Camelina uses, genetics, genomics, production, and management

Industrial Crops and Products - Tập 94 - Trang 690-710 - 2016
Marisol Berti1, Russ Gesch2, Christina Eynck3, James Anderson4, Steven Cermak5
1Department of Plant Sciences, North Dakota State University, NDSU 7670, P.O. Box 6050, Fargo, ND, 58105, USA
2USDA-ARS-North Central Soil Conservation Research Laboratory, Morris, MN, 56267, USA
3Linnaeus Plant Sciences, 2024-110 Gymnasium Place, Saskatoon, SK, S7N 0W9, Canada
4USDA-ARS, Sunflower and Plant Biology Research Unit, 1605 Albrecht Blvd., N., Fargo, ND, 58102-2765, USA
5USDA-ARS, National Center for Agricultural Utilization Research, Bio-Oils Research Unit, 1815 N. University St., Peoria, IL, 61604, USA

Tài liệu tham khảo

ASTM, 2015

Agusdinata, 2011, Life cycle assessment of potential biojet fuel production in the United States, Env. Sci. Technol., 45, 9133, 10.1021/es202148g

Aikawa, 2010, Robust control of the seasonal expression of the Arabidopsis FLC gene in a fluctuating environment, PNAS, 107, 11632, 10.1073/pnas.0914293107

Aiken, 2015, Planting methods affect emergence, flowering and yield of spring oilseed crops in the US central High Plains, Ind. Crops Prod., 69, 273, 10.1016/j.indcrop.2015.02.025

Allen, 2014, Camelina growing degree hour and base temperature requirements, Agron. J., 106, 940, 10.2134/agronj13.0469

An, 2015, Overexpression of Arabidopsis WRI1 enhanced seed mass and storage oil content in Camelina sativa, Plant Biotechnol. Rep., 9, 137, 10.1007/s11816-015-0351-x

Augustin, 2015, Production of mono-and sesquiterpenes in Camelina sativa oilseed, Planta, 242, 693, 10.1007/s00425-015-2367-4

Aziza, 2013, Nutrient digestibility, egg quality, and fatty acid composition of brown laying hens fed camelina or flaxseed meal, J. Appl. Poult. Res., 22, 832, 10.3382/japr.2013-00735

Aziza, 2014, Gastrointestinal morphology, fatty acid profile, and production performance of broiler chickens fed camelina meal or fish oil, Eur. J. Lipid Sci. Technol., 116, 1727, 10.1002/ejlt.201400019

Büchsenschütz-Nothdurft, 1998, Breeding for modified fatty acid composition via experimental mutagenesis in Camelina sativa (L.) Crtz, Ind. Crops Prod., 7, 291, 10.1016/S0926-6690(97)00060-5

Balanuca, 2014, Hybrid nanocomposites based on POSS and networks of methacrylated camelina oil and various PEG derivatives, Eur. J. Lipid Sci. Technol., 116, 458, 10.1002/ejlt.201300370

Belayneh, 2015, Extraction of omega-3-rich oil from Camelina sativa seed using supercritical carbon dioxide, J. Supercrit. Fluids, 104, 153, 10.1016/j.supflu.2015.06.002

Bell, 2010, Growth, flesh adiposity and fatty acid composition of Atlantic salmon (Salmo salar) families with contrasting flesh adiposity: effects of replacement of dietary fish oil with vegetable oils, Aquaculture, 306, 225, 10.1016/j.aquaculture.2010.05.021

Berti, 2002, Borage: a new crop for southern Chile, 501

Betancor, 2015, Evaluation of a high-EPA oil from transgenic Camelina sativa in feeds for Atlantic salmon (Salmo salar L.) effects on tissue fatty acid composition, histology and gene expression, Aquaculture, 444, 1, 10.1016/j.aquaculture.2015.03.020

Blackshaw, 2011, Alternative oilseed crops for biodiesel feedstock on the Canadian prairies, Can. J. Plant Sci., 91, 889, 10.4141/cjps2011-002

Boateng, 2010, Producing stable pyrolysis liquids from the oil-seed presscakes of mustard family plants: pennycress (Thlaspi arvense L.) and camelina (Camelina sativa), Energy Fuels, 24, 6624, 10.1021/ef101223a

