022;187:115523. doi:10.1016/j.indcrop.2022.115523.
  • McLean E. Soil pH and lime requirement. In: Page, A.L., Miller, R.H., Keeney, D.R., editor(s). Methods of Soil Analysis. Part 2, 2nd ed. Agronomy Monograph, 9. Madison: American Society of Agronomy and Soil Science Society of America. 1982;199–224.
  • Page AL, Miller RH, Keeny DR. Methods of soil analysis (part 2). Chem. Microbiol. Proper. Agron 9. 1982;9.
  • Bouyoucos GJ. Hydrometer method improved for making particle size analyses of soils 1. Agron J. 1962;54(5):464–465. doi:10.2134/agronj1962.00021962005400050028x.
  • Walkley A, Black IA. An examination of the Degtjareff method for determining soil organic matter, and a proposed modification of the chromic acid titration method. Soil Sci. 1934;37(1):29–38. doi:10.1097/00010694-193401000-00003.
  • Soltanpour PN. Use of ammonium bicarbonate DTPA soil test to evaluate elemental availability and toxicity. Commun Soil Sci Plant Anal. 1985;16(3):323–338. doi:10.1080/00103628509367607.
  • Lichtenthaler HK. Chlorophylls and carotenoids: pigments of photosynthetic biomembranes. In Methods in enzymology. Academic Press. 1987;148:350–382.
  • Frohlich M, Kutscherah U. Changes in soluble sugars and proteins during. Development of rye coleoptiles. J Plant Physiol. 1995;146(1–2):121–125. doi:10.1016/S0176-1617(11)81977-2.
  • Bradford MM. A rapid and sensitive method for the quantitation of microgram quantities of protein utilizing the principle of protein-dye binding. Analytical Biochem. 1976;72(1–2):248–254. doi:10.1016/0003-2697(76)90527-3.
  • Ahmed T, Masood HA, Noman M, AA A-H, Alghanem SM, Khan MM, Li B, Manzoor N, Rizwan M, Qi X. Biogenic silicon nanoparticles mitigate cadmium (Cd) toxicity in rapeseed (Brassica napus L.) by modulating the cellular oxidative stress metabolism and reducing Cd translocation. J Hazard Mat. 2023;132070. doi:10.1016/j.jhazmat.2023.132070.
  • Bates LS, Waldren RP, Teare ID. Rapid determination of free proline for water-stress studies. Plant Soil. 1973;39(1):205–207. doi:10.1007/BF00018060.
  • Dionisio-Sese ML, Tobita S. Antioxidant responses of rice seedlings to salinity stress. Plant Sci. 1998;135(1):1–9. doi:10.1016/S0168-9452(98)00025-9.
  • Hodges DM, JM D, Forney CF, Prange RK. Improving the thiobarbituric acid-reactive-substances assay for estimating lipid peroxidation in plant tissues containing anthocyanin and other interfering compounds. Planta. 1999;207(4):604–611. doi:10.1007/s004250050524.
  • Patterson BD, EA M, Ferguson IB. Estimation of hydrogen peroxide in plant extracts using titanium (IV). Analyt Biochem. 1984;139(2):487–492. doi:10.1016/0003-2697(84)90039-3.
  • van Rossum MW, Alberda M, van der Plas LH, van Rossum MWPC, van der Plas LHW. Role of oxidative damage in tulip bulb scale micropropagation. Plant Sci. 1997;130(2):207–216. doi:10.1016/S0168-9452(97)00215-X.
  • Chance B, Maehly AC. Assay of catalases and peroxidases. Methods Enzymol. 1955;2:764–817.
  • Nakano Y, Asada K. Hydrogen peroxide is scavenged by ascorbate-specific peroxidase in spinach chloroplasts. Plant Cell Physiol. 1981;22:867–880.
  • Decker A. Enzymes reagents and related enzyme biochemicals. Worthingto n enzyme manual. Worthington biochemical corporations freehold. New Jersey, USA; 1977. pp. 74–76.
  • Zucker M. Sequential induction of phenylalanine ammonia-lyase in cell suspension culture of barley. Plant Physiol. 1965;5:822–827.
  • Pendharkar MB, Nair PM. Induction of phenylalanine ammonia lyase (PAL) in gamma irradiated potatoes. Radiation Bot. 1975;15(2):191–197. doi:10.1016/S0033-7560(75)80007-X.
  • Haider FU, Farooq I, Khan M, Cai L, Li Y, Cai L, Li Y. Co-application of biochar and plant growth regulators improves maize growth and decreases Cd accumulation in cadmium-contaminated soil. J Cleaner Prod. 2024;140515. doi:10.1016/j.jclepro.2023.140515.
  • Awan SA, Khan I, Rizwan M, Irshad MA, Xiaosan W, Zhang X, Huang L. Reduction in the cadmium (cd) accumulation and toxicity in pearl millet (Pennisetum glaucum L.) by regulating physio-biochemical and antioxidant defense system via soil and foliar application of melatonin. Environ Pollut. 2023;328:121658. doi:10.1016/j.envpol.2023.121658.
  • Huang J, Jing HK, Zhang Y, Chen SY, Wang HY, Cao Y, Zhu XF, Lu YH, Zheng QS, Shen RF. Melatonin reduces cadmium accumulation via mediating the nitric oxide accumulation and increasing the cell wall fixation capacity of cadmium in rice. J Hazard Mat. 2023;445:130529. doi:10.1016/j.jhazmat.2022.130529.
  • Altaf MA, Hao Y, Shu H, Mumtaz MA, Cheng S, Alyemeni MN, Wang Z, Wang Z. Melatonin enhanced the heavy metal-stress tolerance of stock by mitigating the oxidative damage and reducing the heavy metal accumulation. J Hazard Mat. 2023;454:131468. doi:10.1016/j.jhazmat.2023.131468.
  • Saqib M, Shahzad U, Zulfiqar F, Tiwari RK, Lal MK, Naz S, Altaf MA, Awan ZA, El-Sheikh MA, Altaf MA. Exogenous melatonin alleviates cadmium-induced inhibition of growth and photosynthesis through upregulating antioxidant defense system in strawberry. South African J Bot. 2023;157:10–18. doi:10.1016/j.sajb.2023.03.039.
  • Zheng X, Zhang B, Pan N, Cheng X, Lu W. Hydrogen sulfide alleviates cadmium stress by enhancing photosynthetic efficiency and regulating sugar metabolism in wheat seedlings. Plants. 2023;12(13):2413. doi:10.3390/plants12132413.
  • Yusuf M, Saeed T, Almarri HJ, Khan TA, Faizan M, Elsayed N. Hydrogen sulfide counteract copper induced inhibition of photosynthetic performance through altered proline metabolism and enhanced antioxidants in Cucumis sativus. Plant Stress. 2023;10:100222. doi:10.1016/j.stress.2023.100222.