This work is licensed under the Creative Commons Attribution 4.0 International License.
Alexiades, A., Kendall, A., Winans, K. S., and Kaffka S. R. 2018. Sugar beet ethanol (Beta vulgaris L.): A promising low-carbon pathway for ethanol production in California. Journal of Cleaner Production 172:3907–3917.AlexiadesA.KendallA.WinansK. S.KaffkaS. R.2018Sugar beet ethanol (Beta vulgaris L.): A promising low-carbon pathway for ethanol production in CaliforniaJournal of Cleaner Production17239073917Search in Google Scholar
Altman, J., and Thomason, I. J. 1971. Nematodes and their control. Pp. 335–370 in R. T. Johnson, J. T. Alexander, G. E. Rush, and G. R. Hawkes, ed. Advances in Sugarbeet Production: Principles and Practices. Ames, IA: Iowa State University Press.AltmanJ.ThomasonI. J.1971Nematodes and their control335370inJohnsonR. T.AlexanderJ. T.RushG. E.HawkesG. R.ed.Advances in Sugarbeet Production: Principles and PracticesAmes, IAIowa State University PressSearch in Google Scholar
Baldwin, J. G., and Mundo-Ocampo, M. 1991. Heteroderinae, cyst-and non-cyst forming nematodes. Pp. 275–362 in W. R. Nickle, ed. Manual of Agricultural Nematology. New York: Marcel Dekker.BaldwinJ. G.Mundo-OcampoM.1991Heteroderinae, cyst-and non-cyst forming nematodes275362inNickleW. R.ed.Manual of Agricultural NematologyNew YorkMarcel DekkerSearch in Google Scholar
Bernard, G. C., Egnin, M., and Bonsi, C. 2017. The Impact of Plant-Parasitic Nematodes on Agriculture and Methods of Control. Chapter 7 in M. M. Shah and M. Mahamood, ed. Nematology - Concepts, Diagnosis and Control. https://www.intechopen.com/books/nematology-concepts-diagnosis-and-control/the-impact-of-plant-parasitic-nematodes-on-agriculture-and-methods-of-control.10.5772/intechopen.68958.BernardG. C.EgninM.BonsiC.2017The Impact of Plant-Parasitic Nematodes on Agriculture and Methods of ControlChapter 7 inShahM. M.MahamoodM.ed.Nematology - Concepts, Diagnosis and Controlhttps://www.intechopen.com/books/nematology-concepts-diagnosis-and-control/the-impact-of-plant-parasitic-nematodes-on-agriculture-and-methods-of-control.10.5772/intechopen.68958.Search in Google Scholar
Burt, O. R., and Ferris. H. 1996. Sequential decision rules for managing nematodes with crop rotations. Journal of Nematology 28:457–474.BurtO. R.FerrisH.1996Sequential decision rules for managing nematodes with crop rotationsJournal of Nematology28457474Search in Google Scholar
Byrd, D. W., Barker, K. R., Ferris, H., Nusbaum, C. J., Griffin, W. E., Small, R. H., and Stone, C. A. 1976. Two semi-automatic elutriators for extracting nematodes and certain fungi from soil. Journal of Nematology 8:206–212.ByrdD. W.BarkerK. R.FerrisH.NusbaumC. J.GriffinW. E.SmallR. H.StoneC. A.1976Two semi-automatic elutriators for extracting nematodes and certain fungi from soilJournal of Nematology8206212Search in Google Scholar
Caswell, E. P., and Thomason, I. J. 1991. A model of egg production by Heterodera schachtii (Nematoda: Heteroderidae). Canadian Journal of Zoology 69:2085–2088.CaswellE. P.ThomasonI. J.1991A model of egg production by Heterodera schachtii (Nematoda: Heteroderidae)Canadian Journal of Zoology6920852088Search in Google Scholar
Caswell, E. P., Thomason, I. J., and McKinney, H. E. 1985. Extraction of cysts and eggs of Heterodera schachtii from soil with an assessment of extraction efficiency. Journal of Nematology 17:337–340.CaswellE. P.ThomasonI. J.McKinneyH. E.1985Extraction of cysts and eggs of Heterodera schachtii from soil with an assessment of extraction efficiencyJournal of Nematology17337340Search in Google Scholar