Bullerwell, 2012, Performance of rainbow trout (Oncorhynchus mykiss) fed Camelina sativa seeds and high oil residue meal, 137

Bullerwell, 2016, Growth performance, proximate and histological analysis of rainbow trout fed diets containing Camelina sativa seeds, meal (high-oil and solvent-extracted) and oil, Aquaculture, 452, 342, 10.1016/j.aquaculture.2015.11.008

Cao, 2015, Separation of glucosinolates from camelina seed meal via membrane and acidic aluminum oxide Column, J. Liq. Chromatogr. Rel. Technol., 38, 1273, 10.1080/10826076.2015.1037454

Cendero-Mateo, 2015, Dynamic response of plant chlorophyll fluorescence to light: water and nutrient availability, Funct. Plant Biol., 42, 746, 10.1071/FP15002

Chen, 2015, Intensification of dryland cropping systems for bio-feedstock production: evaluation of agronomic and economic benefits of Camelina sativa, Ind. Crops Prod., 71, 114, 10.1016/j.indcrop.2015.02.065

Choudhury, 2014, Constitutive or seed-specific overexpression of Arabidopsis G-protein γ subunit 3 (AGG3) results in increased seed and oil production and improved stress tolerance in Camelina sativa, Plant Biotechnol. J., 12, 49, 10.1111/pbi.12115

Cieslak, 2013, Camelina sativa affects the fatty acid contents in M. longissimus muscle of lambs, Eur. J. Lipid Sci. Technol., 115, 1258, 10.1002/ejlt.201200119

Ciurescu, 2016, Camelia (Camelina sativa L. Crantz) oil and seeds as n-3 fatty acids rich products in broiler diets and its effects on performance meat fatty acid composition, immune tissue weights, and plasma metabolic profile, J. Agri. Sci. Tech., 18, 315

Colombini, 2014, Evaluation of Camelina sativa (L.) Crantz meal as an alternative protein source in ruminant rations, J. Sci. Food Agric., 94, 736, 10.1002/jsfa.6408

Corporan, 2011, Chemical, thermal stability, seal swell, and emissions studies of alternative jet fuels, Energy Fuels, 25, 955, 10.1021/ef101520v

Crabtree, 1990, Long-term wheat, soybean, and grain sorghum double-cropping under rainfed conditions, Agron. J., 82, 683, 10.2134/agronj1990.00021962008200040007x

Crowley, 1998

Dangol, 2014

Davis, 2013, Impact of growing conditions on the competitive ability of Camelina sativa (L.) Crantz, Can. J. Plant Sci., 93, 243, 10.4141/cjps2012-213

Dean, 2009, Brassica cover crops for N retention in the Mid-Atlantic coastal plain, J. Environ. Qual., 38, 520, 10.2134/jeq2008.0066

Dobre, 2014, Camelina sativa as a double crop using the minimal tillage system, Rom. Biotechnol. Lett., 19, 9191

Drenth, 2014, Compression ignition engine performance and emission evaluation of industrial oilseed biofuel feedstocks camelina carinata, and pennycress across three fuel pathways, Fuel, 136, 143, 10.1016/j.fuel.2014.07.048

Drenth, 2015, Fuel property quantification of triglyceride blends with an emphasis on industrial oilseeds camelina, carinata, and pennycress, Fuel, 153, 19, 10.1016/j.fuel.2015.02.090

Durrett, 2008, Plant triacylglycerols as feedstocks for the production of biofuels, Plant J., 54, 593, 10.1111/j.1365-313X.2008.03442.x

EN, 2012

Eberle, 2015, Using pennycress, camelina, and canola cash cover crops to provision pollinators, Ind. Crops Prod., 75, 20, 10.1016/j.indcrop.2015.06.026

Eeva-Liisa, 2007, Effect of Camelina sativa expeller cake on performance and meat quality of broilers, J. Sci. Food Agric., 87, 1489, 10.1002/jsfa.2864

Enjalbert, 2011

Eynck, 2013, Camelina (Camelina sativa), 369

Francis, 2009, The biology of Canadian weeds. 142. Camelina alyssum (Mill.) thell. C. microcarpa andrz. ex DC; C. sativa (L.) crantz, Can. J. Plant Sci., 89, 791, 10.4141/CJPS08185

