Accès libre

Use of Several Natural Products from Selected Nicotiana Species to Prevent Black Shank Disease in Tobacco

À propos de cet article

Citez

Bost, S. and D. Hensley: Plant Diseases – Black Shank of Tobacco, 2010; University of Tennessee, Institute of Agriculture, USA. Available at: https://utextension.tennessee.edu/washington/Documents/black_shank.pdf (Accessed June 30, 2016).BostS.HensleyD.Plant Diseases – Black Shank of Tobacco, 2010University of Tennessee, Institute of AgricultureUSAAvailable at: https://utextension.tennessee.edu/washington/Documents/black_shank.pdf (Accessed June 30, 2016)Search in Google Scholar

Pearce, B., B. Miller, E. Walker, M. Vann, and S. Whitley: Selecting Burley Tobacco Varieties; in: 2015–2016 Burley and Dark Tobacco Production Guide, edited by B. Pearce, 2015, pp. 3–10. Available at: https://tobacco.ces.ncsu.edu/wp-content/uploads/2015/04/2015-2016-Burley-Production-Guide.pdf?fwd=no (Accessed June 30, 2016).PearceB.MillerB.WalkerE.VannM.WhitleyS.Selecting Burley Tobacco Varieties2015–2016 Burley and Dark Tobacco Production GuidePearceB.2015310Available at: https://tobacco.ces.ncsu.edu/wp-content/uploads/2015/04/2015-2016-Burley-Production-Guide.pdf?fwd=no (Accessed June 30, 2016)Search in Google Scholar

Nesmith, W.: Effect of black shank on yield of burley tobacco; UK Cooperative Extension Service, 1994. Available at: http://www.uky.edu/Ag/IPM/ppfacts/ppfsagt3.htm (Accessed July 22, 2016).NesmithW.Effect of black shank on yield of burley tobaccoUK Cooperative Extension Service1994Available at: http://www.uky.edu/Ag/IPM/ppfacts/ppfsagt3.htm (Accessed July 22, 2016)Search in Google Scholar

Gallup, C.A., M.J. Sullivan, and H.D. Shew: Black Shank of Tobacco – The Plant Health Instructor; 2006. Available at: http://www.apsnet.org/edcenter/intropp/lessons/fungi/Oomycetes/Pages/BlackShank.aspx (Accessed June 30, 2016). 10.1094/PHI-I-2006-0717-01GallupC.A.SullivanM.J.ShewH.D.Black Shank of Tobacco – The Plant Health Instructor2006Available at: http://www.apsnet.org/edcenter/intropp/lessons/fungi/Oomycetes/Pages/BlackShank.aspx (Accessed June 30, 2016)10.1094/PHI-I-2006-0717-01Open DOISearch in Google Scholar

Bailey, W.A.: Evaluation of Variety Resistance and Fungicides for Control of Black Shank (Phytophthora nicotianae) in Dark Tobacco; CORESTA 2009 Meeting, Rovinj, Croatia, 2009, AP07. Available at: https://www.coresta.org/abstracts/evaluation-variety-resistance-and-fungicides-control-black-shank-phytophthora-nicotianae (Accessed June 30, 2016).BaileyW.A.Evaluation of Variety Resistance and Fungicides for Control of Black Shank (Phytophthora nicotianae) in Dark TobaccoCORESTA 2009 MeetingRovinj, Croatia2009AP07Available at: https://www.coresta.org/abstracts/evaluation-variety-resistance-and-fungicides-control-black-shank-phytophthora-nicotianae (Accessed June 30, 2016)Search in Google Scholar