Chen, Y., Koike, S. T., Logan, G. D., Drozd, C., Silva, J. D. O., Colindres, N. B., Peacock, B. B., Becker, J. S., Loffredo, A., Wu, H., Ruegger, P. M., Becker, J. O., and Borneman, J. 2021. Detection of nematophagous fungi from Heterodera schachtii females using a baiting experiment with soils cropped to Brassica species from California’s central coast. PhytoFrontiers 1:4–12.ChenY.KoikeS. T.LoganG. D.DrozdC.SilvaJ. D. O.ColindresN. B.PeacockB. B.BeckerJ. S.LoffredoA.WuH.RueggerP. M.BeckerJ. O.BornemanJ.2021Detection of nematophagous fungi from Heterodera schachtii females using a baiting experiment with soils cropped to Brassica species from California’s central coastPhytoFrontiers1412Search in Google Scholar
Cooke, D. A. 1984. The relationship between numbers of Heterodera schachtii and sugar beet yields on a mineral soil, 1978–81. Annals of Applied Biology 104:121–129.CookeD. A.1984The relationship between numbers of Heterodera schachtii and sugar beet yields on a mineral soil, 1978–81Annals of Applied Biology104121129Search in Google Scholar
Cooke, D. A. 1991. The effect of beet cyst nematode, Heterodera schachtii, on the yield of sugar beet in organic soils. Annals of Applied Biology 118:153–160.CookeD. A.1991The effect of beet cyst nematode, Heterodera schachtii, on the yield of sugar beet in organic soilsAnnals of Applied Biology118153160Search in Google Scholar
Cooke, D. 1993. Nematode parasites of sugarbeet. Pp. 133–169 in K. Evans, D. L. Trudgill, and J. M. Webster, ed. Plant Parasitic Nematodes in Temperate Agriculture. London, UK: CAB International.CookeD.1993Nematode parasites of sugarbeet133169inEvansK.TrudgillD. L.WebsterJ. M.ed.Plant Parasitic Nematodes in Temperate AgricultureLondon, UKCAB InternationalSearch in Google Scholar
Cooke, D. A., and Thomason, I. J. 1979. The relationship between population density of Heterodera schachtii, soil temperature, and sugarbeet yields. Journal of Nematology 11:124–128.CookeD. A.ThomasonI. J.1979The relationship between population density of Heterodera schachtii, soil temperature, and sugarbeet yieldsJournal of Nematology11124128Search in Google Scholar
Farm Progress. 2010. How much biofuel from unharvested sugar beets. https://www.farmprogress.com/vegetables/how-much-biofuel-from-unharvested-sugar-beets-#:~:text=Our%20preliminary%20research%20suggests%20that,each%20ton%20of%20sugar%20beets.Farm Progress2010How much biofuel from unharvested sugar beetshttps://www.farmprogress.com/vegetables/how-much-biofuel-from-unharvested-sugar-beets-#:~:text=Our%20preliminary%20research%20suggests%20that,each%20ton%20of%20sugar%20beets.Search in Google Scholar
Flach, B., Lieberz, S., and Bolla, S. 2020. Biofuels Annual. United States Department of Agriculture Foreign Agricultural Service. Global Agricultural Information Network (GAIN). Report Number: E42020-0032. https://apps.fas.usda.gov/newgainapi/api/Report/DownloadReportByFileName?fileName=Biofuels%20Annual_The%20Hague_European%20Union_06-29-2020.FlachB.LieberzS.BollaS.2020Biofuels AnnualUnited States Department of Agriculture Foreign Agricultural Service. Global Agricultural Information Network (GAIN)Report Number: E42020-0032. https://apps.fas.usda.gov/newgainapi/api/Report/DownloadReportByFileName?fileName=Biofuels%20Annual_The%20Hague_European%20Union_06-29-2020.Search in Google Scholar
Gardner, J., and Caswell-Chen, E. P. 1993. Penetration, development, and reproduction of Heterodera schachtii on Fagopyrum esculentum, Phacelia tanacetifolia, Raphanus sativus, Sinapis alba, and Brassica oleracea. Journal of Nematology 25:695–702.GardnerJ.Caswell-ChenE. P.1993Penetration, development, and reproduction of Heterodera schachtii on Fagopyrum esculentum, Phacelia tanacetifolia, Raphanus sativus, Sinapis alba, and Brassica oleraceaJournal of Nematology25695702Search in Google Scholar
