73
Views
1
CrossRef citations to date
0
Altmetric
Original Articles

Stress memory in two generations of Plantago major from radioactive and chemical contaminated areas after the cessation of exposure

ORCID Icon, &
Pages 1228-1238 | Received 05 Apr 2022, Accepted 03 Nov 2022, Published online: 16 Nov 2022

References

  • Adrees M, Ali S, Rizwan M, Ibrahim M, Abbas F, Farid M, Zia-Ur-Rehman M, Irshad MK, Bharwana SA. 2015. The effect of excess copper on growth and physiology of important food crops: a review. Environ Sci Pollut Res. 22(11):8148–8162.
  • Aebi H. 1984. Catalase in vitro. Methods Enzymol. 105:121–126.
  • Antonova EV, Pozolotina VN. 2020. Interannual quality variability in motherwort (Leonurus quinquelobatus) seed progeny under chronic radiation exposure. Russ J Ecol. 51(5):417–429.
  • Antonova EV, Pozolotina VN, Karimullina EM. 2016. Viability of plant seed progeny from the East-Ural Radioactive Trace: radiation and weather conditions. In: Korogodina VL, Mothersill CE, Inge-Vechtomov SG, Seymour CB, editors. Genetics, evolution and radiation: crossing borders, the interdisciplinary legacy of Nikolay W. Timofeeff-Ressovsky. Cham: Springer International Publishing; p. 267–275.
  • Ashapkin VV, Kutueva LI, Aleksandrushkina NI, Vanyushin BF. 2020. Epigenetic mechanisms of plant adaptation to biotic and abiotic stresses. IJMS. 21(20):7457.
  • Bilichak A, Kovalchuk I. 2016. Transgenerational response to stress in plants and its application for breeding. J Exp Bot. 67(7):2081–2092.
  • Boyko A, Kovalchuk I. 2011. Genome instability and epigenetic modification—heritable responses to environmental stress? Curr Opin Plant Biol. 14(3):260–266.
  • Brown J, Alfonso B, Avila R, Beresford N, Copplestone D, Hosseini A. 2016. A new version of the ERICA tool to facilitate impact assessments of radioactivity on wild plants and animals. J Environ Radioact. 153:141–148.
  • Bruce TJA, Matthes MC, Napier JA, Pickett JA. 2007. Stressful “memories” of plants: evidence and possible mechanisms. Plant Sci. 173(6):603–608.
  • Buege JA, Aust SD. 1978. Microsomal lipid peroxidation. Methods Enzymol. 52:302–310.
  • Bychkovskaya I, Gilyano N, Fedortseva R, Bedcher F. 2005. About the peculiar form of radiation induced genome instability. Radiatsionnaia Biol Radioecol. 45(6):688–693.
  • Chernen’kova TV. 2002. Response of forest plants on the industrial contamination.
  • Cong W, Miao Y, Xu L, Zhang Y, Yuan C, Wang J, Zhuang T, Lin X, Jiang L, Wang N, et al. 2019. Transgenerational memory of gene expression changes induced by heavy metal stress in rice (Oryza sativa L.). BMC Plant Biol. 19(1):282.
  • Dazy M, Béraud E, Cotelle S, Grévilliot F, Férard J-F, Masfaraud J-F. 2009. Changes in plant communities along soil pollution gradients: responses of leaf antioxidant enzyme activities and phytochelatin contents. Chemosphere. 77(3):376–383.
  • Demidchik V. 2015. Mechanisms of oxidative stress in plants: from classical chemistry to cell biology. Environ Exp Bot. 109:212–228.
  • Dietz K-J, Baier M, Krämer U. 1999. Free radicals and reactive oxygen species as mediators of heavy metal toxicity in plants BT. In: Prasad MN V, Hagemeyer J, editors. Heavy metal stress in plants: from molecules to ecosystems. Berlin; Heidelberg: Springer Berlin Heidelberg; p. 73–97.