French, 2009, Evapotranspiration over a camelina crop at Maricopa, Arizona, Ind. Crops Prod., 29, 289, 10.1016/j.indcrop.2008.06.001

Fujita, 2014, Source-sink manipulation of Camelina sativa L. related to grain yield under stressful environment of Hokkaido, Japan, Soil Sci. Plant Nutr., 60, 156, 10.1080/00380768.2013.879259

Gan, 2009, Root mass for oilseed and pulse crops: growth and distribution in the soil profile, Can. J. Plant Sci., 89, 883, 10.4141/CJPS08154

Gehringer, 2006, Genetic mapping of agronomic traits in false flax (Camelina sativa subsp. sativa), Genome, 49, 1555, 10.1139/g06-117

Gesch, 2013, Double-cropping with winter camelina in the northern Corn Belt to produce fuel and food, Ind. Crops Prod., 44, 718, 10.1016/j.indcrop.2012.05.023

Gesch, 2011, Sowing date and tillage effects on fall-seeded camelina in the northern Corn Belt, Agron. J., 103, 980, 10.2134/agronj2010.0485

Gesch, 2015, Water use in camelina?soybean dual cropping systems, Agron. J., 107, 1098, 10.2134/agronj14.0626

Gesch, 2014, Dual cropping winter camelina with soybean in the northern Corn Belt, Agron. J., 106, 1735, 10.2134/agronj14.0215

Gesch, 2015, Industrial oilseeds bulster hub crop yields when used in rotation, 19

Gesch, 2015, Camelina growth and yield response to planting rate and depth

Ghamkhar, 2010, Camelina (Camelina sativa (L.) Crantz) as an alternative oilseed: molecular and ecogeographic analyses, Genome, 53, 558, 10.1139/G10-034

Ghaouti, 2016, Effect of competition between Vicia faba and Camelina sativa as a model weed in breeding for organic conditions, Weed Res., 56, 159, 10.1111/wre.12193

Gómez-Monedero, 2015, Pyrolysis of red eucalyptus, camelina straw, and wheat straw in an ablative reactor, Energy Fuels, 29, 1766, 10.1021/ef5026054

Gugel, 2006, Agronomic and seed quality evaluation of Camelina sativa in western Canada, Can. J. Plant Sci., 86, 1047, 10.4141/P04-081

Halmemies-Beauchet-Filleau, 2011, Effect of plant oils and camelina expeller on milk fatty acid composition in lactating cows fed diets based on red clover silage, J. Dairy Sci., 94, 4413, 10.3168/jds.2010-3885

Heaton, 2013, Managing a second-generation crop portfolio through sustainable intensification: examples from the USA and EU, Biofuels Bioprod. Biorefining, 10.1002/bbb.1429

Helliwell, 2006, The Arabidopsis FLC protein interacts directly in vivo with SOC1 and FT chromatin and is part of a high-molecular-weight protein complex, Plant J., 46, 183, 10.1111/j.1365-313X.2006.02686.x

Hess, 2011

Hixson, 2016, Inclusion of camelina meal as a protein source in diets for farmed salmonids, Aquacult. Nutr., 22, 615, 10.1111/anu.12276

Huai, 2015, Combinatorial effects of fatty acid elongase enzymes on nervonic acid production in Camelina sativa, PLoS One, 10, e0131755, 10.1371/journal.pone.0131755

Hunsaker, 2011, Water use, crop coefficients, and irrigation management criteria for camelina production in arid regions, Irrig. Sci., 29, 27, 10.1007/s00271-010-0213-9

Hurtaud, 2007, Effects of feeding camelina (seeds or meal) on milk fatty acid composition and butter spreadability, J. Dairy Sci., 90, 5134, 10.3168/jds.2007-0031

Ibrahim, 2015, Chemical composition, medicinal impacts and cultivation of camelina (Camelina sativa): Review, Int. J. PharmTech Res., 8, 114

Ionescu, 2015, Fatty acids and antioxidant activity in vegetable oils used in cosmetic formulations, UPB Sci. Bull. Ser. B: Chem. Mater. Sci., 77, 39

Irish, 2010, The flowering of Arabidopsis flower development, Plant J., 61, 1014, 10.1111/j.1365-313X.2009.04065.x