Pearce, B., P. Denton, A. Bailey, and B. Miller: Selecting Burley Tobacco Varieties; in: 2013–2014 Kentucky & Tennessee Tobacco Production Guide; University of Kentucky UKnowledge, Agricultural and Natural Resources Publications, 2013, pp. 5–8. Available at: http://uknowledge.uky.edu/cgi/viewcontent.cgi?article=1073&context=anr_reports (Accessed June 30, 2016).PearceB.DentonP.BaileyA.MillerB.Selecting Burley Tobacco Varieties2013–2014 Kentucky & Tennessee Tobacco Production GuideUniversity of Kentucky UKnowledge, Agricultural and Natural Resources Publications201358Available at: http://uknowledge.uky.edu/cgi/viewcontent.cgi?article=1073&context=anr_reports (Accessed June 30, 2016)Search in Google Scholar

Cartwright, K.D. and H.W. Spurr Jr: Biological Control of Phytophthora parasitica var. nicotianae on Tobacco Seedlings with Non-Pathogenic Binucleate Rhizoctonia Fungi; Soil Biol. Biochem. 30 (1998) 1879–1884. 10.1016/S0038-0717(98)00019-4CartwrightK.D.SpurrH.W.JrBiological Control of Phytophthora parasitica var. nicotianae on Tobacco Seedlings with Non-Pathogenic Binucleate Rhizoctonia FungiSoil Biol. Biochem.3019981879188410.1016/S0038-0717(98)00019-4Open DOISearch in Google Scholar

Ren, X., N. Zhang, M. Cao, K. Wu, Q. Shen, and Q. Huang: Biological Control of Tobacco Black Shank and Colonization of Tobacco Roots by a Paenibacillus polymyxa Strain C5; Biol. Fertil. Soils 48 (2012) 613–620. 10.1007/s00374-011-0651-4RenX.ZhangN.CaoM.WuK.ShenQ.HuangQ.Biological Control of Tobacco Black Shank and Colonization of Tobacco Roots by a Paenibacillus polymyxa Strain C5Biol. Fertil. Soils48201261362010.1007/s00374-011-0651-4Open DOISearch in Google Scholar

Blagoeva-Nikolaeva, V., S. Slavov, and L. Varsano: Possibilities for Biological Control of Black Shank Disease in Tobacco with Bacillus cereus; Biotechnology & Biotechnological Equipment 9 (1995) 36–39. 10.1080/13102818.1995.10818819Blagoeva-NikolaevaV.SlavovS.VarsanoL.Possibilities for Biological Control of Black Shank Disease in Tobacco with Bacillus cereusBiotechnology & Biotechnological Equipment91995363910.1080/13102818.1995.10818819Open DOISearch in Google Scholar

Valleau, W.D., G.W. Stokes, and E.M. Johnson: Nine Years’ Experience with the Nicotiana longiflora Factor for Resistance to Phytophthora parasitica var. nicotianae in the Control of Black Shank; Tob. Sci. 4 (1960) 92–94.ValleauW.D.StokesG.W.JohnsonE.M.Nine Years’ Experience with the Nicotiana longiflora Factor for Resistance to Phytophthora parasitica var. nicotianae in the Control of Black ShankTob. Sci.419609294Search in Google Scholar

Seebold, K.: Hot, Dry Weather Exacerbating Black Shank; UKAgNews, 2012. Available at: http://news.ca.uky.edu/article/hot-dry-weather-exacerbating-black-shank (Accessed June 30, 2016).SeeboldK.Hot, Dry Weather Exacerbating Black ShankUKAgNews2012Available at: http://news.ca.uky.edu/article/hot-dry-weather-exacerbating-black-shank (Accessed June 30, 2016)Search in Google Scholar

Lu, M., Z. Han, and L. Yao: In Vitro and In Vivo Antimicrobial Efficacy of Essential Oils and Individual Compounds Against Phytophthora parasitica var. nicotianae; J. Appl. Microbiol. 115 (2013) 187–189. 10.1111/jam.12208LuM.HanZ.YaoL.In Vitro and In Vivo Antimicrobial Efficacy of Essential Oils and Individual Compounds Against Phytophthora parasitica var. nicotianaeJ. Appl. Microbiol.115201318718910.1111/jam.1220823551716Open DOISearch in Google Scholar