  • Dulya OV, Mikryukov VS. 2016. Genetic variation and selfing rate in Lychnis flos‐cuculi along an industrial pollution gradient. New Phytol. 209(3):1083–1095.
  • Ermakov AI, Arasimovich VV, Yarosh NP, Peruanskiy Y, Lukovnikova GA, Ikonnikova MI. 1987. Methods for plant biochemistry. Leningr Agropromizdat.
  • Esnault M-A, Legue F, Chenal C. 2010. Ionizing radiation: advances in plant response. Environ Exp Bot. 68(3):231–237.
  • Filippov EV, Zhuravskaya AN, Prokopiev IA, Filippova GV, Shein AA, Shashurin MM. 2016. Effect of uranium and thorium radionuclides on biochemical characteristics of Duschekia fruticosa in “soil-plant” system. Radiatsionnaia Biol Radioecol. 56(5):535–541.
  • Gallo-Franco JJ, Sosa CC, Ghneim-Herrera T, Quimbaya M. 2020. Epigenetic control of plant response to heavy metal stress: a new view on aluminum tolerance. Front Plant Sci. 11:602625.
  • Georgieva M, Rashydov NM, Hajduch M. 2017. DNA damage, repair monitoring and epigenetic DNA methylation changes in seedlings of Chernobyl soybeans. DNA Repair. 50:14–21.
  • Geras’kin S, Evseeva T, Oudalova A. 2011. Plants as a tool for the environmental health assessment. In: Encyclopedia of environmental health. London: Elsevier; p. 239–248.
  • Geras’kin S, Vasiliyev D, Makarenko E, Volkova P, Kuzmenkov A. 2017. Influence of long-term chronic exposure and weather conditions on Scots pine populations. Environ Sci Pollut Res Int. 24(12):11240–11253.
  • Geras’kin S, Volkova P, Vasiliyev D, Dikareva N, Oudalova A, Kazakova E, Makarenko E, Duarte G, Kuzmenkov A. 2019. Scots pine as a promising indicator organism for biomonitoring of the polluted environment: a case study on chronically irradiated populations. Mutat Res Genet Toxicol Environ Mutagen. 842:3–13.
  • Giannopolitis CN, Ries SK. 1977. Superoxide dismutases: I. Occurrence in higher plants. Plant Physiol. 59(2):309–314.
  • GOST R 50617-93. n.d. Seeds on the principal forest forming coniferous species. Federal and insurance funds. General specifications.
  • Gudkov SV, Grinberg MA, Sukhov V, Vodeneev V. 2019. Effect of ionizing radiation on physiological and molecular processes in plants. J Environ Radioact. 202:8–24.
  • Hong MJ, Yoon YH, Kim DS, Kim SH, Kang SY, Kim DY, Seo YW, Kim JB. 2018. Phenotypic and molecular responses of wheat (Triticum aestivum L.) to chronic gamma irradiation. J Agric Sci Technol. 20(1):167–178.
  • Horemans N, Spurgeon DJ, Lecomte-Pradines C, Saenen E, Bradshaw C, Oughton D, Rasnaca I, Kamstra JH, Adam-Guillermin C. 2019. Current evidence for a role of epigenetic mechanisms in response to ionizing radiation in an ecotoxicological context. Environ Pollut. 251:469–483.
  • IAEA. 2006. Environmental consequences of the Chernobyl accident and their remediation: twenty years of experience. Vienna: International Atomic Energy Agency.
  • ICRP. 2014. Protection of the environment under different exposure situations. ICRP Publication 124. Ann ICRP. 43(1).
  • Juknys R, Vitkauskaitė G, Račaitė M, Venclovienė J. 2012. The impacts of heavy metals on oxidative stress and growth of spring barley. Cent Eur J Biol. 7(2):299–306.
  • Kaigorodova SY. 2012. Transformation of soil morphology in the zone of impact from the Karabash Copper Smelter. Vestn Orenburg Gos Univ. 6:13–17.
