90
Views
3
CrossRef citations to date
0
Altmetric
Original Articles

Physiological and biochemical markers of gamma irradiated white radish (Raphanus sativus)

ORCID Icon, ORCID Icon, ORCID Icon & ORCID Icon
Pages 1413-1423 | Received 12 Oct 2022, Accepted 26 Jan 2023, Published online: 13 Feb 2023

References

  • Abdel-Hady MS, Okasha EM, Soliman SSA, Talaat M. 2008. Effect of gamma radiation and gibberellic acid on germination and alkaloid production in Atropa belladonna. Aust J Basic Appl. 2:401–405.
  • Abd El-Moneim MR, Afify MM, Rashed EA, Mahmoud HS, El-Beltagi . 2011. Effect of gamma radiation on protein profile, protein fraction and solubility’s of three oil seeds: soybean, peanut and sesame. Not Bot HortiAgrobo. 39(2):90–98.
  • Abu J, Kales M, Kwaku G, Duodu G, Amanda M. 2005. Functional properties of cowpea (Vigna unguiculata Walp) flour and pastes as affected by gamma irradiation. Food Chem. 93:103–111.
  • Ahumada-Flores S, Pando LR, Cota FI, Torres E, Sarsu F, Villalobos S. 2021. Technical note: gamma irradiation induces changes of phenotypic and agronomic traits in wheat (Triticum turgidum ssp. durum). Appl Radiat Isot. 167:109490.
  • Akshatha K, Chandrashekar KR. 2013. Effect of gamma irradiation on germination growth and biochemical parameters of Pterocarpus santalinus, an endangered species of Eastern Ghats. Euro J Exp Bio. 3(2):266–270.
  • Aly AA. 2010. Biosynthesis of phenolic compounds and water soluble vitamins in culantro (Eryngium foetidum L.) plantlets as affected by low doses of gamma irradiation. Nalele Universităţii Din Oradea Fascicula Biologie Tom. XVII:356–361.
  • Aly AA, El-Desouky W, Abou El-Leel OF. 2022. Micropropagation, phytochemical content and antioxidant activity of gamma irradiated blackberry (Rubus fruticosus L.) plantlets. In Vitro Cell Dev Biol Plant. 58:457–469.
  • Aly AA, Eliwa NE, AbdEl-Megid MH. 2019a. Stimulating effect of gamma radiation on some active compounds in eggplant fruits. Egypt. J Rad Sci Applic. 32(1):61–73.
  • Aly AA, Eliwa NE, Borik ZM, Safwat G. 2021. Physiological variation of irradiated red radish plants and their phylogenic relationship using SCoT and CDDP markers. Not Bot Horti Agrobot Cluj-Napocaj. 49:12396.
  • Aly AA, Maraei RW, Aldrussi I. 2019b. Changes in peroxidase and polyphenol oxidase activity and transcript levels of related genes in two Egyptian bread wheat cultivars (Triticum aestivum L.) affected by gamma irradiation and salinity stress. Bangladesh J Bot. 48:177–186.
  • Aly AA, Maraei RW, Ayadi S. 2018. Some biochemical changes in two Egyptian bread wheat cultivars in response to gamma irradiation and salt stress. Bulg J Agric Sci. 24:50–59.
  • Ariraman M, Bharathi T, Dhanavel D. 2016. Studies on the effects of mutagens on cytotoxicity behavior in pigeon pea (Cajanus cajan (L.) Millsp) Var. CO-7. J Appl Advan Res. 1(1):25–28.
  • Baenas N, Piegholdt S, Schloesser A, Moreno DA, Garcia-Viguera C, Rimbach G, Wagner AE. 2016. Metabolic activity of radish sprouts derived isothiocyanates in Drosophila melanogaster. Int J Mol Sci. 17(2):251.
  • Baldwin J, Grantham V. 2015. Radiation hormesis: historical and current perspectives. J Nucl Med Technol. 43(4):242–246.