Monkiedje, A. and M. Spiteller: Degradation of Metalaxyl and Mefenoxam and Effects on the Microbiological Properties of Tropical and Temperate Soil; Int. J. Environ. Res. Public Health 2 (2005) 272–285.MonkiedjeA.SpitellerM.Degradation of Metalaxyl and Mefenoxam and Effects on the Microbiological Properties of Tropical and Temperate SoilInt. J. Environ. Res. Public Health2200527228510.3390/ijerph2005020011381063116705828Search in Google Scholar

Bailey, J.A., G.G. Vincent, and R.S. Burden: Diterpenes from Nicotiana glutinosa and their Effect on Fungal Growth; J. Gen. Microbiol. 85 (1974) 57–64. 10.1099/00221287-85-1-57BaileyJ.A.VincentG.G.BurdenR.S.Diterpenes from Nicotiana glutinosa and their Effect on Fungal GrowthJ. Gen. Microbiol.851974576410.1099/00221287-85-1-574436652Open DOISearch in Google Scholar

Chortyk, O.T., R.F. Severson, H.C. Cutler, and V.A. Sisson: Antibiotic Activities of Sugar Esters Isolated from Selected Nicotiana Species; Biosci. Biotechnol. Biochem. 57 (1993) 1355–1356. 10.1271/bbb.57.1355ChortykO.T.SeversonR.F.CutlerH.C.SissonV.A.Antibiotic Activities of Sugar Esters Isolated from Selected Nicotiana SpeciesBiosci. Biotechnol. Biochem.5719931355135610.1271/bbb.57.13557764019Open DOISearch in Google Scholar

Puterka, G.J., W. Farone, T. Palmer, and A. Barrington: Structure-Function Relationships Affecting the Insecticidal and Miticidal Activity of Sugar Esters; J. Econ. Entomol. 96 (2003) 636–644. 10.1093/jee/96.3.636PuterkaG.J.FaroneW.PalmerT.BarringtonA.Structure-Function Relationships Affecting the Insecticidal and Miticidal Activity of Sugar EstersJ. Econ. Entomol.96200363664410.1093/jee/96.3.636Open DOISearch in Google Scholar

Wang, E., R. Wang, J. DeParasis, J.H. Loughrin, S. Gan, and G.J. Wagner: Suppression of a P450 Hydroxylase Gene in Plant Trichome Glands Enhances Natural-Product-Based Aphid Resistance; Nat. Biotech. 19 (2001) 371–374. 10.1038/86770WangE.WangR.DeParasisJ.LoughrinJ.H.GanS.WagnerG.J.Suppression of a P450 Hydroxylase Gene in Plant Trichome Glands Enhances Natural-Product-Based Aphid ResistanceNat. Biotech.19200137137410.1038/8677011283597Open DOISearch in Google Scholar

Snook, M.E., O.T. Chortyk, and A.S. Csinos: Black Shank Disease Fungus Inhibition of Growth by Tobacco Root Constituents and Related Compounds; in: Naturally Occurring Pest Bioregulators; edited by P.A. Hedin, ACS Symposium Series, Washington DC, USA, Vol. 449, 2009, pp. 388–398. Available at: http://agris.fao.org/agris-search/search.do?recordID=US9145698 (Accessed June 30, 2016). 10.1021/bk-1991-0449.ch027SnookM.E.ChortykO.T.CsinosA.S.Black Shank Disease Fungus Inhibition of Growth by Tobacco Root Constituents and Related CompoundsNaturally Occurring Pest BioregulatorsHedinP.A.ACS Symposium SeriesWashington DC, USA4492009388398Available at: http://agris.fao.org/agris-search/search.do?recordID=US9145698 (Accessed June 30, 2016)10.1021/bk-1991-0449.ch027Open DOISearch in Google Scholar

