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Research Article

Managing irrigation and sowing date can improve oil content and fatty acid composition of Camelina sativa L

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Pages 2847-2861 | Received 25 Sep 2022, Accepted 05 Feb 2023, Published online: 20 Feb 2023

References

  • Aghdasi S, AghaAlikhani M, SAM M-S, Kahrizi D. 2021. Exogenously used boron and 24-epibrassinolide improved oil quality and mitigate late-season water deficit stress in camelina. Ind Crops Prod. 171:113885. doi:10.1016/j.indcrop.2021.113885
  • Alizadeh S, Roozbahani A, Shirani Rad AH, Seyedhadi MH. 2022. Foliar application of humic acids improves seed yield and oil quality of rapeseed (Brassica napus L.) genotypes at well-time and late planting dates. J Soil Sci Plant Nutr. 22(1):549–559. doi:10.1007/s42729-021-00670-2.
  • American Oil Chemists’ Society (AOCS). 1993. Methods Ag 1-65 and Ce 1-62. Official methods and recommended practices of the American Oil Chemists’ Society.
  • Amiri-Darban N, Nourmohammadi G, Ahs SR, Mirhadi SMJ, Heravan IM. 2020. Potassium sulfate and ammonium sulfate affect quality and quantity of camelina oil grown with different irrigation regimes. Ind Crops Prod. 148:112308. doi:10.1016/j.indcrop.2020.112308
  • Amiri SR, Deihimfard R, Eyni-Nargeseh H. 2020. Toward dormant seeding of rainfed chickpea as an adaptation strategy to sustain productivity in response to changing climate. Field Crops Res. 247:107674. doi:10.1016/j.fcr.2019.107674
  • Arslan B. 2007. The determination of oil content and fatty acid compositions of domestic and exotic safflower (Carthamus tinctorius L.) genotypes and their interactions. J Agron. 6(3):415–420. doi:10.3923/ja.2007.415.420.
  • Azadmard-Damirchi S, Dutta PC. 2006. Novel solid-phase extraction method to separate 4 desmethyl-, 4 monomethyl-, and 4, 40-dimethylsterols in vegetable oils. J Chromatogr. 1108:183–187. doi:10.1016/j.chroma.2006.01.015
  • Baldini M, Givanardi R, Vanozzi GP 2000. Effect of different water availability on fatty acid composition of the oil in standard and high oleic sunflower hybrids. Proceedings of XV International Sunflower Conference Toulouse 79–84.
  • Berti MT, Gesch RW, Eynck C, Anderson JV, Cermak S. 2016. Camelina uses, genetics, production and management. Ind Crop Prod. 94:690–710. doi:10.1016/j.indcrop.2016.09.034
  • Bettaieb I, Zakhama N, Wannes WA, Kchouk ME, Marzouk B. 2009. Water deficit effects on Salvia officinalis fatty acids and essential oils composition. Sci Hortic. 120(2):271–275. doi:10.1016/j.scienta.2008.10.016.
  • Brock JR, Scott T, Lee AY, Mosyakin SL, Olsen KM. 2020. Interactions between genetics and environment shape - camelina seed oil composition. BMC Plant Biol. 20:423. doi:10.1186/s12870-020-02641-8
  • Campbell MC, Rossi AF, Erskine W. 2013. Camelina (Camelina sativa (L.) Crantz): agronomic potential in Mediterranean environments and diversity for biofuel and food uses. Crop Pasture Sci. 64(4):388–398. doi:10.1071/CP13054.
  • Chen C, Bekkerman A, Afshar RK, Neill K. 2015. Intensification of dryland cropping systems for bio-feedstock production: evaluation of agronomic and economic benefits of Camelina sativa. Ind Crop Prod. 71:114–121. doi:10.1016/j.indcrop.2015.02.065
  • Czerniawski P, Piasecka A, Bednarek P. 2021. Evolutionary changes in the glucosinolate biosynthetic capacity in species representing Capsella, Camelina and Neslia genera. Phytochemistry. 181:112571. doi:10.1016/j.phytochem.2020.112571