  • Baltrusaityte V, Venskutonis PR, Ceksteryt V. 2007. Radical scavenging activity of different floral origin honey and beebread phenolic extracts. Food Chem. 101(2):502–514.
  • Bandekar JR, Dhokane VS, Shashidhar R, Hajare S, Saroj S, Sharma A. 2005. Use of irradiation to ensure hygienic quality of fresh, pre-cut fruits and vegetables and other minimally processed foods of plant origin. Proceedings of a final research coordination meeting organized by the Joint FAO/IAEA Programme of Nuclear Techniques in Food and Agriculture and held in Islamabad, Pakistan, 22–30 July 2005.
  • Banihani SA. 2017. Radish (Raphanus sativus) and diabetes. Nutrients 9(9):1014.
  • Bradford MM. 1976. A rapid and sensitive method for the quantification of microgram quantities of protein utilizing the principle of protein-dye binding. Anal Biochem. 72:248–254.
  • Choi HI, Han SM, Jo YD, Hong MJ, Kim SH, Kim JB. 2021. Effects of acute and chronic gamma irradiation on the cell biology and physiology of rice plants. Plants. 10:439.
  • Dartnell LR, Storrie-Lombardi MC, Mullineaux CW, Ruban AV, Wright G, Griffiths AD, Muller JP, Ward JM. 2011. Degradation of cyanobacterial biosignatures by ionizing radiation. Astrobiology. 11(10):997–1016.
  • Das K, Roychoudhury A. 2014. Reactive oxygen species (ROS) and response of antioxidants as ROS scavengers during environmental stress in plants. Front Environ Sci. 2:1–13.
  • De Figueiredo SG, Silva-Sena GG, de Santana EN, dos Santos RG, Neto JO. 2014. Effect of gamma irradiation on carotenoids and vitamin C contents of papaya fruit (Carica papaya L.) Cv. Golden. J Food Process Technol. 5:337.
  • Duncan BD. 1955. Multiple range and multiple F tests. Biometrics. 11(1):1–42.
  • El-Beltagi HS, Ahmed OK, El-Desouky W. 2011. Effect of low doses γ-irradiation on oxidative stress secondary metabolites production of rosemary (Rosmarinus officinalis L.) callus culture. Radiat Phys Chem. 80:968–976.
  • El-Beltagi HS, Maraei RW, Shalaby TA, Aly AA. 2022. Metabolites, nutritional quality and antioxidant activity of red radish roots affected by gamma rays. Agronomy. 12:1916.
  • El-Beltagi HS, Mohamed HI, Mohammed AMA, Zaki LM, Mogazy AM. 2013. Physiological and biochemical effects of γ-irradiation on cowpea plants (Vigna sinensis) under salt stress. Not Bot Hortic Agrobo Cluj-Napoca. 41(1):104–114.
  • Gaafar RM, Elshanshory AR, Hamouda M, Diab R. 2017. Effect of various doses gamma-radiation on phenotypic and molecular characteristics of two Egyptian soybean varieties. Egypt J Bot. 57(1):199–216.
  • Gitz DC, Liu-Gitz L, McClure JW, Huerta AJ. 2004. Effects of a PAL inhibitor on phenolic accumulation and UV‐B tolerance in Spirodela intermedia (Koch.). J Exp Bot. 55(398):919–927.
  • Gudkov SV, Grinberg M, Sukhov VS, Vodeneev VA. 2019. Effect of ionizing radiation on physiological and molecular processes in plants. J Environ Radioact. 202:8–24.
  • Gulluce M, Sokmen M, Sahin F, Sokmen A, Adiguzel A, Ozer H. 2004. Biological activities of the essential oil and methanolic extract of Micromeria fruticosa (L.) Druce ssp. serpyllifolia (Bieb) PH Davis plants from the Eastern Anatolia region of Turkey. J Sci Food Agric. 84:735.
  • Gumus T, Albayrak S, Sagdic O, Arici M. 2011. Effect of gamma irradiation on total phenolic contents and antioxidant activities of Satureja hortensis, Thymus vulgaris, and Thymbra spicata from Turkey. Int J Food Prop. 14(4):830–839.