Iven, 2016, Synthesis of oleyl oleate wax esters in Arabidopsis thaliana and Camelina sativa seed oil, Plant Biotechnol. J., 14, 252, 10.1111/pbi.12379

Jewett, 2015, Camelina sativa: for biofuels and bioproducts, 157

Jha, 2013, Camelina (Camelina sativa) tolerance to selected preemergence herbicides, Weed Technol., 27, 712, 10.1614/WT-D-13-00061.1

Jiang, 2016, Effect of nitrogen fertilization on camelina seed yield, yield components, and downy mildew infection, Can. J. Plant Sci., 96, 17, 10.1139/cjps-2014-0348

Jiang, 2013, Camelina yield and quality response to combined nitrogen and sulfur, Agron. J., 105, 1847, 10.2134/agronj2013.0240

Jiang, 2014, Camelina seed quality in response to applied nitrogen, genotype and environment, Can. J. Plant Sci., 94, 971, 10.4141/cjps2013-396

Johnson, 2013, Calendula and camelina response to nitrogen fertility, Ind. Crops Prod., 43, 684, 10.1016/j.indcrop.2012.07.056

Johnson, 2006, Estimating source carbon from crop residues, roots and rhizodeposits using the national grain-yield database, Agron. J., 98, 622, 10.2134/agronj2005.0179

Johnson, 2010

Julié-Galau, 2014, Evaluation of the potential for interspecific hybridization between Camelina sativa and related wild Brassicaceae in anticipation of field trials of GM camelina, Transgenic Res., 23, 67, 10.1007/s11248-013-9722-7

Kagale, 2014, The emerging biofuel crop Camelina sativa retains a highly undifferentiated hexaploid genome structure, Nat. Commun., 5, 3706, 10.1038/ncomms4706

Kakani, 2012, Camelina meal increases egg n-3 fatty acid content without altering quality or production in laying hens, Lipids, 47, 519, 10.1007/s11745-012-3656-3

Kang, 2011, Identification of three genes encoding microsomal oleate desaturases (FAD2) from the oilseed crop Camelina sativa, Plant Physiol. Biochem., 49, 223, 10.1016/j.plaphy.2010.12.004

Kanth, 2015, Generation and analysis of expressed sequence tags (ESTs) of Camelina sativa to mine drought stress-responsive genes, Biochem. Biophys. Res. Commun., 467, 83, 10.1016/j.bbrc.2015.09.116

Karcauskiene, 2014, False flax (Camelina sativa) as an alternative source for biodiesel production, Zemdirb. Agric., 101, 161, 10.13080/z-a.2014.101.021

Karg, 2012, Oil-rich seeds from prehistoric contextsin southern Scandinavia?reflections on archaeobotanical records of fl ax, hemp, gold of pleasure, and corn spurrey, Acta Palaeobot., 52, 17

Katar, 2012, Genotypic variations on yield, yield components and oil quality in some camelina (Camelina sativa (L.) Crantz) genotypes, Turk. J. Field Crops, 17, 105

Khalid, 2015, Salinity stress tolerance of camelina investigated in vitro, Sci. Agric. Bohem., 46, 137

Khan, 2015, Vibrational spectroscopic investigation of heat-induced changes in functional groups related to protein structural conformation in camelina seeds and their relationship to digestion in dairy cows, Anim. Prod.Sci., 55, 201, 10.1071/AN14400

Kline, A.M., Scott M.M., Tony, V.J., Terry. W.D., Ellsworth, C.P., 2003. Management considerations for relay intercropping: I. wheat. Bull. No. AY-315. Cooperative Ext. Serv., Purdue Univ. Agronomy Guide, Purdue, IN.