Gardner, J., and Caswell-Chen, E. P. 1997. Influence of cyst maturation on apparent population increases of Heterodera schachtii on root remnants. Fundamental and Applied Nematology 20:269–276.GardnerJ.Caswell-ChenE. P.1997Influence of cyst maturation on apparent population increases of Heterodera schachtii on root remnantsFundamental and Applied Nematology20269276Search in Google Scholar
Ghaemi, R., Pourjam, E., Safaie, N., Verstraeten, B., Mahmoudi, S. B., Mehrabi, R., De Meyer, T., and Kyndt, T. 2020. Molecular insights into the compatible and incompatible interactions between sugar beet and the beet cyst nematode. BMC Plant Biology 20:483. https://doi.org/10.1186/s12870-020-02706-8.GhaemiR.PourjamE.SafaieN.VerstraetenB.MahmoudiS. B.MehrabiR.De MeyerT.KyndtT.2020Molecular insights into the compatible and incompatible interactions between sugar beet and the beet cyst nematodeBMC Plant Biology20483https://doi.org/10.1186/s12870-020-02706-8.Search in Google Scholar
Goodwin, B., Babb, T., and the California Beet Growers Association. 1998. A pest management evaluation of the California sugar beet industry. California Department of Pesticide Regulation. Contract Number 97-0266. Sacramento, CA.GoodwinB.BabbT.the California Beet Growers Association1998A pest management evaluation of the California sugar beet industry. California Department of Pesticide RegulationContract Number 97-0266.Sacramento, CASearch in Google Scholar
Greco, N., Brandonisio, A., and de Marinis, G. 1982. Tolerance limit of the sugarbeet to Heterodera schachtii. Journal of Nematology 14:99–202.GrecoN.BrandonisioA.de MarinisG.1982Tolerance limit of the sugarbeet to Heterodera schachtiiJournal of Nematology1499202Search in Google Scholar
Griffin, G. D. 1988. Factors affecting the biology and pathogenicity of Heterodera schachtii on sugarbeet. Journal of Nematology 20:396–404.GriffinG. D.1988Factors affecting the biology and pathogenicity of Heterodera schachtii on sugarbeetJournal of Nematology20396404Search in Google Scholar
Griffin, G. D., and Waite, W. W. 1982. Pathological interaction of a combination of Heterodera schachtii and Meloidogyne hapla on tomato. Journal of Nematology 14:182–187.GriffinG. D.WaiteW. W.1982Pathological interaction of a combination of Heterodera schachtii and Meloidogyne hapla on tomatoJournal of Nematology14182187Search in Google Scholar
Haankuku, C., Epplin, F. M., and Kakani, V. G. 2015. Industrial sugar beets to biofuel: Field to fuel production system and cost estimates. Biomass and Bioenergy 80:267–277.HaankukuC.EpplinF. M.KakaniV. G.2015Industrial sugar beets to biofuel: Field to fuel production system and cost estimatesBiomass and Bioenergy80267277Search in Google Scholar
Iowa State University. 2009. Iowa State researches growing sugar beets for biofuel. https://www.cals.iastate.edu/news/2009/iowa-state-researches-growing-sugar-beets-biofuel.Iowa State University2009Iowa State researches growing sugar beets for biofuelhttps://www.cals.iastate.edu/news/2009/iowa-state-researches-growing-sugar-beets-biofuel.Search in Google Scholar
Jaffee, B. A., Muldoon, A. E., Anderson, C. E., and Westerdahl, B. B. 1991. Detection of the nematophagous fungus Hirsutella rhossiliensis in California sugarbeet fields. Biological Control 1:63–67.JaffeeB. A.MuldoonA. E.AndersonC. E.WesterdahlB. B.1991Detection of the nematophagous fungus Hirsutella rhossiliensis in California sugarbeet fieldsBiological Control16367Search in Google Scholar