  • Hammerschmidt R, Nuckles EM, Kuc J. 1982. Association of enhanced peroxidase activity with induced systemic resistance of cucumber to Colletotrichum lagenarium. Physiol Plant Pathol. 20:73–82.
  • Hanafy RS, Akladious SA. 2018. Physiological and molecular studies on the effect of gamma radiation in fenugreek (Trigonella foenum-graecum L.) plants. J Genet Eng Biotechnol. 16(2):683–692.
  • Harrison K, Were L. 2007. Effect of gamma irradiation on total phenolic content yield and antioxidant capacity of almond skin extracts. Food Chem. 102:932–937.
  • Hashemi SMB, Abhari K, Khaneghah AM. 2020. The combined effects of ultrasound and lactic acid in inactivating microorganisms on fresh radish (Raphanus raphanistrum subsp. sativus): microbiological and quality changes. Food Sci Nutr. 8(1):162–169.
  • Heijde M, Ulm R. 2012. UV-B photoreceptor-mediated signalling in plants. Trends in Plant Sci. 17:230–237.
  • Hong MJ, Kim DY, Ahn JW, Kang SY, Seo YW, Kim JB. 2018a. Comparison of radiosensitivity response to acute and chronic gamma irradiation in colored wheat. Genet Mol Biol. 41(3):611–623.
  • Hong MJ, Yoon YH, Kim DS, Kim SH, Kang SY, Kim DY, Seo Y, Kim J. 2018b. Phenotypic and molecular responses of wheat (Triticum aestivum L.) to chronic gamma irradiation. J Agric Sci Technol. 20(1):167–178.
  • Ishida M, Kakizaki T, Morimitsu Y, Ohara T, Hatakeyama K, Yoshiaki H, Kohori J, Nishio T. 2015. Novel glucosinolate composition lacking 4-methylthio-3-butenyl glucosinolate in Japanese white radish (Raphanus sativus L.). Theor Appl Genet. 128(10):2037–2046.
  • Jagota SK, Dani H. 1982. A new colorimetric technique for the estimation of vitamin C using Folin phenol reagent. Anal Biochem. 127(1):178–182.
  • Jan S, Parween T, Siddiqi TO, Mahmooduzzafar X. 2012. Effect of gamma radiation on morphological, biochemical, and physiological aspects of plants and plant products. Environ. Rev. 20:17–39.
  • Jansen MA, van den Noort RE, Tan MY, Prinsen E, Lagrimini LM, Thorneley RN. 2001. Phenol-oxidizing peroxidases contribute to the protection of plants from ultraviolet radiation stress. Plant Physiol. 126(3):1012–1023.
  • Jimenez L, Alarcon E, Trevithick-Sutton C, Gandhi N, Scaiano JC. 2011. Effect of gamma-radiation on green onion DNA integrity: role of ascorbic acid and polyphenols against nucleic acid damage. Food Chem. 128:735–741.
  • Kebeish R, Deef HE, El-Bialy N. 2015. Effects of gamma radiation on growth, oxidative stress, antioxidant system, and alliin producing gene transcripts in Allium sativum. Int J Res Stud Biosci. 3(3):161–174.
  • Kiani D, Borzouei A, Ramezanpour S, Soltanloo H, Saadati S. 2022. Application of gamma irradiation on morphological, biochemical, and molecular aspects of wheat (Triticum aestivum L.) under different seed moisture contents. Sci Rep. 12(1):11082.
  • Kim JH, Baek MH, Yeoup Chung B, Wi SG, Kim JS. 2004. Alterations in the photosynthetic pigments and antioxidant machineries of red pepper (Capsicum annuum L.) seedlings from gamma-irradiated seeds. J Plant Biol. 47:314–321.
  • Kim JH, Lee MH, Moon YR, Kim JS, Wi SG, Kim TH, Chung BY. 2009. Characterization of metabolic disturbances closely linked to the delayed senescence of Arabidopsis leaves after gamma-irradiation. Environ Exp Bot. 67(2):363–371.