Kyei-Boahen, 2006, Early-maturing soybean in a wheat soybean double-crop system: yield and net returns, Agron. J., 98, 295, 10.2134/agronj2005.0198

Larsson, 2013, Cultivation and processing of Linum usitatissimum and Camelina sativa in southern Scandinavia during the Roman Iron Age, Veg. Hist. Archaeobot., 22, 509, 10.1007/s00334-013-0413-3

Lee, 2014, Overexpression of Arabidopsis MYB96 confers drought resistance in Camelina sativa via cuticular wax accumulation, Plant Cell Rep., 33, 1535, 10.1007/s00299-014-1636-1

Lenssen, 2012, Yield, pests, and water use of durum and selected crucifer oilseeds in two-year rotations, Agron. J., 104, 1295, 10.2134/agronj2012.0057

Li, 2014, Life cycle assessment of camelina oil derived biodiesel and jet fuel in the Canadian Prairies, Sci. Total Environ., 481, 17, 10.1016/j.scitotenv.2014.02.003

Li, 2015, Camelina oil derivatives and adhesion properties, Ind. Crops Prod., 73, 73, 10.1016/j.indcrop.2015.04.015

Liu, 2015, Field production, purification and analysis of high-oleic acetyl-triacylglycerols from transgenic Camelina sativa, Ind. Crops Prod., 65, 259, 10.1016/j.indcrop.2014.11.019

Lounsbury, 2015, No-till seeded spinach after winterkilled cover crops in an organic production system, Renew. Agric. Food Syst., 30, 473, 10.1017/S1742170514000301

Lu, 2008, Generation of transgenic plants of a potential oilseed crop Camelina sativa by Agrobacterium-mediated transformation, Plant Cell Rep., 27, 273, 10.1007/s00299-007-0454-0

Ma, 2015, Impact of brassicaceous seed meals on the composition of the soil fungal community and the incidence of Fusarium wilt on chili pepper, Appl. Soil Ecol., 90, 41, 10.1016/j.apsoil.2015.01.016

Mahli, 2007, Yield, seed quality, and sulfur uptake of brassica oilseed crops in response to sulfur fertilization, Agron. J., 99, 570, 10.2134/agronj2006.0269

Malhi, 2014, Effect of nitrogen fertilizer application on seed yield, N uptake, and seed quality of Camelina sativa, Can. J. Soil Sci., 94, 35, 10.4141/cjss2012-086

Malik, 2015, Production of high levels of poly-3-hydroxybutyrate in plastids of Camelina sativa seeds, Plant Biotechnol. J., 13, 675, 10.1111/pbi.12290

Martin, 2015, Sexual hybridization between Capsella bursa-pastoris (L.) medik (♀) and Camelina sativa (L.) crantz (♂) (Brassicaceae), Plant Breed., 134, 212, 10.1111/pbr.12245

Martinelli, 2011, Phenological growth stages of Camelina sativa according to the extended BBCH scale, Ann. Appl. Biol., 158, 87, 10.1111/j.1744-7348.2010.00444.x

Masella, 2014, Agronomic evaluation and phenotypic plasticity of Camelina sativa growing in Lombardia, Italy, Crop Pasture Sci., 65, 453, 10.1071/CP14025

Matthäus, 2012, Oil technology, 23

McVay, 2011, Camelina yield response to different plant populations under dryland conditions, Agron. J., 103, 1265, 10.2134/agronj2011.0057

McVay, 2008

Michaels, 1999, FLOWERING LOCUS C encodes a novel MADS domain protein that acts as a repressor of flowering, Plant Cell, 11, 949, 10.1105/tpc.11.5.949

Mierlita, 2015, Dietary effect of silage type and combination with camelina seed on milk fatty acid profile and antioxidant capacity of sheep milk, S. Afr. J. Anim. Sci., 45, 01, 10.4314/sajas.v45i1.1

Mirek, 1980, Taxonomy and nomenclature of Camelina pilosa auct, Acta Soc. Bot. Pol., 49, 553, 10.5586/asbp.1980.050

Mirek, 1981, Genus Camelina in Poland: taxonomy, distribution and habitats, Fragm. Flor. Geobot., 27, 445

Moser, 2012, Biodiesel from alternative oilseed feedstocks: camelina and field pennycress, Biofuels, 3, 193, 10.4155/bfs.12.6

Moser, 2016, Fuel property enhancement of biodiesel fuels from common and alternative feedstocks via complementary blending, Renew. Energy, 85, 819, 10.1016/j.renene.2015.07.040

Moslavac, 2014, Pressing and supercritical CO 2 extraction of Camelina sativa oil, Ind. Crops Prod., 54, 122, 10.1016/j.indcrop.2014.01.019