Shepherd, R.W., W.T. Bass, R.L. Houtz, and G.J. Wagner: Phylloplanins of Tobacco are Defensive Proteins Deployed on Aerial Surfaces by Short Glandular Trichomes; Plant Cell 17 (2005) 1851–1861. 10.1105/tpc.105.031559ShepherdR.W.BassW.T.HoutzR.L.WagnerG.J.Phylloplanins of Tobacco are Defensive Proteins Deployed on Aerial Surfaces by Short Glandular TrichomesPlant Cell1720051851186110.1105/tpc.105.031559114308215894716Open DOISearch in Google Scholar

Kroumova, A.B., R.W. Shepherd, and G.J. Wagner: Impacts of T-Phylloplanin Gene Knockdown and of Helianthus and Datura phylloplanins on Perenospora tabacina Spore Germination and Disease Potential; Plant Physiol. 144 (2007) 1843–1851. 10.1104/pp.107.097584KroumovaA.B.ShepherdR.W.WagnerG.J.Impacts of T-Phylloplanin Gene Knockdown and of Helianthus and Datura phylloplanins on Perenospora tabacina Spore Germination and Disease PotentialPlant Physiol.14420071843185110.1104/pp.107.097584194989817573541Open DOISearch in Google Scholar

Shepherd, R.W. and G.J. Wagner: Fungi and Leaf Surfaces; in: Biocomplexity of Plant-Fungal Interactions; edited by D. Southworth, Wiley-Blackwell Press, New Jersey, USA, 2012, pp. 131–154.ShepherdR.W.WagnerG.J.Fungi and Leaf SurfacesBiocomplexity of Plant-Fungal InteractionsSouthworthD.Wiley-Blackwell PressNew Jersey, USA201213115410.1002/9781118314364.ch6Search in Google Scholar

King, B.C.: T-Phylloplanin and cis-Abienol, Two Natural Products from Tobacco Have Broad Spectrum, Anti-Fungal Activities; University of Kentucky Doctoral Dissertations, Paper 208, 2008. Available at: http://uknowledge.uky.edu/gradschool_diss/208/ (Accessed June 30, 2016).KingB.C.T-Phylloplanin and cis-Abienol, Two Natural Products from Tobacco Have Broad Spectrum, Anti-Fungal ActivitiesUniversity of Kentucky Doctoral Dissertations, Paper 2082008Available at: http://uknowledge.uky.edu/gradschool_diss/208/ (Accessed June 30, 2016)Search in Google Scholar

Severson, R.F., M.G. Stephenson, A.W Johnson, D.M. Jackson, and O.T. Chortyk: Isolation and Preparative Chromatography of the Major Cuticular Diterpenes of Green Tobacco; Tob. Sci. 32 (1988) 99–103.SeversonR.F.StephensonM.G.JohnsonA.WJacksonD.M.ChortykO.T.Isolation and Preparative Chromatography of the Major Cuticular Diterpenes of Green TobaccoTob. Sci.32198899103Search in Google Scholar

Guo, Z., R.F. Severson, and G.J. Wagner: Biosynthesis of the Diterpene cis-Abienol in Cell-Free Extracts of Tobacco Trichomes; Arch. Biochem. Biophys. 308 (1994) 103–108. 10.1006/abbi.1994.1015GuoZ.SeversonR.F.WagnerG.J.Biosynthesis of the Diterpene cis-Abienol in Cell-Free Extracts of Tobacco TrichomesArch. Biochem. Biophys.308199410310810.1006/abbi.1994.10158311442Open DOISearch in Google Scholar

Danehower, D.A. R.C. Long, C.P. Wilcox, A.K. Weissinger, T.A. Bartholomew, and H.E. Swaisgood: Tobacco as a Biochemical Resource: Past, Present, and Future; in: Biologically Active Natural Products: Agrochemicals; edited by H.G. Cutler and S.J. Cutler, CRC Press LLC, Boca Raton, Florida, USA, 1999, pp. 155–168. 10.1201/9781420048629.ch13DanehowerD.A.LongR.C.WilcoxC.P.WeissingerA.K.BartholomewT.A.SwaisgoodH.E.Tobacco as a Biochemical Resource: Past, Present, and FutureBiologically Active Natural Products: AgrochemicalsCutlerH.G.CutlerS.J.CRC Press LLCBoca Raton, Florida, USA199915516810.1201/9781420048629.ch13Open DOISearch in Google Scholar