  • Kiong AL, Lai GA, Hussein S, Harun AR. 2008. Physiological responses of Orthosiphon stamineus plantlets to gamma irradiation. Am-Eurasian J Sustain Agric. 2(2):135–149.
  • Laemmli UK. 1970. Cleavage of structural proteins during the assembly of the head of bacteriophage T4. Nature. 227(5259):680–685.
  • Ling APK, Ung Ying C, Hussein S, Harun AR, Tanaka A, Yoshihiro H. 2013. Morphological and biochemical responses of Oryza sativa L. (cultivar MR219) to ion beam irradiation. J Zhejiang Univ Sci B. 14(12):1132–1143.
  • Majeed A, Muhammad Z, Ullah R, Ali H. 2018. Gamma irradiation I: effect on germination and general growth characteristics of plants–a review. Pak J Bot. 50(6):2449–2453.
  • Marcu D, Cristea V, Daraban L. 2013. Dose-dependent effects of gamma radiation on lettuce (Lactuca sativa var. capitata) seedlings. Int J Radiat Biol. 89(3):219–223.
  • Marinova D, Ribarova F, Atanassova M. 2005. Total phenolic and total flavonoids in Bulgarian fruits and vegetables. J Chem Techn Metall. 40(3):255–260.
  • Matloubi H, Aflaki F, Hadjiezadegan M. 2004. Effect of γ-irradiation on amino acids content of baby food proteins. J Food Compos Anal. 17(2):133–139.
  • Micco D, Arena V, Aronne C. 2014. Anatomical alterations of Phaseolus vulgaris L. mature leaves irradiated with X-rays. Plant Biol. 16(1):187–193.
  • Mohamed EA, Osama E, Manal E, Samah A, Salah G, Hazem Wróbel Jacek KM, Nabil E. 2021. Impact of gamma irradiation pretreatment on biochemical and molecular responses of potato growing under salt stress. Chem Biol Technol Agric. 8:35.
  • Oktay M, Küfrevioǧlu I, Kocaçalışkan I. 1995. Polyphenoloxidase from amasya apple. J Food Sci. 60(3):494–496.
  • Pandey LN, Tiwari MR, Bahadur B, Baskota N, Banjade JN. 2017. Feeding response of tree fodder bhimal (Grewia optiva) on growth performance of castrated male goats. J Nepal Agric Res Council. 3:1–5.
  • Patil AS, Suryavanshi P, Fulzele D. 2018. Evaluation of effect of gamma radiation on total phenolic content, favonoid and antioxidant activity of in vitro callus culture of Artemisia annua. Nat Prod Chem Res. 6:345.
  • Pelcaru CF, Ene M, Petrache AM, Negut DC. 2021. Low doses of gamma irradiation stimulate synthesis of bioactive compounds with antioxidant activity in Fomes fomentarius living mycelium. Appl Sci. 11:4236.
  • Piri I, Babayan M, Tavassoli A, Javaheri M. 2011. The use of gamma irradiation in agriculture. Afr J Microbiolo Res. 5:5806–5811.
  • Preuss SB, Britt AB. 2003. A DNA-damage-induced cell cycle checkpoint in Arabidopsis. Genetics. 164:323–334.
  • Sajilata MG, Singhal RS. 2006. Effect of irradiation and storage on the antioxidative activity of cashew nuts. Radiat Phys Chem. 75(2):297–300.
  • Sham T-T, Yuen AC-Y, Ng Y-F, Chan C-O, Mok DK-W, Chan S-W. 2013. A review of the phytochemistry and pharmacological activities of Raphani Semen. Evid Based Complement Alternat Med. 2013:636194.
  • Shen X, Li X, Li Z, Li J, Duan L, Eneji AE. 2010. Growth, physiological attributes and antioxidant enzyme activities in soybean seedlings treated with or without silicon under UV-B radiation stress. J Agric Crp Sci. 196(6):431–439.