Mulligan, 2002, Weedy introduced mustards (Brassicaceae) of Canada, Can. Field-Nat., 116, 623

Mupondwa, 2016, Technoeconomic analysis of small-scale farmer owned camelina oil extraction as feedstock for biodiesel production: a case study in the Canadian prairies, Ind. Crops Prod., 10.1016/j.indcrop.2016.05.042

NASS, 2015

Nain, 2015, Camelina sativa cake for broilers Effects of increasing dietary inclusion from 0 to 24% on tissue fatty acid proportions at 14, 28, and 42 d of age, Poult. Sci., 94, 1247, 10.3382/ps/pev080

Natelson, 2015, Technoeconomic analysis of jet fuel production from hydrolysis, decarboxylation, and reforming of camelina oil, Biomass Bioenergy, 75, 23, 10.1016/j.biombioe.2015.02.001

Naylor, 2000, Effect of aquaculture on world fish supplies, Nature, 405, 1017, 10.1038/35016500

Nguyen, 2013, Camelina seed transcriptome: a tool for meal and oil improvement and translational research, Plant Biotechnol. J., 11, 759, 10.1111/pbi.12068

Oldani, 2015, Conventional and bio-derived jet fuel surrogate modeling in low temperature and lean combustion, Energy Fuels, 29, 4597, 10.1021/acs.energyfuels.5b00917

Pekel, 2015, Nutritional characteristics of camelina meal for 3-week-old broiler chickens, Poult. Sci., 66, 371, 10.3382/ps/peu066

Peng, 2014, Moist and dry heating-induced changes in protein molecular structure, protein subfractions, and nutrient profiles in camelina seeds, J. Dairy Sci., 97, 446, 10.3168/jds.2013-7298

Peng, 2014, Effect of thermal processing on estimated metabolizable protein supply to dairy cattle from camelina seeds: relationship with protein molecular structural changes, J. Agric. Food Chem., 62, 8263, 10.1021/jf5013049

Pietras, 2013, The effect of dietary camelina sativa oil on quality of broiler chicken meat, Ann. Anim. Sci., 13, 869, 10.2478/aoas-2013-0059

Pilgeram, 2007, Camelina sativa, A Montana omega-3 and fuel crop

Pinzi, 2009, The ideal vegetable oil-based biodiesel composition: a review of social, economical and technical implications, Energy Fuels, 23, 2325, 10.1021/ef801098a

Plessers, 1962, Species trials with oilseed plants: ii. Camelina, Can. J. Plant Sci., 42, 452, 10.4141/cjps62-073

Pollard, 2015, Lipid analysis of developing Camelina sativa seeds and cultured embryos, Phytochemistry, 118, 23, 10.1016/j.phytochem.2015.07.022

Putnam, 1993, Camelina: a promising low-input oilseed, 314

Putnam, 2009, Camelina infected by downy mildew (Hyaloperonospora camelinae) in the western United States: a first report, Plant Health Prog., 10.1094/PHP-2009-0910-01-BR

Raczyk, 2015, Physicochemical quality and oxidative stability of linseed (Linum usitatissimum) and camelina (Camelina sativa) cold-pressed oils from retail outlets, Eur. J. Lipid Sci. Technol., 118, 834, 10.1002/ejlt.201500064

Radatz, 1981, Samenolhaltige pflanzen der Wildflora als potentielle Nutzpflanzen fur die Gewinnung von Industriegrundstoffen Literaturubersicht und Zielsetzung, Landbauforschung Volkenrode, 31, 227

Robinson, 1987, 579

Rode, 2002, Study of autochthon Camelina sativa (L.) crantz in Slovenia, J. Herbs Spices Med. Plants, 9, 313, 10.1300/J044v09n04_08

Rose, 2001, Compensatory density-dependence in fish populations: importance, controversy, understanding and prognosis, Fish Fish., 2, 293, 10.1046/j.1467-2960.2001.00056.x

Ruiz-Lopez, 2015, An alternative pathway for the effective production of the omega-3 long-chain polyunsaturates EPA and ETA in transgenic oilseeds, Plant Biotechnol. J., 13, 1264, 10.1111/pbi.12328

Russo, 2010, Classification of temperature response in germination of Brassicas, Ind. Crops Prod., 31, 48, 10.1016/j.indcrop.2009.08.007