  • Karimullina EM, Mikhailovskaya LN, Antonova EV, Pozolotina VN. 2018. Radionuclide uptake and dose assessment of 14 herbaceous species from the East-Ural radioactive trace area using the ERICA tool. Environ Sci Pollut Res Int. 25(14):13975–13987.
  • Kovalchuk I, Abramov V, Pogribny I, Kovalchuk O. 2004. Molecular aspects of plant adaptation to life in the Chernobyl zone. Plant Physiol. 135(1):357–363.
  • Kozlov M, Zvereva E, Zverev V. 2009. Impacts of point polluters on terrestrial biota: comparative analysis of 18 contaminated areas. Dordrecht: Springer.
  • Kruger NJ. 2002. The Bradford method for protein quantitation. In: Walker JM, editor. The protein protocols handbook. New York, NY: Humana Press; p. 15–21.
  • Mazurik VK, Mikhaylov VF. 2001. Radiation-induced genomic instability: phenomenon, molecular mechanisms, pathogenetic significance. Radiats Biol Radioecol. 41(3):272–289.
  • Medvedeva MY, Bolsunovsky AY. 2018. Types of cytogenetic abnormalities in the apical root meristem of Elodea canadensis from the Yenisei River areas with different types of anthropogenic pollution. Russ J Genet Appl Res. 8(2):115–123.
  • Meyer C, Kostecka AA, Saumitou Laprade P, Créach A, Castric V, Pauwels M, Frérot H. ‐ 2010. Variability of zinc tolerance among and within populations of the pseudometallophyte species Arabidopsis halleri and possible role of directional selection. New Phytol. 185(1):130–142.
  • Miao SL, Bazzaz FA, Primack RB. 1991. Persistence of maternal nutrient effects in Plantago Major: the third generation. Ecology. 72(5):1634–1642.
  • Molchanova I, Mikhailovskaya L, Antonov K, Pozolotina V, Antonova E. 2014. Current assessment of integrated content of long-lived radionuclides in soils of the head part of the East Ural Radioactive Trace. J Environ Radioact. 138:238–248.
  • Møller AP, Mousseau TA. 2015. Strong effects of ionizing radiation from Chernobyl on mutation rates. Sci Rep. 5(1):8363–8366.
  • Morozova VS, Kashparov VA, Levchuk SY, Umanska AO, Bishchuk YV, Otreshko LM. 2016. The functional state of cellular antioxidant defence system of shoots of Arabidopsis thaliana exposed to the chronic ionizing radiation in the Chоrnobyl exclusion zone. Nucl. Phys. At. Energy. 17(3):302–307.
  • Mothersill C, Seymour C. 2022. Radiation hormesis and dose response: are our current concepts meaningful or useful? Curr Opin Toxicol. 30:100335.
  • Nagajyoti PC, Lee KD, Sreekanth TVM. 2010. Heavy metals, occurrence and toxicity for plants: a review. Environ Chem Lett. 8(3):199–216.
  • Nikipelov B, Mikerin Y, Romanov G, Spirin D, Kholina Y, Buldakov L. 1990. The radiation accident in the Southern Urals in 1957 and the cleanup measures implemented. In: Recovery operations in the event of a nuclear accident or radiological emergency. Vienna: International atomic energy agency; p. 373–403.
  • Potters G, Pasternak TP, Guisez Y, Palme KJ, Jansen MAK. 2007. Stress-induced morphogenic responses: growing out of trouble? Trends Plant Sci. 12(3):98–105.
  • Pozolotina VN, Antonova EV. 2017. Temporal variability of the quality of Taraxacum officinale seed progeny from the East-Ural Radioactive Trace: is there an interaction between low level radiation and weather conditions? Int J Radiat Biol. 93(3):330–339.
