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Original Articles

Efficiency of foliar selenium application on oilseed rape (Brassica napus L.) as influenced by rainfall and soil characteristics

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Pages 1240-1254 | Received 30 Sep 2016, Accepted 19 Dec 2016, Published online: 03 Jan 2017

References

  • Ajwa HA, Banuelos GS, Mayland HF. 1998. Selenium uptake by plants from soils amended with inorganic and organic materials. J Environ Qual. 27:1218–1227.
  • Arthur MA, Rubin G, Woodbury PB, Schneider RE, Weinstein LH. 1992. Uptake and accumulation of selenium by terrestrial plants growing on a coal fly-ash landfill. 2. Forage and root crops. Environ Toxicol Chem. 11:1289–1299.
  • Aspila P. 2005. History of selenium supplemented fertilization in Finland. In: Eurola, MJ, ed. Twenty years of selenium fertilization. Helsinky: MTT Agrifood Research Finland; p. 8–13. ISBN: 951-729-965-6.
  • Bañuelos GS. 1996. Managing high levels of boron and selenium with trace element accumulator crops. J Environ Sci Health Part A. 31:1179–1196.
  • Bañuelos GS, Ajwa HA, Mackey B, Wu L, Cook C, Akohoue S, Zambruzuski S. 1997. Evaluation of different plant species used for phytoremediation of high soil selenium. J Environ Qual. 26:639–646.
  • Bañuelos GS, Mayland HF. 2000. Absorption and distribution of selenium in animals consuming canola grown for selenium phytoremediation. Ecotoxicol Environ Safe. 46:322–328.
  • Broadley MR, Alcock J, Alford J, Cartwright P, Foot I, Fairweather-Tait SJ, Hart DJ, Hurst R, Knott P, McGrath SP, et al. 2010. Selenium biofortification of high-yielding winter wheat (Triticum aestivum L.) by liquid or granular Se fertilisation. Plant Soil. 332:5–18.
  • Bybordi A, Ebrahimian E. 2013. Growth, yield and quality components of canola fertilized with urea and zeolite. Commun Soil Sci Plant Anal. 44:2896–2915.
  • Cartes P, Gianfreda L, Mora ML. 2005. Uptake of selenium and its antioxidant activity in ryegrass when applied as selenate and selenite forms. Plant Soil. 276:359–367.
  • Čuvardić MS. 2003. Selenium in soil. Proc Nat Sci Matica Srpska Novi Sad. 104:23–37.
  • de la Luz Mora M, Pinilla L, Rosas A, Cartes P. 2008. Selenium uptake and its influence on the antioxidative system of white clover as affected by lime and phosphorus fertilization. Plant Soil. 303:139–149.
  • Djanaguiraman M, Prasad PVV, Seppanen M. 2010. Selenium protects sorghum leaves from oxidative damage under high temperature stress by enhancing antioxidant defense system. Plant Physiol Biochem. 48:999–1007.
  • Drahoňovský J, Száková J, Mestek O, Tremlová J, Kaňa A, Najmanová J, Tlustoš P. 2016. Selenium uptake, transformation and inter-element interactions by selected wildlife plant species after foliar selenate application. Environ Exper Bot. 125:12–19.
  • Dvořák P, Tlustoš P, Száková J, Černý J, Balík J. 2003. Distribution of soil fractions of zinc and its uptake by potatoes, maize, wheat and barley after soil amendment by sludge and inorganic Zn salt. Plant Soil Environ. 49:203–212.
  • Ebbs SD, Kochian LV. 1997. Toxicity of zinc and copper to Brassica species: implications for phytoremediation. J Environ Qual. 26:776–781.
  • Ebrahimi N, Hartikainen H, Simojoki A, Hajiboland R, Seppänen M. 2015. Dynamics of dry matter and selenium accumulation in oilseed rape (Brassica napus L.) in response to organic and inorganic selenium treatments. Agric Food Sci. 24:104–117.
  • Eich-Greatorex S, Sogn TA, Øgaard AF, Aasen I. 2007. Plant availability of inorganic and organic selenium fertiliser as influenced by soil organic matter content and pH. Nutr Cycl Agroecosyst. 79:221–231.
  • Ellis DR, Salt DE. 2003. Plants, selenium and human health. Curr Op Plant Biol. 6:273–279.