Sáez-Bastante, 2015, Ultrasound-assisted biodiesel production from Camelina sativa oil, Bioresour. Technol., 185, 116, 10.1016/j.biortech.2015.02.090

Séguin-Swartz, 2009, Diseases of Camelina sativa (false flax), Can. J. Plant Pathol., 31, 375, 10.1080/07060660909507612

Séguin-Swartz, 2011, Hybridization potential between the oilseed crucifer Camelina sativa and canola, mustard and related weeds, Proceedings of the 13th International Rapeseed Congress, 5

Séguin-Swartz, 2013, Hybridization between Camelina sativa (L.) Crantz (false flax) and North American Camelina species, Plant Breed., 132, 390, 10.1111/pbr.12067

Salisbury, 1991

Schillinger, 2012, Camelina: planting date and method effects on stand establishment and seed yield, Field Crops Res., 130, 138, 10.1016/j.fcr.2012.02.019

Schuster, 1998, Glucosinolate content and composition as parameters of quality of camelina seed, Ind. Crops Prod., 7, 297, 10.1016/S0926-6690(97)00061-7

Seehuber, 1984, Genotypic variation for yield-traits and quality-traits in poppy and false flax, Fette Seifen Anstrichm., 86, 177, 10.1002/lipi.19840860501

Shonnard, 2010, Camelina-derived jet fuel and diesel: sustainable advanced biofuels, Environ. Prog. Sustain. Energy, 29, 382, 10.1002/ep.10461

Shukla, 2002, Camelina oil and its unusual cholesterol content, J. Am. Oil Chem. Soc., 79, 965, 10.1007/s11746-002-0588-1

Singh, 2014, Fatty acid composition and seed meal characteristics of Brassica and allied genera, Natl. Acad. Sci. Lett., 37, 219, 10.1007/s40009-014-0231-x

Sintim, 2016, Evaluating agronomic responses of camelina to seeding date under rain-fed Conditions, Agron. J., 108, 349, 10.2134/agronj2015.0153

Sivakumar, 2015, Atomization characteristics of camelina-based alternative aviation fuels discharging from dual-orifice injector, J. Eng. Gas Turb. Power, 137, 081503, 10.1115/1.4029426

Snell, 2009, PHA bioplastic: a value-added coproduct for biomass biorefineries, Biofuels Bioprod. Biorefin., 3, 456, 10.1002/bbb.161

Solis, 2013, Camelina seed yield response to nitrogen, sulfur, and phosphorus fertilizer in South Central Chile, Ind. Crops Prod., 44, 132, 10.1016/j.indcrop.2012.11.005

Song, 2014, Distinct roles of FKF1, GIGANTEA, and ZEITLUPE proteins in the regulation of CONSTANS stability in Arabidopsis photoperiodic flowering, Proc. Natl. Acad. Sci. U. S. A., 111, 17672, 10.1073/pnas.1415375111

Song, 2015, Photoperiodic flowering: time measurement mechanisms in leaves, Annu. Rev. Plant Biol., 66, 441, 10.1146/annurev-arplant-043014-115555

Soriano, 2012, Evaluation of biodiesel derived from Camelina sativa oil, J. Am. Oil Chem. Soc., 89, 917, 10.1007/s11746-011-1970-1

Soroka, 2015, Interactions between Camelina sativa (Brassicaceae) and insect pests of canola, Can. Entomol., 147, 193, 10.4039/tce.2014.42

Steppa, 2014, The metabolic profile of growing lambs fed diets rich in unsaturated fatty acids, J. Anim. Physiol. Anim. Nutr., 98, 914, 10.1111/jpn.12158

Stroescu, 2015, A shrinking core model for seeds oil extraction with particularization to Camelina oil separation, Chem. Eng. Res. Des., 97, 1, 10.1016/j.cherd.2015.03.007

Sun, 2015, Transesterification of camelina sativa oil with supercritical alcohol mixtures, Energy Convers. Management., 101, 402, 10.1016/j.enconman.2015.05.056

Szumacher-Strabel, 2011, Camelina sativa cake improved unsaturated fatty acids in ewe's milk, J. Sci. Food Agric., 91, 2031, 10.1002/jsfa.4415

