Translocation and accumulation of heavy metals in Ocimum basilicum L. plants grown in a mining-contaminated soil

Cristina Dinu1,2, Gabriela Geanina Vasile1, Mihaela Buleandră3, Dana Elena Popa3, Ștefania Gheorghe1, Eleonora‐Mihaela Ungureanu2
1National Research and Development Institute for Industrial Ecology ECOIND Bucharest, Bucharest, Romania
2Faculty of Applied Chemistry and Materials Science, University POLITEHNICA of Bucharest, Bucharest, Romania
3Faculty of Chemistry, Department of Analytical Chemistry, University of Bucharest, Bucharest, Romania

Tóm tắt

Từ khóa


Tài liệu tham khảo

Adamczyk-Szabela D, Romanowska-Duda Z, Lisowska K, Wolf WM (2017) Heavy metal uptake by herbs. V. Metal accumulation and physiological effects induced by thiuram in Ocimum basilicum L. Water Air Soil Pollut 228:334

Adeyolanu OD, Kadiri OJ, Are KS, Oluwatosin GA, Moral TM (2016) Lead and cadmium contents in a medicinal plant/spice grown in an urban city of Nigeria. Cogent Food Agric 2:1136016. https://doi.org/10.1080/23311932.2015.1136016

Ahmad MS, Ashraf M (2011) Essential roles and hazardous effects of nickel in plants. Rev Environ Contam Toxicol 214:125–167

Akoumianaki-Ioannidou A, Papadimitriou K, Pantelis B, Moustakas NK (2015) The effects of Cd and Zn interactions on the concentration of Cd and Zn in sweet bush basil (Ocimum basilicum L.) and peppermint (Mentha piperita L.). Fresenius Environ Bull 24:77–83

Asgari Lajayer B, Ghorbanpour M, Nikabadi S (2017) Heavy metals in contaminated environment: destiny of secondary metabolite biosynthesis, oxidative status and phytoextraction in medicinal plants. Ecotox Environ Safe 145:377–390

Boechat CL, Carlos FS, Gianello C, de Oliveira Camargo FA (2016) Heavy metals and nutrients uptake by medicinal plants cultivated on multi-metal contaminated soil samples from an abandoned gold ore processing site. Water Air Soil Pollut 227:392

Boggia R, Zunin P, Hysenaj V, Bottino A, Comite A (2015) Dehydration of basil leaves and impact of processing composition. In: Preedy V (ed) Processing and impact on active components in food. Academic Press, San Diego, pp 645–653

Brust GE (2019) Management strategies for organic vegetable fertility. In: Biswas D, Micallef SA (eds) Safety and practice for organic food. Academic Press, London, pp 193–212

Chaiyarat R, Suebsima R, Putwattana N, Kruatrachue M, Pokethitiyook P (2011) Effects of soil amendments on growth and metal uptake by Ocimum gratissimum grown in Cd/Zn-contaminated soil. Water Air Soil Pollut 214:383–392

Chand S, Singh S, Singh VK, Patra DD (2015) Utilization of heavy metal-rich tannery sludge for sweet basil (Ocimum basilicum L.) cultivation. Environ Sci Pollut Res 22:7470–7475

Dinu C, Ungureanu EM, Vasile GG, Kim L, Ionescu I, Ene C, Simion M (2018) Soil and vegetation pollution from an abandoned mining area situated in Hunedoara County, Romania. Rev Chim (Bucharest) 69:14–20

European Commission (EC) (2008) Regulation No. 629/2008 amending Regulation No. 1881/2006 of 19 December 2006 setting maximum levels for certain contaminants in foodstuffs. Off J L 173(51):6–9

Gajic G, Djurdjevic L, Kostic O, Jaric S, Mitrovic M, Pavlovic P (2018) Ecological potential of plants for phytoremediation and ecorestoration of fly ash deposits and mine wastes. Front Environ Sci 6:1–24

Ghazaryan K, Movsesyan H, Ghazaryan N, Watts BS (2019) Copper phytoremediation potential of wild plant species growing in the mine polluted areas of Armenia. Environ Pollut 249:491–501

Hall JL (2002) Cellular mechanisms for heavy metal detoxification and tolerance. J Exp Bot 53:1–11

ISO 11464 (2006) Soil quality. Pretreatment of samples for physico-chemical analysis. International Organization for Standardization, Geneva

ISO 11466 (1995) Soil quality, Extraction of trace elements soluble in aqua regia. International Organization for Standardization, Geneva

Jena V, Gupta S (2012) Study of heavy metal distribution in medicinal plant basil. J Environ Anal Toxicol 2:1–3

Kabata-Pendias A (2011) Trace elements in soil and plants, 4th edn. CRC Press, Boca Raton

Kastori R, Petrovic N, Arseniejevic-Maksimovic I (1997) Heavy metals and plants. In: Kastori R (ed) Heavy metals in the environment. Institute of Field and Vegetable Crops, Novi Sad, pp 196–257

Khair-ul-Bariyah S, Ahmed D, Ikram M (2012) Ocimum Basilicum: a review on phytochemical and pharmacological studies. Pak J Chem 2:78–85