  • Eyni-Nargeseh H, Aghaalikhani M, Shirani Rad AH, Mokhtassi-Bidgoli A, Modares Sanavy SAM. 2019. Late season deficit irrigation for water-saving: selection of rapeseed (Brassica napus) genotypes based on quantitative and qualitative features. Arch Agron Soil Sci. 66(1):126–137. doi:10.1080/03650340.2019.1602866.
  • Eyni-Nargeseh H, Aghaalikhani M, Shirani Rad AH, Mokhtassi-Bidgoli A, Modares Sanavy SAM 2020. Late season deficit irrigation for water-saving: Selection of rapeseed (Brassica napus) genotypes based on quantitative and qualitative features. Arch Agron Soil Sci. 66(1):126–137. doi:10.1080/03650340.2019.1602866.
  • Faraji A, Lattifi N, Soltani A, Shirani-rad AH. 2009. Seed yield and water use efficiency of canola. (Brassica napus L.) as affected by high temperature stress and supplemental irrigation. Agric Water Manag. 96:132–140. doi:10.1016/j.agwat.2008.07.014
  • Ganj-Abadi F, Shirani Rad AH, Sani B, Mozafari H. 2021. Grain yield and qualitative of rapeseed genotypes change in response to exogenous application of salicylic acid and planting density. Gesunde Pflanzen. 73:335–344. doi:10.1007/s10343-021-00558-2
  • Genet T, Labuschagne M, Hugo A. 2004. Capillary gas chromatography analysis of Ethiopian mustard to determine variability of fatty acid composition. J. Sci. Food Agric 84:1663–1670.
  • Gesch RW, Archer DW. 2013. Double-cropping with winter camelina in the northern Corn Belt to produce fuel and food. Ind Crop Prod. 44:718–725. doi:10.1016/j.indcrop.2012.05.023
  • Harinder P, Makkar S, Siddhuraju P, Becker K. 2007. Plant secondary metabolites. Humana Press; p. 58–60.
  • Jiang Y, Caldwell CD. 2016. Effect of nitrogen fertilization on camelina seed yield, yield components, and downy mildew infection. Can J Plant Sci. 96(1):17–26. doi:10.1139/cjps-2014-0348.
  • Kostik V, Memeti S, Bauer B. 2013. Fatty acid composition of edible oils and fats. J. Hygienic Eng. Design 4:112–116.
  • Linder CR. 2000. Adaptive evolution of seed oils in plants: accounting for the biogeographic distribution of saturated and unsaturated fatty acids in seed oils. Am. Nat 156:442–458. doi:10.1086/303399
  • Martínez-Ballesta M, Moreno DA, Carvajal M. 2013. The physiological importance of glucosinolates on plant response to abiotic stress in Brassica. Int. J. Mol. Sci 14:11607–11625.
  • Matthäus B, Özcan MM. 2017. Fatty acid composition, tocopherol and sterol contents in linseed (Linum usitatissimum L.) varieties. J Chem Chem Eng. 36(3):147–152.
  • Mokhtassi-Bidgoli A, AghaAlikhani M, Eyni-Nargeseh H. 2022. Effects of nitrogen and water on nutrient uptake, oil productivity, and composition of Descurainia sophia. J Soil Sci Plant Nutr. 22:59–70. doi:10.1007/s42729-021-00633-7
  • Mondal N, Bhat KV, Srivastava PS. 2010. Variation in fatty acid composition in Indian germplasm of sesame. J Am Oil Chem Soc. 87(11):1263–1269.
  • Moradi Aghdam A, Sayfzadeh S, Shirani Rad AH, Valadabadi SA, Zakerin HR. 2019. The assessment of water stress and delay cropping on quantitative and qualitative traits of rapeseed genotypes. Ind Crop Prod. 131:160–165. doi:10.1016/j.indcrop.2019.01.051
  • Neupane D, Solomon JK, Mclennon E, Davison J, Lawry T. 2019. Sowing date and sowing method influence on camelina cultivars grain yield, oil concentration, and biodiesel production. Food Energy Secur. 8(3). doi:10.1002/fes3.166.
  • Pashang D, Weisany W, Ghajar FGK. 2021. Changes in the fatty acid and morphophysiological traits of safflower (Carthamus tinctorius L.) cultivars as response to auxin under water-deficit stress. J Soil Sci Plant Nutr. 21:2164–2177. doi:10.1007/s42729-021-00512-1