  • Feng R, Wei C, Tu S. 2013. The roles of selenium in protecting plants against abiotic stresses. Environ Exper Bot. 87:58–68.
  • Filek M, Zembala M, Kornaś A, Walas S, Mrowiec H, Hartikainen H. 2010. The uptake and translocation of macro- and microelements in rape and wheat seedlings as affected by selenium supply level. Plant Soil. 336:303–312.
  • Gao YM, Ma BL. 2015. Nitrogen, phosphorus, and zinc supply on seed and metal accumulation in canola grain. J Plant Nutr. 38:473–483.
  • Guerrero B, Llugany M, Palacios O, Valiente M. 2014. Dual effects of different selenium species on wheat. Plant Physiol Biochem. 83:300–307.
  • Hartikainen H, Xue T, Piironen V. 2000. Selenium as an anti-oxidant and pro-oxidant in ryegrass. Plant Soil. 225:193–200.
  • Hawkesford MJ, Zhao FJ. 2007. Strategies for increasing the selenium content of wheat. J Cereal Sci. 46:282–292.
  • Jahangir M, Abdel-Farid IB, Simoh S, Kim HK, Verpoorte R, Choi YH. 2012. Investigation of brassica biochemical status by NMR-based metabolomics. Acta Hortic. 936:163–172.
  • Johnsson L. 1991. Selenium uptake by plants as a function of soil type, organic-matter content and pH. Plant Soil. 133:57–64.
  • Kaur N, Sharma S, Kaur S, Nayyar H. 2014. Selenium in agriculture: a nutrient or contaminant for crops? Arch Agron Soil Sci. 60:1593–1624.
  • Kelly DG, White SD, Weir RD. 2013. Elemental composition of dog foods using nitric acid and simulated gastric digestions. Food Chem Toxicol. 55:568–577.
  • Kikkert J, Hale B, Berkelaar E. 2013. Selenium accumulation in durum wheat and spring canola as a function of amending soils with selenite, selenate and or sulphate. Plant Soil. 372:629–641.
  • Klognerová K, Vosmanská M, Száková J, Mestek O. 2015. Effect of growing conditions on selenium speciation in oilseed rape (Brassica napus) tissue. Chem Listy. 109:216–222.
  • Lyons GH, Genc Y, Soole K, Stangoulis JCR, Liu F, Graham RD. 2009. Selenium increases seed production in Brassica. Plant Soil. 318:73–80.
  • Malhi SS, Johnston AM, Schoenau JJ, Wang ZH, Vera CL. 2007. Seasonal biomass accumulation and nutrient uptake of canola, mustard, and flax on a black chernozem soil in Saskatchewan. J Plant Nutr. 30:4–6.
  • Mikkelsen RL, Haghnia GH, Page AL. 1987. Effects of pH and selenium oxidation state on the selenium accumulation and yield of alfalfa. J Plant Nutr. 10:937–950.
  • Miller-Cebert RL, Sistani NA, Cebert E. 2009. Comparative mineral composition among canola cultivars and other cruciferous leafy greens. J Food Comp Anal. 22:112–116.
  • Molnárová M, Fargašová A. 2009. Se(IV) phytotoxicity for monocotyledonae cereals (Hordeum vulgare L., Triticum aestivum L.) and dicotyledonae crops (Sinapis alba L., Brassica napus L.). J Haz Mat. 172:854–861.
  • Moreno Rodriguez MJ, Cala Rivero V, Jiménez Ballesta R. 2005. Selenium distribution in topsoils and plants of a semi-arid Mediterranean environment. Environ Geochem Health. 27:513–519.
  • Myška A, Száková J, Fučíková A, Mlejnek P, Zídek V, Tremlová J, Mestek O, Koplík R, Zídková J, Melčová M, Tlustoš P. 2016. The effect of selenium-enriched defatted rape seeds on tissue cadmium and essential elements utilization in rats. Czech J Anim Sci. 61:496–505.
  • Nawaz F, Ahmad R, Ashraf MY, Waraich EA, Khan SZ. 2015. Effect of selenium foliar spray on physiological and biochemical processes and chemical constituents of wheat under drought stress. Ecotoxicol Environ Safe. 113:191–200.
  • Nelson MN, Lilley JM, Helliwell C, Taylor CM, Siddique KHM, Chen S, Raman H, Batley J, Cowling WA. 2016. Can genomics assist the phenological adaptation of canola to new and changing environments? Crop Pasture Sci. 67:284–297.
  • Olama V, Ronaghi A, Karimian N, Yasrebi J, Hamidi R, Tavajjoh M, Kazemi MR. 2014. Seed quality and micronutrient contents and translocations in oilseed rape (Brassica napus L.) as affected by nitrogen and zinc fertilizers. Arch Agron Soil Sci. 60:423–435.