Taranu, 2014, ω-3 PUFA rich Camelina oil by-products improve the systemic metabolism and spleen cell functions in fattening pigs, PLoS One, 9, e110186, 10.1371/journal.pone.0110186

Taylor, 2009, New seed oils for improved human and animal health: genetic manipulation of the Brassicaceae for oils enriched in nervonic acid, Modification Seed Compos. Promote Health Nutr., 219

Thom, 2016, Nectar production in oilseeds: food for pollinators in an agricultural landscape, Crop Sci., 56, 727, 10.2135/cropsci2015.05.0322

Toncea, 2013, The seed’s and oil composition of Camelia-first romanian cultivar of camelina (Camelina sativa, L. Crantz), Rom. Biotechnol. Lett., 18, 8594

Toncea, 2014, The seed yield potential of Camelia-first Romanian cultivar of camelina (Camelina sativa L. Crantz), Rom. Agric. Res., 31, 17

Tsui, 2013, Biodegradable polyesters from renewable resources, Annu. Rev. Chem. Biomol. Eng., 4, 143, 10.1146/annurev-chembioeng-061312-103323

USDA-FSA, 2011

Urbaniak, 2008, The effect of seeding rate: seeding date and seeder type on the performance of Camelina sativa L. in the Maritime Provinces of Canada, Can. J. Plant Sci., 88, 501, 10.4141/CJPS07148

Usher, 2015, Field trial evaluation of the accumulation of omega-3 long chain polyunsaturated fatty acids in transgenic Camelina sativa: making fish oil substitutes in plants, Metab. Eng. Comm., 2, 93, 10.1016/j.meteno.2015.04.002

Voelker, 2001, Variation in the biosynthesis of seed storage lipids, Ann. Rev. Plant Physiol. Plant Mol. Biol., 52, 335, 10.1146/annurev.arplant.52.1.335

Vollmann, 2015, Camelina as a sustainable oilseed crop: contributions of plant breeding and genetic engineering, Biotechnol. J., 10, 525, 10.1002/biot.201400200

Vollmann, 1996, 357

Vollmann, 2005, Genetic diversity in camelina germplasm as revealed by seed quality characteristics and RAPD polymorphism, Plant Breed., 124, 446, 10.1111/j.1439-0523.2005.01134.x

WAPMC, 2012

Wang, 2009, PEP1 regulates perennial flowering in Arabis alpina, Nature, 459, 423, 10.1038/nature07988

Warwick, 1999, Transgenic crops: new weed problems for Canada?, Phytoprotection, 80, 71, 10.7202/706182ar

White, 2011, Forage radish cover crops increase soil test phosphorus surrounding holes created by radish taproots, Soil Sci. Soc. Am. J., 75, 121, 10.2136/sssaj2010.0095

Wysocki, 2013, Camelina: seed yield response to applied nitrogen and sulfur, Field Crops Res., 145, 60, 10.1016/j.fcr.2013.02.009

Ye, 2016, The effects of camelina oil and solvent extracted camelina meal on the growth: carcass composition and hindgut histology of Atlantic salmon (Salmo salar) parr in freshwater, Aquaculture, 450, 397, 10.1016/j.aquaculture.2015.08.019

Zanetti, 2013, Challenges and opportunities for new industrial oilseed crops in EU-27: a review, Ind. Crops Prod., 50, 580, 10.1016/j.indcrop.2013.08.030

Zhao, 2014, Investigated cold press oil extraction from non-edible oilseeds for future bio-jet fuels production, J. Sustain. Bioenergy Syst., 4, 199, 10.4236/jsbs.2014.44019

Zhao, 2015, Optimization of catalytic cracking process for upgrading camelina oil to hydrocarbon biofuel, Ind. Crops Prod., 77, 516, 10.1016/j.indcrop.2015.09.019

Zhao, 2015, Catalytic cracking of non-edible sunflower oil over ZSM-5 for hydrocarbon bio-jet fuel, New Biotechnol., 32, 300, 10.1016/j.nbt.2015.01.004

Zubr, 2003, Qualitative variation of Camelina sativa seed from different locations, Ind. Crops Prod., 17, 161, 10.1016/S0926-6690(02)00091-2