Harborne, J.B.: Systematic Significance of Variations in Defense Chemistry in the Solanaceae; in: Solanaceae – Biology and Systematics; edited by W.G. D’Arcy, Columbia University Press, New York, USA, 1986, pp. 328–344.HarborneJ.B.Systematic Significance of Variations in Defense Chemistry in the SolanaceaeSolanaceae – Biology and SystematicsD’ArcyW.G.Columbia University PressNew York, USA1986328344Search in Google Scholar

Guo, Z. and G.J. Wagner: Biosynthesis of Labdenediol and Sclareol in Cell-Free Extracts from Trichomes of Nicotiana glutinosa; Planta 197 (1995) 627–632. 10.1007/BF00191570GuoZ.WagnerG.J.Biosynthesis of Labdenediol and Sclareol in Cell-Free Extracts from Trichomes of Nicotiana glutinosaPlanta197199562763210.1007/BF00191570Open DOISearch in Google Scholar

Caniard, A., P. Zerbe, S. Legrand, A. Cohade, N. Valot, J.L. Magnard, J. Bohlmann, and L. Legendre: Discovery and Functional Characterization of Two Diterpene Synthases for Sclareol Biosynthesis in Salvia sclarea (L.) and their Relevance for Perfume Manufacture; BMC Plant Biol. 12 (2012) 119–132. 10.1186/1471-2229-12-119CaniardA.ZerbeP.LegrandS.CohadeA.ValotN.MagnardJ.L.BohlmannJ.LegendreL.Discovery and Functional Characterization of Two Diterpene Synthases for Sclareol Biosynthesis in Salvia sclarea (L.) and their Relevance for Perfume ManufactureBMC Plant Biol.12201211913210.1186/1471-2229-12-119352073022834731Open DOISearch in Google Scholar

Seo, S., K. Gomi, H. Kaku, H. Abe, H. Seto, S. Nakatsu, M. Neya, M. Kobayashi, K. Nakaho, Y. Ichinose, I. Mitsuhara, and Y. Ohashi: Identification of Natural Diterpenes that Inhibit Bacterial Wilt Disease in Tobacco, Tomato and Arabidopsis; Plant Cell Physiol. 53 (2012) 1432–1444. 10.1093/pcp/pcs085SeoS.GomiK.KakuH.AbeH.SetoH.NakatsuS.NeyaM.KobayashiM.NakahoK.IchinoseY.MitsuharaI.OhashiY.Identification of Natural Diterpenes that Inhibit Bacterial Wilt Disease in Tobacco, Tomato and ArabidopsisPlant Cell Physiol.5320121432144410.1093/pcp/pcs08522685082Open DOISearch in Google Scholar

Huang, G.J., C.H. Pan, and C.H. Wu: Sclareol Exhibits Anti-Inflammatory Activity in Both Lipopolysaccharide-Stimulated Macrophages and the λ-Carrageenan-Induced Paw Edema Model; J. Nat. Prod. 75 (2012) 54–59. 10.1021/np200512aHuangG.J.PanC.H.WuC.H.Sclareol Exhibits Anti-Inflammatory Activity in Both Lipopolysaccharide-Stimulated Macrophages and the λ-Carrageenan-Induced Paw Edema ModelJ. Nat. Prod.752012545910.1021/np200512a22250858Open DOISearch in Google Scholar