Jiménez-Islas, D., Pérez-Romero, M. E., Ríos, J. M. R., and Flores-Romero, M. B. 2021. A bibliometric analysis of sugar beet for production of biofuels. International Journal of Energy Economics and Policy 11:57–63.Jiménez-IslasD.Pérez-RomeroM. E.RíosJ. M. R.Flores-RomeroM. B.2021A bibliometric analysis of sugar beet for production of biofuelsInternational Journal of Energy Economics and Policy115763Search in Google Scholar
Jones, F. G. W. 1956. Soil populations of beet eelworm (Heterodera schachtii Schm.) in relation to cropping: II. Microplot and field plot results. Annals of Applied Biology 44:25–56.JonesF. G. W.1956Soil populations of beet eelworm (Heterodera schachtii Schm.) in relation to cropping: II. Microplot and field plot resultsAnnals of Applied Biology442556Search in Google Scholar
Lear, B., Miyagawa, S. T., Johnson, D. E., and Atlee, Jr., C. B. 1966. The sugarbeet nematode associated with reduced yields of cauliflower and other vegetable crops. Plant Disease Reporter 50:611–612.LearB.MiyagawaS. T.JohnsonD. E.AtleeC. B.Jr.1966The sugarbeet nematode associated with reduced yields of cauliflower and other vegetable cropsPlant Disease Reporter50611612Search in Google Scholar
Lear, B., and Miyagawa, S. T. 1972. Development of a strain of the sugarbeet nematode as a potential pest of tomato. Journal of Nematology 4:296–297.LearB.MiyagawaS. T.1972Development of a strain of the sugarbeet nematode as a potential pest of tomatoJournal of Nematology4296297Search in Google Scholar
Marzo, C., Díaz, A. B., Caro, I., and Blandino, A. 2019. Status and perspectives in bioethanol production from sugar beet. Pp. 61–79 in R. C. Ray and S. Ramachandran, ed. Bioethanol Production from Food Crops. London, UK: Academic Press.MarzoC.DíazA. B.CaroI.BlandinoA.2019Status and perspectives in bioethanol production from sugar beet6179inRayR. C.RamachandranS.ed.Bioethanol Production from Food CropsLondon, UKAcademic PressSearch in Google Scholar
McKenry, M. V., and Roberts, P. A. 1985. Phytonematology study guide. University of California Division of Agriculture and Natural Resources, Cooperative Extension Publication 4045.McKenryM. V.RobertsP. A.1985Phytonematology study guideUniversity of California Division of Agriculture and Natural Resources, Cooperative Extension Publication 4045Search in Google Scholar
Moriarty, F. 1961. The effects of red beet and of Hesperis matronalis L. on a population of Heterodera schachtii Schm. Nematologica 6:214–221.MoriartyF.1961The effects of red beet and of Hesperis matronalis L. on a population of Heterodera schachtii SchmNematologica6214221Search in Google Scholar
Moriarty, F. 1963. The decline of a beet eelworm (Heterodera schachtii Schm.) population in microplots in the absence of host plants. Nematologica 9: 24–30.MoriartyF.1963The decline of a beet eelworm (Heterodera schachtii Schm.) population in microplots in the absence of host plantsNematologica92430Search in Google Scholar
Ouden, H. D. 1956. The influence of hosts and non-susceptible hatching plants on populations of Heterodera schachtii. Nematologica 1:138–144.OudenH. D.1956The influence of hosts and non-susceptible hatching plants on populations of Heterodera schachtiiNematologica1138144Search in Google Scholar
Panella, L. 2010. Sugar beet as an energy crop. Sugar Tech 12:288–293.PanellaL.2010Sugar beet as an energy cropSugar Tech12288293Search in Google Scholar
Panella, L., and Kaffka, S. R. 2010. Sugar beet (Beta vulgaris L) as a biofuel feedstock in the United States. Pp. 163–175 in G. Eggleston, ed. Sustainability of the Sugar and Sugar-Ethanol Industries. ACS Symposium Series Volume 1058. American Chemical Society. https://pubs.acs.org/doi/10.1021/bk-2010-1058.ch010#.PanellaL.KaffkaS. R.2010Sugar beet (Beta vulgaris L) as a biofuel feedstock in the United States163175inEgglestonG.ed.Sustainability of the Sugar and Sugar-Ethanol Industries. ACS Symposium Series Volume 1058American Chemical Societyhttps://pubs.acs.org/doi/10.1021/bk-2010-1058.ch010#.Search in Google Scholar