  • Pozolotina VN, Antonova EV, Bezel VS. 2012. Comparison of remote consequences in Taraxacum officinale seed progeny collected in radioactively or chemically contaminated areas. Ecotoxicology. 21(7):1979–1988.
  • Pozolotina VN, Antonova EV, Shimalina NS. 2016. Adaptation of greater plantain, Plantago major L., to long-term radiation and chemical exposure. Russ J Ecol. 47(1):1–10.
  • Pozolotina VN, Molchanova IV, Mikhaylovskaya LN, Antonova EV, Karavaeva EN. 2012. The current state of terrestrial ecosystems in the Eastern Ural Radioactive Trace. In: Guillin Gerada J, editor. Radiat expo sources, impacts reduct strateg. New York, NY: Nova Science Publishers, Inc.; p. 113–140.
  • Pradedova EV, Isheeva OD, Salyaev RK. 2011. Classification of the antioxidant defense system as the ground for reasonable organization of experimental studies of the oxidative stress in plants. Russ J Plant Physiol. 58(2):210–217.
  • Rybak AV, Belykh ES, Maystrenko TA, Velegzhaninov IO. 2018. Microsatellite polymorphism of Trifolium pratense population at the conditions of radioactive and chemical contamination of soil (Komi Republic, Russia). Environ Sci Pollut Res Int. 25(34):34701–34710.
  • Samuelsen AB. 2000. The traditional uses, chemical constituents and biological activities of Plantago major L. A review. J Ethnopharmacol. 71(1–2):1–21.
  • Savinov AB, Kurganova LN, Shekunov YI. 2007. Lipid peroxidation rates in Taraxacum officinale Wigg. and Vicia cracca L. from biotopes with different levels of soil pollution with heavy metals. Russ J Ecol. 38(3):174–180.
  • Seregin IV, Ivanov VB. 2001. Physiological aspects of cadmium and lead toxic effects on higher plants. Russ J Plant Physiol. 48(4):523–544.
  • Seregin IV, Kozhevnikova AD, Gracheva VV, Bystrova EI, Ivanov VB. 2011. Tissue zinc distribution in maize seedling roots and its action on growth. Russ J Plant Physiol. 58(1):109–117.
  • Sewelam N, Kazan K, Schenk PM. 2016. Global plant stress signaling: reactive oxygen species at the cross-road. Front Plant Sci. 7:187.
  • Sharma P, Jha AB, Dubey RS, Pessarakli M. 2012. Reactive oxygen species, oxidative damage, and antioxidative defense mechanism in plants under stressful conditions. J Bot. 2012:217037.
  • Shimalina NS, Antonova EV, Pozolotina VN. 2020. Genetic polymorphism of Plantago major populations from the radioactive and chemical polluted areas. Environ Pollut. 257:113607.
  • Shimalina NS, Orekhova NA, Pozolotina VN. 2018. Features of prooxidant and antioxidant systems of greater plantain Plantago major growing for a long time under conditions of radioactive contamination. Russ J Ecol. 49(5):375–383.
  • Shimalina NS, Pozolotina VN, Orekhova NA, Antonova EV. 2017. Assessment of biological effects in Plantago major L. seed progeny in the zone of impact from a copper smelter. Russ J Ecol. 48(6):513–523.
  • Smirnov EG. 1993. Natural conditions and vegetation of the East Ural Radioactive Trace. In: Sokolov VE, Krivolutsky DA, editors. Ecol after-effects radioact contam South Ural. Moscow: Nauka; p. 79–84.
  • Smorkalov IA, Vorobeichik EL. 2011. Soil respiration of forest ecosystems in gradients of environmental pollution by emissions from copper smelters. Russ J Ecol. 42(6):464–470.
  • Squirrell J, Wolff K. 2001. Isolation of polymorphic microsatellite loci in Plantago major and P. intermedia. Mol Ecol Notes. 1(3):179–181.
  • StatSoft, Inc. 2011. STATISTICA (data analysis software system). Version 10: new features and enhancements edn. Tulsa (OK): StatSoft, Inc.