Khare CP (ed) (2004) Indian herbal remedies: rational western therapy, ayurvedic and other traditional usage, botany. Springer-Verlag, Berlin, pp 333–334

Kisku GC, Barman SC, Bhargava SK (2000) Contamination of soil and plants with potentially toxic elements irrigated with mixed industrial effluent and its impact on the environment. Water Air Soil Pollut 120:121–137

Kloke A, Sauerbeck DR, Vetter H (1984) The contamination of plants and soil with heavy metals and the transport of metals in terrestrial food chains. In: Nriagu JO (ed) Changing metal cycles and human health. Springer-Verlag, Berlin, pp 131–141

Kulhari A, Sheorayan A, Bajar S, Sarkar S, Chaudhury A, Kalia RK (2013) Investigation of heavy metals in frequently utilized medicinal plants collected from environmentally diverse locations of north western India. SpringerPlus 2:676. https://doi.org/10.1186/2193-1801-2-676

Kumar V, Sharma A, Dhunna G, Chawla A, Bhardwaj R, Thukra AK (2017) A tabulated review on distribution of heavy metals in various plants. Environ Sci Pollut Res 24:2210–2260

Lajayer HA, Savaghebi G, Hadian J, Hatami M, Pezhmanmehr M (2017) Comparison of copper and zinc effects on growth, micro- and macronutrients status and essential oil constituents in pennyroyal (Mentha pulegium L.). Braz J Bot 40:379–388

Li X, Zhou Q, Sun X, Ren W (2016) Effects of cadmium on uptake and translocation of nutrient elements in different welsh onion (Allium fistulosum L.) cultivars. Food Chem 194:101–110

Maharia RS, Dutta RK, Acharya R, Reddy AVR (2010) Heavy metal bioaccumulation in selected medicinal plants collected from Khetri copper mines and comparison with those collected from fertile soil in Haridwar, India. J Environ Sci Health B 45:174–181

Maleki M, Ghorbanpour M, Kariman K (2017) Physiological and antioxidative responses of medicinal plants exposed to heavy metals stress. Plant Gene 11:247–254

MAPPM (1997) Ordin 756 al Ministerului Apelor, Padurilor si Protectiei Mediului (MAPPM) pentru aprobarea Reglementarii privind evaluarea poluarii mediului, M. Of. Romania 303 bis http://biosol.ro/wp-content/uploads/linkuri/ord-756-din-03-11-1997-pentru-aprobarea-Reglementarii-privind-evaluarea-poluarii-mediului.pdf. Accessed July 2019

Masarovicova E, Kralova K, Kummerova M (2010) Principles of classification of medicinal plants as hyper accumulators or excluders. Acta Physiol Plant 32:823–829

Meychik NR, Nikolaeva YI, Komarynets OV, Ermakov IP (2011) Barrier function of the cell wall during uptake of nickel ions. Russ J Plant Physiol 58:409–414

Milestone (2019) Milestone methods for ETHOS Digestion. https://www.milestonesrl.com/resources/methods/ methods-ethos-digestion, accessed Nov 2019

Misra SG, Mani D (1991) Soil pollution. Ashish Publishing House, New Delhi

Montiel-Rozas MM, Madejón E, Madejón P (2015) Evaluation of phytostabilizer ability of three ruderal plants in mining soils restored by application of organic amendments. Ecol Eng 83:431–436

Nath K, Singh D, Shyam S, Sharma YK (2009) Phytotoxic effects of chromium and tannery effluent on growth and metabolism of Phaseolus mungo Roxb. J Environ Biol 30:227–234

Nekrasova GF, Ushakova OS, Ermakov AE, Uimin NA, Byzov IV (2011) Effects of copper(II) ions and copper oxide nanoparticles on Elodea densa Planch. Russ J Ecol 6:458–463

Okedeyi OO, Dube S, Awofolu OR, Nindi MM (2014) Assessing the enrichment of heavy metals in surface soil and plant (Digitaria eriantha) around coal-fired power plants in South Africa. Environ Sci Pollut Res 21:4686–4696

Olowoyo JO, van Heerden E, Fischer JL, Baker C (2010) Trace metals in soil and leaves of Jacaranda mimosifolia in Tshwane area, South Africa. Atmos Environ 44:1826–1830

Osmolovskaya N, Vu DV, Kuchaeva L (2018) The role of organic acids in heavy metal tolerance in plants. Biol Commun 63:9–16

Ozyigit II, Yalcin B, Turan S, Saracoglu IA, Karadeniz S, Yalcin IE, Demir G (2018) Investigation of heavy metal level and mineral nutrients status in widely used medicinal plants’ leaves in Turkey: insights into health implications. Biol Trace Elem Res 182:387–406

Pandey B, Agrawal M, Singh S (2014) Coal mining activities change plant community structure due to air pollution and soil degradation. Ecotoxicology 23:1474–1483

Pandey J, Verma RK, Singh S (2019) Suitability of aromatic plants for phytoremediation of heavy metal contaminated areas: a review. Int J Phytorem 21:405–418