  • Pleines S, Friedt W. 1988. Breeding for improved C-18 fatty acid composition in rapeseed (Brassica napus L). Fat Sci. Technol. 90:167–171.
  • Rahimi-Moghaddam S, Eyni-Nargeseh H, Kalantar Ahmadi SA, Azizi KH. 2021. Towards withholding irrigation regimes and resistant genotypes as strategies to increase canola production in drought-prone environments: a modeling approach. Agric Water Manag. 243:106487. doi:10.1016/j.agwat.2020.106487
  • Shirani Rad AH, Eyni-Nargeseh H, Shiranirad S, Heydarzadeh A. 2022. Effect of potassium silicate on seed yield and fatty acid composition of rapeseed (Brassica napus L.). Genotypes under Different Irrigation Regimes Silicon. 14:11927–11938. doi:10.1007/s12633-022-01915-0
  • Shirani Rad AH, Ganj-Abadi F, Jalili EO, Eyni-Nargeseh H, Safavi Fard N. 2021. Zn foliar spray as a management strategy boosts oil qualitative and quantitative traits of spring rapeseed genotypes at winter sowing dates. J Soil Sci Plant Nutr. 21(2):1610–1620. doi:10.1007/s42729-021-00465-5.
  • Singer SD, Zou J, Weselake RJ. 2016. Abiotic factors influence plant storage lipid accumulation and composition. Plant Sci. 243:1–9. doi:10.1016/j.plantsci.2015.11.003
  • Singh S, Sinha S. 2005. Accumulation of metals and its effects in Brassica juncea (L.). Czern. (Cv. Rohini) Grown on Various Amendments of Tannery Waste. Ecotoxicol Environ Saf 62:118–127. doi:10.1016/j.ecoenv.2004.12.026
  • Smutka L, Steininger M, Miffek O. 2009. World agricultural production and consumption. Agris on-line Papers Econ. Inform. 1:3–12.
  • Vetter W, Darwisch V, Lehnert K. 2020. Erucic acid in Brassicaceae and salmon–An evaluation of the new proposed limits of erucic acid in food. NFS journal. 19:9–15. doi:10.1016/j.nfs.2020.03.002
  • Walia MK, Wells MS, Cubins J, Wyse D, Gardner RD, Forcella F, Gesch RW. 2018. Winter camelina seed yield and quality responses to harvest time. Ind. Crop. Prod 124(5):765–775. doi:10.1016/j.indcrop.2018.08.025.
  • Walia MK, Zanetti F, Gesch RW, Krzyżaniak M, Eynck C, Puttick D, Alexopoulou E, Royo-Esnal A, Stolarski MJ, Isbell T, et al. 2021. Winter camelina seed quality in different growing environments across Northern America and Europe. Ind. Crop. Prod 169:113639. doi:10.1016/j.indcrop.2021.113639
  • Wittenberg A, Anderson JV, Berti MT. 2020. Crop growth and productivity of winter camelina in response to sowing date in the northwestern Corn Belt of the USA. Ind. Crop. Prod. 158:113036. doi:10.1016/j.indcrop.2020.113036
  • Zafari M, Ebadi A, Sedghi M, Jahanbakhsh S. 2020. Alleviating effect of 24-epibrassinolide on seed oil content and fatty acid composition under drought stress in safflower. J Food Compos Anal. 92:103544. doi:10.1016/j.jfca.2020.103544
  • Załuski D, Tworkowski J, Krzyżaniak M, Stolarski MJ, Kwiatkowski J. 2020. The characterization of 10 spring camelina genotypes grown in environmental conditions in North-Eastern Poland. Agron. 10(1):64. doi:10.3390/agronomy10010064.
  • Zanetti F, Alberghini B, Marjanovi´c Jeromela A, Grahovac N, Rajkovi´c D, Kiprovski B, Monti A. 2021. Camelina, an ancient oilseed crop actively contributing to the rural renaissance in Europe. A Review. Agron. Sustain. Dev 41:2. doi:10.1007/s13593-020-00663-y
  • Zanetti F, Eynck C, Christou M, Krzyzaniak M, Righini D, Alexopoulou E, Stolarski MJ, Van Loo EN, Puttick D, Monti A. 2017. Agronomic performance and seed quality attributes of camelina (Camelina sativa L. Crantz) in Multienvironment Trials across Europe and Canada. Ind. Crop. Prod 107:602–608. doi:10.1016/j.indcrop.2017.06.022

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