Chinou, I., C. Demetzos, C. Harvala, C. Roussakis, and J.F. Verbist: Cytotoxic and Antibacterial Labdane-Type Diterpenes from the Aerial Parts of Cistus incanus subsp. creticus; Planta Med. 60 (1994) 34–36. 10.1055/s-2006-959403ChinouI.DemetzosC.HarvalaC.RoussakisC.VerbistJ.F.Cytotoxic and Antibacterial Labdane-Type Diterpenes from the Aerial Parts of Cistus incanus subsp. creticusPlanta Med.601994343610.1055/s-2006-9594038134413Open DOISearch in Google Scholar

Dimas, K., C. Demetzos, M. Marsellos, R. Sotiriadou, M. Malamas, and D. Kokkinopoulos: Cytotoxic Activity of Labdane Type Diterpenes Against Human Leukemic Cell Lines In Vitro; Planta Med. 64 (1998) 208–211. 10.1055/s-2006-957410DimasK.DemetzosC.MarsellosM.SotiriadouR.MalamasM.KokkinopoulosD.Cytotoxic Activity of Labdane Type Diterpenes Against Human Leukemic Cell Lines In VitroPlanta Med.64199820821110.1055/s-2006-9574109581515Open DOISearch in Google Scholar

Shepherd, R.W.: Phylloplanins – Novel Antifungal Proteins on Plant Leaf Surfaces; University of Kentucky Doctoral Dissertations, Paper 763, 2010. Available at: http://uknowledge.uky.edu/gradschool_diss/763 (Accessed June 30, 2016).ShepherdR.W.Phylloplanins – Novel Antifungal Proteins on Plant Leaf SurfacesUniversity of Kentucky Doctoral Dissertations, Paper 7632010Available at: http://uknowledge.uky.edu/gradschool_diss/763 (Accessed June 30, 2016)Search in Google Scholar

Severson, R.F., R.F. Arrendale, O.T. Chortyk, C.R. Green, F.A. Thome, J.L. Stewart, and A.W. Johnson: Isolation and Characterization of the Sucrose Esters of the Cuticular Waxes of Green Tobacco Leaf; J. Agric. Food Chem. 33 (1985) 870–875. 10.1021/jf00065a026SeversonR.F.ArrendaleR.F.ChortykO.T.GreenC.R.ThomeF.A.StewartJ.L.JohnsonA.W.Isolation and Characterization of the Sucrose Esters of the Cuticular Waxes of Green Tobacco LeafJ. Agric. Food Chem.33198587087510.1021/jf00065a026Open DOISearch in Google Scholar

Jeffers, S.N. and S.B. Martin: Comparison of Two Media Selective for Phytophthora and Pythium Species; Plant Disease 70 (1986) 1038–1043. 10.1094/PD-70-1038JeffersS.N.MartinS.B.Comparison of Two Media Selective for Phytophthora and Pythium SpeciesPlant Disease7019861038104310.1094/PD-70-1038Open DOISearch in Google Scholar

Latham, D.H.: A Black Shank Resistant Dark Fire-Cured Tobacco and Observations on Tobacco Black Shank in Tennessee; University of Tennessee, Agricultural Experiment Station, Bulletin, 1969, 1–13. Available at: http://trace.tennessee.edu/utk_agbulletin/149 (Accessed June 30, 2016).LathamD.H.A Black Shank Resistant Dark Fire-Cured Tobacco and Observations on Tobacco Black Shank in TennesseeUniversity of Tennessee, Agricultural Experiment Station, Bulletin1969113Available at: http://trace.tennessee.edu/utk_agbulletin/149 (Accessed June 30, 2016)Search in Google Scholar