Patel A, Pandey V, Patra DD (2015) Influence of tannery sludge on oil yield, metal uptake and antioxidant activities of Ocimum basilicum L. grown in two different soils. Ecol Eng 83:422–430

Prapagdee B, Khonsue N (2015) Bacterial-assisted cadmium phytoremediation by Ocimum gratissimum L. in polluted agricultural soil: a field trail experiment. Int J Environ Sci Technol 12:3843–3852

Prasad A, Singh AK, Chand S, Chanotiya CS, Patra DD (2010) Effect of chromium and lead on yield, chemical composition of essential oil, and accumulation of heavy metals of mint species. Commun Soil Sci Plant Anal 41:2170–2186

Prasad A, Kumar S, Khaliq A, Pandey A (2011) Heavy metals and arbuscular mycorrhizal (AM) fungi can alter the yield and chemical composition of volatile oil of sweet basil (Ocimum basilicum L.). Biol Fertil Soils 47:853–861

Prokop’ev IA, Filippova GV, Shein AA, Gabyshev DV (2014) Impact of urban anthropogenic pollution on seed production, morphological and biochemical characteristics of chamomile, Matricaria chamomila L. Russ J Ecol 45:18–23

Purakayastha TJ, Chhonkar PK (2010) Phytoremediation of heavy metal contaminated soils. In: Sherameti I, Varma A (eds) Soil heavy metals. Springer, Berlin, pp 389–429

Rai V, Vajpayee P, Singh SN, Mehrotra S (2004) Effect of chromium accumulation on photosynthetic pigments, oxidative stress defense system, nitrate reduction, proline level and eugenol content of Ocimum tenuiflorum L. Plant Sci 167:1159–1169

Rizwan M, Ali S, Rehman MZU, Maqbool A (2019) A critical review on the effects of zinc at toxic levels of cadmium in plants. Environ Sci Pollut Res Int 26:6279–6289

Rodríguez-Bocanegra J, Roca N, Febrero A, Bort J (2018) Assessment of heavy metal tolerance in two plant species growing in experimental disturbed polluted urban soil. J Soils Sediments 18:2305–2317

Shen ZJ, Xu DC, Chen YS, Zhang Z (2017) Heavy metals translocation and accumulation from the rhizosphere soils to edible parts of medicinal plants Fengdan (Peonia ostia) grown on a metal mining area, China. Ecotoxicol Environ Saf 143:19–37

Singh R, Singh DP, Kumar N, Bhargava SK, Barman SC (2010) Accumulation and translocation of heavy metals in soil and plants from fly ash contaminated area. J Environ Biol 31:421–430

Singh HP, Mahajan P, Kaur S, Batish DR, Kohli RK (2013) Chromium toxicity and tolerance in plants. Environ Chem Lett 11:229–254

Singh S, Parihar P, Singh R, Singh VP, Prasad SM (2016) Heavy metal tolerance in plants: role of transcriptomics, proteomics, metabolomics, and ionomics. Front Plant Sci 6:1–36

Stancheva I, Geneva M, Mrakovska Y, Tzvetkova N, Mitova I, Todorova M, Petrov P (2014) A comparative study on plant morphology, gas exchange parameters, and antioxidant response of Ocimum basilicum L. and Origanum vulgare L. grown on industrial polluted soil. Turk J Biol 38:89–102

Stanojkovic-Sebic A, Pivic R, Josic D, Dinic Z, Stanojkovic A (2015) Heavy metals content in selected medicinal plants commonly used as components for herbal formulations. J Agric Sci 21:317–325

Steinhauser G, Adlassnig W, Lendl T, Peroutka M, Weidinger M, Lichtscheidl IK, Bichler M (2009) Metalloid contaminated microhabitats and their biodiversity at a former antimony mining site in Schlaining, Austria. Open Environ Sci 3:26–41

Stoica E, Rauta C, Florea N (1986) Analytical methods for soil quality. ICPA, Bucharest, pp 107–115

Vasile GG, Popa DE, Buleandra M, David IG (2018) An experimental design for the optimization of the extraction methods of metallic mobile fractions from environmental solid samples. Environ Monit Assess 190:609

World Health Organization (WHO) (2007) WHO guidelines for assessing quality of herbal medicines with reference to contaminants and residues. World Health Organization. https://apps.who.int/iris/handle/10665/43510

Yoon J, Cao X, Zhou Q, Ma LQ (2006) Accumulation of Pb, Cu, and Zn in native plants growing on a contaminated Florida site. Sci Total Environ 368:456–464

Zheljazkov VD, Warman PR (2004) Source-separated municipal solid waste compost application to Swiss chard and basil. J Environ Qual 33:542–552

Zhu G, Xiao H, Guo Q, Song B, Zheng G, Zhao J, Okoli CP (2018a) Heavy metal contents and enrichment characteristics of dominant plants in wasteland of the downstream of a lead-zinc mining area in Guangxi, Southwest China. Ecotoxicol Environ Saf 151:266–271

Zhu G, Xiao H, Guo Q, Zhang Z, Zhao J, Yang D (2018b) Effects of cadmium stress on growth and amino acid metabolism in two Compositae plants. Ecotoxicol Environ Saf 158:300–308