75
Views
0
CrossRef citations to date
0
Altmetric
Original Articles

Assessment of radiosensitivity and enhancing key steviol glycosides in Stevia rebaudiana Bertoni through gamma radiation

, ORCID Icon, ORCID Icon, , ORCID Icon, , ORCID Icon, & ORCID Icon show all
Pages 1104-1115 | Received 22 Feb 2024, Accepted 17 May 2024, Published online: 13 Jun 2024

References

  • Abbott WS. 1925. A method of computing the effectiveness of an insecticide. J Econ Entomol. 18(2):265–267. doi:10.1093/jee/18.2.265a
  • Abdul-Baki AA, Anderson JD. 1973. Vigor determination in soybean seed by multiple criteria. Crop Sci. 13(6):630–633. doi:10.2135/cropsci1973.0011183X001300060013x
  • Abdullah S, Mohamad Fauzi NY, Khalid AK, Osman M. 2021. Effect of gamma rays on seed germination, survival rate and morphology of Stevia rebaudiana Hybrid. Mal J Fund Appl Sci. 17(5):543–549. doi:10.11113/mjfas.v17n5.2157
  • Afandi A, Sarijan S, Kumar Shaha R. 2021. Optimization of Rebaudioside A extraction from Stevia rebaudiana (Bertoni) and quantification by high performance liquid chromatography analysis. JTRSS. 1(1):62–70. doi:10.47253/jtrss.v1i1.671
  • Ajami M, Seyfi M, Hosseini FA, Naseri P, Velayati A, Mahmoudnia F, Zahedirad M, Hajifaraji M. 2020. Effects of stevia on glycemic and lipid profile of type 2 diabetic patients: A randomized controlled trial. Avicenna J Phytomed. 10(2):118–127.
  • Brandle JE, Telmer PG. 2007. Steviol glycoside biosynthesis. Phytochemistry. 68(14):1855–1863. doi:10.1016/j.phytochem.2007.02.010
  • Chauhan A, Kumar V, Iyer PR, Vishwakarma G, Nair JP, Surendran P, Sparrow H, Gupta AK, Shitre AS, Shinde AK, et al. 2019. Effect of proton beam irradiation on survival and seedling growth parameters of Indian rice (Oryza sativa L.) variety ‘Indira Barani Dhan 1’. Electron J Plan Breed. 10(2):490–499. doi:10.5958/0975-928X.2019.00062.0
  • Cosson P, Hastoy C, Errazzu LE, Budeguer CJ, Boutié P, Rolin D, Schurdi-Levraud V. 2019. Genetic diversity and population structure of the sweet leaf herb, Stevia rebaudiana B., cultivated and landraces germplasm assessed by EST-SSRs genotyping and steviol glycosides phenotyping. BMC Plant Biol. 19(1):436. doi:10.1186/s12870-019-2061-y
  • Doležel J, Bartoš J, Voglmayr H, Greilhuber J. 2003. Nuclear DNA content and genome size of trout and human. Cytometry. 51(2):127–128.
  • Doležel J, Sgorbati S, Lucretti S. 1992. Comparison of three DNA fluorochromes for flow cytometric estimation of nuclear-DNA content in plants. Physiol Plant. 85:625–631. doi:10.1111/j.1399-3054.1992.tb04764.x
  • Dolezel J. 2005. Plant DNA flow cytometry and estimation of nuclear genome size. Ann Bot. 95(1):99–110. doi:10.1093/aob/mci005
  • DuBois GE. 2000. Sweeteners: non-nutritive. In: Francis FJ, ed. Encyclopedia of food science and technology. 2nd ed. New York: John Wiley & Sons, Inc. vol. 4; p. 2245–65.
  • Duncan DB. 1955. Multiple range and multiple F tests. Biometrics. 11(1):1–42. doi:10.2307/3001478
  • Finney DJ. 1971. Probit analysis. Cambridge, England: Cambridge University Press.
  • Finney DJ. 1978. Statistical method in biological assay. London: Charles Griffin & Co.; p. 508.
  • Geeta K, Marker S, Jaya R. 2014. Induced mutagenesis for study of genetic variability in wheat (Triticum aestivum L.). Int J Agri Innov Res. 3(2):397–400.
  • Ghasemi-Soloklui AA, Kordrostami M, Karimi R. 2023. Determination of optimum dose based of biological responses of lethal dose (LD25, 50, 75) and growth reduction (GR25, 50, 75) in ‘Yaghouti’grape due to gamma radiation. Sci Rep. 13(1):2713. doi:10.1038/s41598-023-29896-z
  • Gurushidze M, Fuchs J, Blattner FR. 2012. The evolution of genome size variation in drumstick onions (Allium subgenus Melanocrommyum). Syst Botany 37(1):96–104. doi:10.1600/036364412X616675