  • Steinhauser G, Brandl A, Johnson TE. 2014. Comparison of the Chernobyl and Fukushima nuclear accidents: a review of the environmental impacts. Sci Total Environ. 470–471:800–817.
  • Stepanov AM, Kabirov RR, Chernen’kova TV, Sadykov OF, Khanislamova GM, Nekrasova LS, Butusov OB, Baltsevich LA. 1992. Integrated ecological assessment of technogenic impact on ecosystems of Southern Taiga. Moscow: CEFP.
  • Titov AF, Kaznina NM, Talanova VV. 2014. Heavy metals and plants. Petrozavodsk: Karelian Scientific Center of RAS.
  • US DoE. 2002. A graded approach for evaluation radiation doses to aquatic and terrestrial biota. Technical Standard DoE-STD-1153-2002. Washington, DC, USA.
  • van de Walle J, Horemans N, Saenen E, Van Hees M, Wannijn J, Nauts R, Van Gompel A, Vangronsveld J, Vandenhove H, Cuypers A. 2016. Arabidopsis plants exposed to gamma radiation in two successive generations show a different oxidative stress response. J Environ Radioact. 165:270–279.
  • van Dijk H, van Delden W. 1981. Genetic variability in Plantago species in relation to their ecology. Theor Appl Genet. 60(5):285–290.
  • Vanhoudt N, Vandenhove H, Real A, Bradshaw C, Stark K. 2012. A review of multiple stressor studies that include ionising radiation. Environ Pollut. 168:177–192.
  • Verhoeven KJF, Van Gurp TP. 2012. Transgenerational effects of stress exposure on offspring phenotypes in apomictic dandelion. PLOS One. 7(6):e38605.
  • Volkova PY, Bondarenko EV, Kazakova EA. 2022. Radiation hormesis in plants. Curr Opin Toxicol. 30:100334.
  • Volkova PY, Duarte GT, Kazakova EA, Makarenko ES, Bitarishvili SV, Bondarenko VS, Perevolotskii AN, Geras’kin SA, Garbaruk DK, Turchin LM. 2021. Radiosensitivity of herbaceous plants to chronic radiation exposure: field study in the Chernobyl exclusion zone. Sci Total Environ. 777:146206.
  • Volkova PY, Geras’kin SA, Horemans N, Makarenko ES, Saenen E, Duarte GT, Nauts R, Bondarenko VS, Jacobs G, Voorspoels S, et al. 2018. Chronic radiation exposure as an ecological factor: hypermethylation and genetic differentiation in irradiated Scots pine populations. Environ Pollut. 232:105–112.
  • Volkova PY, Geras’kin SA, Kazakova EA. 2017. Radiation exposure in the remote period after the Chernobyl accident caused oxidative stress and genetic effects in Scots pine populations. Sci Rep. 7(1):43009–43009.
  • Vorobeichik EL, Kozlov MV. 2012. Impact of point polluters on terrestrial ecosystems: methodology of research, experimental design, and typical errors. Russ J Ecol. 43(2):89–96.
  • Yadav V, Arif N, Kováč J, Singh VP, Tripathi DK, Chauhan DK, Vaculík M. 2021. Structural modifications of plant organs and tissues by metals and metalloids in the environment: a review. Plant Physiol Biochem. 159:100–112.
  • Zaka R, Vandecasteele CM, Misset MT. 2002. Effects of low chronic doses of ionizing radiation on antioxidant enzymes and G6PDH activities in Stipa capillata (Poaceae). J Exp Bot. 53(376):1979–1987.
  • Zhukova L. 1997. Ontogenetic atlas of medicinal plants. Yoshkar-Ola: MarSU.
  • Zvereva EL, Roitto M, Kozlov MV. 2010. Growth and reproduction of vascular plants in polluted environments: a synthesis of existing knowledge. Environ Rev. 18:355–367.

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.