Severson, R.F., R.V.W. Eckel, D.M. Jackson, V.A. Sisson, and M.G. Stephenson: Aphicidal Activity of Cuticular Components from Nicotiana tabacum; in: Natural and Engineered Pest Management Agents; edited by R.A. Heidin, J.J. Menn, and R.M. Hollingworth, ACS Symphosium Series, Washington DC, USA, Vol. 551, 1994, pp. 172–179. 10.1021/bk-1994-0551.ch012SeversonR.F.EckelR.V.W.JacksonD.M.SissonV.A.StephensonM.G.Aphicidal Activity of Cuticular Components from Nicotiana tabacumNatural and Engineered Pest Management AgentsHeidinR.A.MennJ.J.HollingworthR.M.ACS Symphosium SeriesWashington DC, USA551199417217910.1021/bk-1994-0551.ch012Open DOISearch in Google Scholar

Menetrez, M.L., H.W. Spurr, D.A. Danehower, and D.R. Lawson: Influence of Tobacco Leaf Surface Chemicals on Germination of Peronospora tabacina adam sporangia; J. Chem. Ecol. 16 (1990) 1565–1576.MenetrezM.L.SpurrH.W.DanehowerD.A.LawsonD.R.Influence of Tobacco Leaf Surface Chemicals on Germination of Peronospora tabacina adam sporangiaJ. Chem. Ecol.1619901565157610.1007/BF0101409024263827Search in Google Scholar

Kannwischer, M.E. and D.J. Mitchell: The Influence of a Fungicide on the Epidemiology of Black Shank of Tobacco; Phytopathology 68 (1978) 1760–1765.KannwischerM.E.MitchellD.J.The Influence of a Fungicide on the Epidemiology of Black Shank of TobaccoPhytopathology6819781760176510.1094/Phyto-68-1760Search in Google Scholar

Gutiérrez, W.A. and A.L. Mila: A Rapid Technique for Determination of Races of Phytophthora nicotianae on Tobacco; Plant Disease 91 (2007) 985–989. 10.1094/PDIS-91-8-0985GutiérrezW.A.MilaA.L.A Rapid Technique for Determination of Races of Phytophthora nicotianae on TobaccoPlant Disease91200798598910.1094/PDIS-91-8-098530780432Open DOISearch in Google Scholar

Csinos, A.S.: Stem and Root Resistance to Tobacco Black Shank; Plant Disease 83 (1999) 777–780. org/10.1094/PDIS.1999.83.8.777CsinosA.S.Stem and Root Resistance to Tobacco Black ShankPlant Disease831999777780org/10.1094/PDIS.1999.83.8.777Open DOISearch in Google Scholar

Litton, C.C., G.B. Collins, and P.D. Legg: A Greenhouse Technique for Screening Tobacco Seedlings for Black Shank Resistance; Tob. Sci. 14 (1970) 124–125.LittonC.C.CollinsG.B.LeggP.D.A Greenhouse Technique for Screening Tobacco Seedlings for Black Shank ResistanceTob. Sci.141970124125Search in Google Scholar

Kennedy, B.S., M.T. Nielsen, R.F. Severson, V.A. Sisson, M.K. Stephenson, and D.M. Jackson: Leaf surface chemicals from Nicotiana affecting germination of Peronospora tabacia (adam) sporangia; J. Chem. Ecol. 18 (1992) 1467–1479. 10.1007/BF00993221KennedyB.S.NielsenM.T.SeversonR.F.SissonV.A.StephensonM.K.JacksonD.M.Leaf surface chemicals from Nicotiana affecting germination of Peronospora tabacia (adam) sporangiaJ. Chem. Ecol.1819921467147910.1007/BF0099322124254279Open DOISearch in Google Scholar

Hieda, T., Y. Mikami, Y. Obi, and T. Kisaki: Microbial Transformation of cis-Abienol; Agric. Biol. Chem. 46 (1982) 2249–2255. 10.1080/00021369.1982.10865428HiedaT.MikamiY.ObiY.KisakiT.Microbial Transformation of cis-AbienolAgric. Biol. Chem.4619822249225510.1080/00021369.1982.10865428Open DOISearch in Google Scholar

eISSN:
1612-9237
Langue:
Anglais
Périodicité:
4 fois par an
Sujets de la revue:
General Interest, Life Sciences, other, Physics