  • Hearn L, Subedi P. 2009. Determining levels of steviol glycosides in the leaves of Stevia rebaudiana by near ınfrared reflectance spectroscopy. J Food Compos Anal. 22(2):165–168. doi:10.1016/j.jfca.2008.10.008
  • Hong MJ, Kim DY, Jo YD, Choi HI, Ahn JW, Kwon SJ, Kim SH, Seo YW, Kim JB. 2022. Biological effect of gamma rays according to ­exposure time on germination and plant growth in wheat. Appl Sci. 12(6):3208. doi:10.3390/app12063208
  • Hossain MA, Al Harthy S, Al Touby, SS. 2022. Review on phytochemicals and biological activities of natural sweeteners Stevia rebaudiana Bertoni. Int J Secondary Metabolite. 9(4):415–425. doi:10.21448/ijsm.1122618
  • IAEA. 2023. International atomic energy agency (mutant varieties database). https://nucleus.iaea.org/.
  • Jeppesen PB, Gregersen S, Rolfsen SED, Jepsen M, Colombo M, Agger A, Xiao J, Kruhøffer M, Orntoft T, Hermansen K. 2003. Antihyperglycemic and blood pressure-reducing effects of stevioside in the diabetic Goto-Kakizaki rat. Metabolism. 52(3):372–378. doi:10.1053/meta.2003.50058
  • Khalil SA, Ahmad N, Zamir R. 2015. Gamma radiation induced variation in growth characteristics and production of bioactive compounds during callogenesis in Stevia rebaudiana (Bert.). New Negat Plant Sci. 1–2:1–5. doi:10.1016/j.neps.2015.06.002
  • Khalil SA, Zamir R, Ahmad N. 2014. Effect of different propagation techniques and gamma irradiation on major steviol glycoside’s content in Stevia rebaudiana. J Animal & Plant Sci. 24(6):1743–1751.
  • Kharkwal Mc, Shu QY. 2009. The role of induced mutations in world food security. In: Induced plant mutations in the genomics era. Rome. Citeseer: Food and Agriculture Organization of the United Nations; p. 33–38.
  • Khursheed S, Raina A, Khan S. 2016. Improvement of yield and mineral content in two cultivars of Vicia faba L. through physical and chemical mutagenesis and their character association analysis. ACRI. 4(1):1–7. doi:10.9734/ACRI/2016/24802
  • Kolb N, Herrera JL, Ferreyra DJ, Uliana RF. 2001. Analysis of sweet diterpene glycosides from Stevia rebaudiana: improved HPLC method. J Agric Food Chem. 49(10):4538–4541. doi:10.1021/jf010475p
  • Laha S, Subrahmanyeswari T, Verma SK, Kamble SN, Singh S, Bhattacharyya S, Gantait S. 2023. Biogenic synthesis, characterization and application of silver nanoparticles as biostimulator for growth and rebaudioside-A production in genetically stable stevia (Stevia rebaudiana Bert.) under in vitro conditions. Ind Crops Prod. 197:116520. doi:10.1016/j.indcrop.2023.116520
  • Laskar RA, Laskar AA, Raina A, Khan S, Younus H. 2018. Induced mutation analysis with biochemical and molecular characterization of high yielding lentil mutant lines. Int J Biol Macromol. 109:167–179. doi:10.1016/j.ijbiomac.2017.12.067
  • Lemus-Mondaca R, Vega-Gálvez A, Zura-Bravo L, Ah-Hen K. 2012. Stevia rebaudiana Bertoni, source of a high-potency natural sweetener: A comprehensive review on the biochemical, nutritional and functional ­aspects. Food Chem. 132(3):1121–1132. doi:10.1016/j.foodchem.2011.11.140
  • Loureiro J, Rodriguez E, Dolezel J, Santos C. 2007. Two new nuclear isolation buffers for plant DNA flow cytometry: a test with 37 species. Ann Bot. 100(4):875–888. doi:10.1093/aob/mcm152
  • Manova V, Gruszka D. 2015. DNA damage and repair in plants–from models to crops. Front Plant Sci. 6:885. doi:10.3389/fpls.2015.00885
  • Ndou V, Shimelis H, Odindo A, Modi AT. 2013. Response of selected wheat genotypes to ethylmethanesulphonate concentration, treatment temperature and duration. Scientific Research and Essays. 8(4):189–196.
  • Obae Sg, West TP. 2012. Nuclear DNA content and genome size of American ginseng. J Med Plants Res. 6(32):4719–4723.