  • Pezzarossa B, Petruzzelli G, Petacco F, Malorgio F, Ferri T. 2007. Absorption of selenium by Lactuca sativa as affected by carboxymethylcellulose. Chemosphere. 67:322–329.
  • Renkema H, Koopmans A, Kersbergen L, Kikkert J, Hale B, Berkelaar E. 2012. The effect of transpiration on selenium uptake and mobility in durum wheat and spring canola. Plant soil. 354:239–250.
  • Rose TJ, Rengel Z, Ma Q, Bowden JW. 2007. Differential accumulation patterns of phosphorus and potassium by canola cultivars compared to wheat. J Plant Nutr Soil Sci. 170:404–411.
  • Rusová M, Száková J, Tremlová J, Kulhánek M, Tlustoš P 2013: The selenium uptake by oilseed rape (Brassica napus L.) plants. Proc. 19th conference Reasonable use of fertilizers, Czech University of Life Sciences, Prague, November 2013, pp. 141–144 (in Czech).
  • Seppänen MM, Kontturi J, Lopez Heras I, Madrid Y, Cámara C, Hartikainen H. 2010. Agronomic biofortification of Brassica with selenium-enrichment of SeMet and its identification in Brassica seeds and meal. Plant Soil. 337:273–283.
  • Sharma S, Bansal A, Dhillon SK, Dhillon KS. 2010. Comparative effects of selenate and selenite on growth and biochemical composition of oilseed rape (Brassica napus L.). Plant Soil. 329:339–348.
  • Sharma S, Bansal A, Dogra R, Dhillon SK, Dhillon KS. 2011. Effect of organic amendments on uptake of selenium and biochemical grain composition of wheat and rape grown on seleniferous soils in northwestern India. J Plant Nutr Soil Sci. 174:269–275.
  • Šindelářová K, Száková J, Tremlová J, Mestek O, Praus L, Kaňa A, Najmanová J, Tlustoš P. 2015. The response of broccoli (Brassica oleracea convar. italica) varieties on foliar application of selenium: uptake, translocation, and speciation. Food Add Contam Part A. 32:2027–2038.
  • Száková J, Tremlová J, Pegová K, Najmanová J, Tlustoš P. 2015. Soil-to-plant transfer of native selenium for wild vegetation cover at selected locations of the Czech Republic. Environ Monit Assess. 187:358–366.
  • Szczepaniak W, Grzebisz W, Potarzycki J, Łukowiak R, Przygocka-Cyna K. 2015. Nutritional status of winter oilseed rape in cardinal stages of growth as the yield indicator. Plant Soil Environ. 61:291–296.
  • Tvrdá J, Tůmová N, Fučíková A, Zídková J, Melčová M, Száková J, Mlejnek P, Zídek V, Mestek O, Kaňa A, Tlustoš P. 2015. The biochemical and hematological response of rats on defatted rape seeds addition into the diet. Academia J Agric Res. 3:395–401.
  • Vašák F, Černý J, Buráňová Š, Kulhánek M, Balík J. 2015. Soil pH changes in long-term field experiments with different fertilizing systems. Soil Water Res. 10:19–23.
  • Wang C, Zhang SH, Wang PF, Hou J, Zhang WJ, Li W, Lin ZP. 2009. The effect of excess Zn on mineral nutrition and antioxidative response in oilseed rape seedlings. Chemosphere. 75:1468–1476.
  • White PJ, Bowen HC, Parmaguru P, Fritz M, Spracklen WP, Spiby RE, Meacham MC, Mead A, Harriman M, Trueman LJ, et al. 2004. Interactions between selenium and sulphur nutrition in Arabidopsis thaliana. J Exper Bot. 55:1927–1937.
  • Wittkop B, Snowdon RJ, Friedt W. 2009. Status and perspectives of breeding for enhanced yield and quality of oilseed crops for Europe. Euphytica. 170:131–140.
  • Zembala M, Filek M, Walas S, Mrowiec H, Kornaś A, Miszalski Z, Hartikainen H. 2010. Effect of selenium on macro- and microelement distribution and physiological parameters of rape and wheat seedlings exposed to cadmium stress. Plant Soil. 329:457–468.
  • Zukalová H, Vašák J. 2002. The role and effects of glucosinolates of Brassica species - a review. Rostl Výr. 48:175–180.

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