Raski, D. J. 1949. The life history and morphology of the sugar-beet nematode, Heterodera schachtii Schmidt. Phytopathology 40:135–152.RaskiD. J.1949The life history and morphology of the sugar-beet nematode, Heterodera schachtii SchmidtPhytopathology40135152Search in Google Scholar
Raski, D. J., and Johnson, R. T. 1959. Temperature and activity of the sugar-beet nematode as related to sugar-beet production. Nematologica 4:136–141.RaskiD. J.JohnsonR. T.1959Temperature and activity of the sugar-beet nematode as related to sugar-beet productionNematologica4136141Search in Google Scholar
Roberts, P. A. 1985. Nematodes. Pp. 81–88 in B. Rudd, ed. Integrated Pest Management for Cole Crops and Lettuce, University of California Statewide Integrated Pest Management Project Division of Agriculture and Natural Resources Publication 3307. Oakland, CA: Regents of the University of California Division of Agriculture and Natural Resources.RobertsP. A.1985Nematodes8188inRuddB.ed.Integrated Pest Management for Cole Crops and Lettuce, University of California Statewide Integrated Pest Management Project Division of Agriculture and Natural Resources Publication 3307Oakland, CARegents of the University of California Division of Agriculture and Natural ResourcesSearch in Google Scholar
Roberts, P. A., and Thomason, I. J. 1981. Sugarbeet pest management: Nematodes. University of California Division of Agriculture and Natural Resources Special Publication 3272.RobertsP. A.ThomasonI. J.1981Sugarbeet pest management: NematodesUniversity of California Division of Agriculture and Natural Resources Special Publication 3272Search in Google Scholar
Roberts, P. A., Thomason, I. J., and McKinney, H. E. 1981. Influence of nonhosts, crucifers, and fungal parasites on field populations of Heterodera schachtii. Journal of Nematology 13:164–171.RobertsP. A.ThomasonI. J.McKinneyH. E.1981Influence of nonhosts, crucifers, and fungal parasites on field populations of Heterodera schachtiiJournal of Nematology13164171Search in Google Scholar
Santo, G. S. and Bolander, W. J. 1979. Interacting effects of soil temperature and type on reproduction and pathogenicity of Heterodera schachtii and Meloidogyne hapla on sugarbeets. Journal of Nematology 11:289–291.SantoG. S.BolanderW. J.1979Interacting effects of soil temperature and type on reproduction and pathogenicity of Heterodera schachtii and Meloidogyne hapla on sugarbeetsJournal of Nematology11289291Search in Google Scholar
Sasser, J. N., and Freckman, D. W. 1987. A world perspective on nematology: The role of the society. Pp. 7–14 in J. A. Veech and D. W. Dickson, ed. Vistas on Nematology: A Commemoration of the Twenty-fifth Anniversary of the Society of Nematologists. Maryland: Society of Nematologists.SasserJ. N.FreckmanD. W.1987A world perspective on nematology: The role of the society714inVeechJ. A.DicksonD. W.ed.Vistas on Nematology: A Commemoration of the Twenty-fifth Anniversary of the Society of NematologistsMarylandSociety of NematologistsSearch in Google Scholar
Schill, S. R. 2015. California demo produces first low-carbon, whole-beet ethanol. Ethanol Producer Magazine. March 23, 2015. http://ethanolproducer.com/articles/12051/california-demo-produces-first-low-carbon-whole-beet-ethanol.SchillS. R.2015California demo produces first low-carbon, whole-beet ethanolEthanol Producer MagazineMarch 23, 2015. http://ethanolproducer.com/articles/12051/california-demo-produces-first-low-carbon-whole-beet-ethanol.Search in Google Scholar