  • Silva AS, Danielowwski R, Braga EJB, Deuner S, Magalhães Junior AM, Peters JA. 2011. Development of rice seedlings grown from pre-hydrated seeds and irradiated with gamma rays. Cienc Agrotec. 35:1093–1100.
  • Singh S, Singh BB. 2015. In vitro evaluation of Dichanthium annulatum (Marvel grass) grass hay diets supplemented with browse foliage. Ind J Anim Sci. 85(12):1348–1353.
  • Singleton YI, Rossi JAJ. 1965. Colorimetry of total phenolics with phophomolybdic-phosphotunstic acid reagents. Am J Enol Vitic. 16:144–158.
  • Stegemann H, Afify AMR, Hussein RF. 1986. Cultivar identification of dates (Phoenix dactylifera) cultivars by protein patterns. Phytochemistry. 26(1):149–153.
  • Taha FS, Mohamed SS. 2004. Effect of different denaturating methods on lipid-protein complex formation. Lebensmittel- Wissenschaft und-Technologie. 37:99–104.
  • Vanhoudt N, Horemans N, Wannijn J, Nauts R, Van Hees M, Vandenhove H. 2014. Primary stress responses in Arabidopsis thaliana exposed to gamma radiation. J Environ Radioact. 129:1–6.
  • Vardhan PV, Shukla LI. 2017. Gamma irradiation of medicinally important plants and the enhancement of secondary metabolite production. Int J Radiat Biol. 93(9):967–979.
  • Vernon LP, Seely GR. 1966. The chlorophylls: physical, chemical and biological properties. 1st ed. New York (NY): Academic Press; p. 696.
  • Wang G, Wu L, Zhang H, Wu W, Zhang M, Li X, Wu H. 2016. Regulation of the phenylpropanoid pathway: a mechanism of selenium tolerance in peanut (Arachis hypogaea L.) seedlings. J Agric Food Chem. 64(18):3626–3635.
  • Wang X, Ma R, Cao Q, Shan Z, Jiao Z. 2018. Enhanced tolerance to salt stress in highland barley seedlings (Hordeum vulgaressp. vulgare) by gamma irradiation pretreatment. Acta Physiol Plant. 40(9):174.
  • Wi SG, Cho EJ, Lee D-S, Lee SJ, Lee YJ, Bae H-J. 2015. Lignocellulose conversion for biofuel: a new pretreatment greatly improves downstream biocatalytic hydrolysis of various lignocellulosic materials. Biotechnol Biofuels. 8:228.
  • Wi SG, Chung BY, Kim JH, Baek MH, Yang DH, Lee JW, Kim JS. 2005. Ultrastructural changes of cell organelles in Arabidopsis stem after gamma irradiation. J Plant Biol. 48(2):195–200.
  • Wi SG, Chung BY, Kim JS, Kim JH, Baek MH, Lee JW, Kim YS. 2007. Effects of gamma irradiation on morphological changes and biological responses in plants. Micron. 38(6):553–564.
  • Zaka R, Chenal C, Misset MT. 2004. Effect of low doses of short-term gamma irradiation on growth and development through two generation of Pisum sativum. Sci Total Environ. 320(2-3):121–129.
  • Zarbakhsh S, Rastegar S. 2019. Influence of postharvest gamma irradiation on the antioxidant system, microbial and shelf life quality of three cultivars of date fruits (Phoenix dactylifera L.). Sci Hort. 247:275–286.

Reprints and Corporate Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

To request a reprint or corporate permissions for this article, please click on the relevant link below:

Academic Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

Obtain permissions instantly via Rightslink by clicking on the button below:

If you are unable to obtain permissions via Rightslink, please complete and submit this Permissions form. For more information, please visit our Permissions help page.