  • Panse Vg, Sukhatme PV. 1961. Statistical methods for agricultural workers. 2nd ed. New Delhi: Indian Council of Agricultural Research; p. 361.
  • Pereda-Miranda R, Hernández-Carlos B. 2002. HPLC isolation and structural elucidation of diastereomeric niloyl ester tetrasaccharides from Mexican scammony root. Tetrahedron. 58(16):3145–3154. doi:10.1016/S0040-4020(02)00284-3
  • Raina A, Laskar R, Khursheed S, Amin R, Tantray Y, Parveen K, Khan S. 2016. Role of mutation breeding in crop improvement-past, present and future. ARJA. 2(2):1–13. doi:10.9734/ARJA/2016/29334
  • Rana A, Priyanka RV, Anubhav S, Gupta C. 2022. Fixation of lethal dose and study of physical and chemical effect of mutagenesis on germination, pollen sterility and plant survival in M1 generation of wheat (Triticum aestivum L.). Biol Forum. 14(1):17–24.
  • Rana A, Rana V, Bakshi S, Kumar Sood V, Priyanka, Anuradha. 2024a. Deciphering induced variability, character association and multivariate analysis utilizing gamma rays and ethyl methanesulfonate in bread wheat (Triticum aestivum L.) genotypes with differential grain texture. Int J Radiation Biol. 100(4):627–649. doi:10.1080/09553002.2024.2304823
  • Rana A, Rana V, Kumar Sood V, Bakshi S, Priyanka. 2024b. Mutagenic sensitivity, effectiveness and efficiency of gamma rays and ethyl methane sulphonate on soft and semi-hard bread wheat (Triticum aestivum L.) varieties in the north-western Himalayan climate. Int J Radiat Biol. 100(2):296–315. doi:10.1080/09553002.2023.2261527
  • Serfaty M, Ibdah M, Fischer R, Chaimovitsh D, Saranga Y, Dudai N. 2013. Dynamics of yield components and stevioside production in Stevia rebaudiana grown under different planting times, plant stands and harvest regime. Industr Crops and Prod. 50:731–736. doi:10.1016/j.indcrop.2013.08.063
  • Sharma RD, Mishra MN, Kumar A. 2015. Induced mutagenesis in wheat variety PBW-154. J Biotechnol Crop Sci. 4(5):22–26.
  • Singh R, Kumar G. 2020. Ionizing radiation mediated effect on morphological, biochemical and microsporogenesis behavior of Artemisia annua L. JEB. 41(5):1046–1053. doi:10.22438/jeb/41/5/MRN-1246
  • Subrahmanyeswari T, Gantait S, Kamble SN, Singh S, Bhattacharyya S. 2023. Radio-sensitivity assessment of in vitro tissues of stevia (Stevia rebaudiana Bert.) for induced mutagenesis. Sugar Tech 1-1. 25(6):1520–1530. doi:10.1007/s12355-023-01305-9
  • Suprasanna P, Mirajkar SJ, Bhagwat SG. 2015. Induced mutations and crop improvement. Plant Biol Biotechnol. 12:593–617.
  • Tavarini S, Angelini LG. 2013. Stevia rebaudiana Bertoni as a source of bioactive compounds: the effect of harvest time, experimental site and crop age on steviol glycoside content and antioxidant properties. J Sci Food Agric. 93(9):2121–2129. doi:10.1002/jsfa.6016
  • Wang Y, Luo X, Chen L, Mustapha AT, Yu X, Zhou C, Okonkwo CE. 2023. Natural and low-caloric rebaudioside A as a substitute for dietary sugars: A comprehensive review. Compr Rev Food Sci Food Saf. 22(1):615–642. doi:10.1111/1541-4337.13084
  • Wani MR, Khan S, Kozgar MI. 2011. Induced chlorophyll mutations. I. Mutagenic effectiveness and efficiency of EMS, HZ and SA in mungbean. Front Agric China. 5(4):514–518. doi:10.1007/s11703-011-1126-y
  • Yadav AK, Singh S, Bhardwaj G. 2014. Nuclear DNA content and genome size estimation of Stevia rebaudiana using flow cytometry. Minerva Biotechnol. 26(3):143–148.
  • Yamaguchi H, Shimizu A, Degi K, Morishita T. 2008. Effects of dose and dose rate of gamma ray irradiation on mutation induction and nuclear DNA content in chrysanthemum. Breed Sci. 58(3):331–335. doi:10.1270/jsbbs.58.331

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.