Seinhorst, J. W. 1965. The relation between nematode density and damage to plants. Nematologica 11:137–154.SeinhorstJ. W.1965The relation between nematode density and damage to plantsNematologica11137154Search in Google Scholar
Spreckels Sugar Company. 2012. Growing sugarbeets in California. https://www.spreckelssugar.com/about.aspx.Spreckels Sugar Company2012Growing sugarbeets in Californiahttps://www.spreckelssugar.com/about.aspx.Search in Google Scholar
Steele, A. E. 1965. The host range of the sugar beet nematode, Heterodera schachtii Schmidt. Journal of the American Society of Sugarbeet Technologists 13:573–603.SteeleA. E.1965The host range of the sugar beet nematode, Heterodera schachtii SchmidtJournal of the American Society of Sugarbeet Technologists13573603Search in Google Scholar
Steele, A. E. 1984. Nematode parasites of sugar beet. Pp. 507–568 in W. R. Nickle, ed. Plant and Insect Nematodes. New York: Marcel Dekker.SteeleA. E.1984Nematode parasites of sugar beet507568inNickleW. R.ed.Plant and Insect NematodesNew YorkMarcel DekkerSearch in Google Scholar
Tedford, E. C., Jaffee, B. A., Muldoon, A. E., Anderson, C. E., and Westerdahl, B. B. 1993. Parasitism of Heterodera schachtii and Meloidogyne javanica by Hirsutella rhossiliensis in microplots over two growing seasons. Journal of Nematology 25:427–433.TedfordE. C.JaffeeB. A.MuldoonA. E.AndersonC. E.WesterdahlB. B.1993Parasitism of Heterodera schachtii and Meloidogyne javanica by Hirsutella rhossiliensis in microplots over two growing seasonsJournal of Nematology25427433Search in Google Scholar
Thomason, I. J., and Fife, D. 1962. The effect of temperature on development and survival of Heterodera schachtii schm. Nematologica 17:139–145.ThomasonI. J.FifeD.1962The effect of temperature on development and survival of Heterodera schachtii schmNematologica17139145Search in Google Scholar
Thompson, M. 2019. Red River Biorefinery gearing up for production. Ethanol Producer Magazine. December 13, 2019. http://ethanolproducer.com/articles/16778/red-river-biorefinery-gearing-up-for-production.ThompsonM.2019Red River Biorefinery gearing up for productionEthanol Producer MagazineDecember 13, 2019. http://ethanolproducer.com/articles/16778/red-river-biorefinery-gearing-up-for-production.Search in Google Scholar
Voegele, E. 2019. Report: EU ethanol consumption to increase in 2019. Ethanol Producer Magazine. August 05, 2019. http://ethanolproducer.com/articles/16422/report-eu-ethanol-consumption-to-increase-in-2019.VoegeleE.2019Report: EU ethanol consumption to increase in 2019Ethanol Producer MagazineAugust 05, 2019. http://ethanolproducer.com/articles/16422/report-eu-ethanol-consumption-to-increase-in-2019.Search in Google Scholar
Voegele, E. 2020. Report discusses impact of COVID-19 on EU biofuel consumption. Ethanol Producer Magazine. July 23, 2020. http://ethanolproducer.com/articles/17387/report-discusses-impact-of-covid-19-on-eu-biofuel-consumption.VoegeleE.2020Report discusses impact of COVID-19 on EU biofuel consumptionEthanol Producer MagazineJuly 23, 2020. http://ethanolproducer.com/articles/17387/report-discusses-impact-of-covid-19-on-eu-biofuel-consumption.Search in Google Scholar
Zhang, R., Williams, K., Nguyen, L., Rapport, J., Ong, M., Lei, N., and Zicari, S. 2011. Biofuel and bioenergy production from sugar beets. https://cfpub.epa.gov/ncer_abstracts/index.cfm/fuseaction/display.highlight/abstract_id/9167/report/F.ZhangR.WilliamsK.NguyenL.RapportJ.OngM.LeiN.ZicariS.2011Biofuel and bioenergy production from sugar beetshttps://cfpub.epa.gov/ncer_abstracts/index.cfm/fuseaction/display.highlight/abstract_id/9167/report/F.Search in Google Scholar