Otwarty dostęp

Influence of scarification method on seed germination of the terrestrial orchid Anacamptis laxiflora (Lam.)


Zacytuj

Zhang SB, Yang Y, Li J, Qin J, Zhang W, Huang W, Hu H. Physiological diversity of or-chids. Plant Diversity 2018; 40(4): 196–208.ZhangSBYangYLiJQinJZhangWHuangWHuHPhysiological diversity of or-chidsPlant Diversity201840419620810.1016/j.pld.2018.06.003613727130740565Search in Google Scholar

Popova E, Kim HH, Saxena PK, Engelmann F, Pritchard HW. Frozen Beauty: The Cryobiotechnology of Orchid Diversity. Biotechnology Advances 2016; 34(4): 380–403.PopovaEKimHHSaxenaPKEngelmannFPritchardHWFrozen Beauty: The Cryobiotechnology of Orchid DiversityBiotechnology Advances201634438040310.1016/j.biotechadv.2016.01.00126792590Search in Google Scholar

Delforge P. Orchidées d’Europe, d’Afrique du Nord et du Proche Orient. Paris, Dela-chaux et Niestlé 2016. p 544.DelforgePOrchidées d’Europe, d’Afrique du Nord et du Proche OrientParisDela-chaux et Niestlé2016p544Search in Google Scholar

Hutchings MJ, Robbirt KM, Roberts DL, Davy AJ. Vulnerability of a specialized pollination mechanism to climate change revealed by a 356-year analysis. Botanical Journal of the Linnean Society 2018; 186(4): 498–509.HutchingsMJRobbirtKMRobertsDLDavyAJVulnerability of a specialized pollination mechanism to climate change revealed by a 356-year analysisBotanical Journal of the Linnean Society2018186449850910.1093/botlinnean/box086Search in Google Scholar

Hinsley A, De Boer HJ, Fay MF, Gale SW, Gardiner LM, Gunasekara RS, Kumar P, Masters S, Metusala D, Roberts DL, Veldman S, Wong S, Phelps J. A review of the trade in orchids and its implications for conservation. Botanical Journal of the Linnean Society 2018; 186(4): 435–455.HinsleyADeBoer HJFayMFGaleSWGardinerLMGunasekaraRSKumarPMastersSMetusalaDRobertsDLVeldmanSWongSPhelpsJ.A review of the trade in orchids and its implications for conservationBotanical Journal of the Linnean Society2018186443545510.1093/botlinnean/box083Search in Google Scholar

Kreziou A, De Boer HJ, Gravendeel B. Harvesting of salep orchids in north-western Greece continues to threaten natural populations. Oryx 2016; 50(3): 393–396.KreziouADeBoer HJGravendeelB.Harvesting of salep orchids in north-western Greece continues to threaten natural populationsOryx201650339339610.1017/S0030605315000265Search in Google Scholar

Masters S, van Andel T, De Boer HJ, Heijungs R, Gravendeel B. Patent analysis as a novel method for exploring commercial interest in wild harvested species. Biological Conservation 2020; 243(June 2019): 108454.MastersSvanAndel TDeBoer HJHeijungsRGravendeelB.Patent analysis as a novel method for exploring commercial interest in wild harvested speciesBiological Conservation2020243June 201910845410.1016/j.biocon.2020.108454Search in Google Scholar

Gerakis A, Haldas X, Giannakoulias M. Anacamptis palustris subsp. robusta (Orchidaceae): a new record to the flora of Cephalonia, Greece. J Eur Orch 2016; 48(1): 11–18.GerakisAHaldasXGiannakouliasMAnacamptis palustris subsprobusta (Orchidaceae): a new record to the flora of Cephalonia, Greece. J Eur Orch20164811118Search in Google Scholar

Hirth M. A long-term survey of orchids on the small Greek Island Agathonisi from 1994 to 2013. J Eur Orch 2016; 48(1): 37–52.HirthMA long-term survey of orchids on the small Greek Island Agathonisi from 1994 to 2013J Eur Orch20164813752Search in Google Scholar

Katsalirou E, Gerakis A, Haldas X, Deconninck G. Optimal disinfection times for seeds of mediterranean orchids propagated on nutrient media. European Journal of Environmental Sciences 2017; 7(2): 119–124.KatsalirouEGerakisAHaldasXDeconninckGOptimal disinfection times for seeds of mediterranean orchids propagated on nutrient mediaEuropean Journal of Environmental Sciences20177211912410.14712/23361964.2017.10Search in Google Scholar

Rasmussen HN. Terrestrial orchids: From seed to mycotrophic plant. Cambridge, Cambridge University Press 1995. p 444.RasmussenHNTerrestrial orchids: From seed to mycotrophic plantCambridgeCambridge University Press1995p44410.1017/CBO9780511525452Search in Google Scholar

Jevšnik T, Luthar Z. Successful disinfection protocol for orchid seeds and influence of gelling agent on germination and growth. Acta Agriculturae Slovenica 2015; 105(1): 95–102.JevšnikTLutharZSuccessful disinfection protocol for orchid seeds and influence of gelling agent on germination and growthActa Agriculturae Slovenica201510519510210.14720/aas.2015.105.1.10Search in Google Scholar

Ponert J, Vosolsobě S, Kmecová K, Lipavská H. European orchid cultivation – from seed to mature plant. European Journal of Environmental Sciences 2012; 1(2): 95–107.PonertJVosolsoběSKmecováKLipavskáH.European orchid cultivation – from seed to mature plantEuropean Journal of Environmental Sciences2012129510710.14712/23361964.2015.52Search in Google Scholar

Chen Y, Goodale UM, Fan XL, Gao JY. Asymbiotic seed germination and in vitro seedling development of Paphiopedilum spicerianum: An orchid with an extremely small population in China. Global Ecology and Conservation 2015; 3: 367–378.ChenYGoodaleUMFanXLGaoJYAsymbiotic seed germination and in vitro seedling development of Paphiopedilum spicerianum: An orchid with an extremely small population in ChinaGlobal Ecology and Conservation2015336737810.1016/j.gecco.2015.01.002Search in Google Scholar

Godo T, Komori M, Nakaoki E. Germination of mature seeds of Calanthe tricarinata Lindl., an endangered terrestrial orchid, by asymbiotic culture in vitro. In Vitro Cellular & Developmental Biology - Plant 2010; 46: 323–328.GodoTKomoriMNakaokiEGermination of mature seeds of Calanthe tricarinata Lindl., an endangered terrestrial orchid, by asymbiotic culture in vitroIn Vitro Cellular & Developmental Biology - Plant20104632332810.1007/s11627-009-9271-1Search in Google Scholar

Hicks AJ. Asymbiotic Technique of Orchid Seed Germination. The Orchid Seedbank Project, USA, Arizona, Chandler 2000. p 134.HicksAJAsymbiotic Technique of Orchid Seed Germination. The Orchid Seedbank ProjectUSA, Arizona, Chandler2000p134Search in Google Scholar

Malmgren S. On the origin of Ophrys species. J. of the Hardy Orchid Society 2004; 1(3): 74–81.MalmgrenSOn the origin of Ophrys speciesJ. of the Hardy Orchid Society2004137481Search in Google Scholar

Malmgren S, Nyström H. Orchid propagation 2020. Available at http://www.lidaforsgarden.com/orchids/engelsk.htm Accessed 17 Aug 2020.MalmgrenSNyströmHOrchid propagation2020Available athttp://www.lidaforsgarden.com/orchids/engelsk.htmAccessed 17 Aug 2020Search in Google Scholar

Katsalirou E, Gerakis A, Haldas X. Optimal scarification times for seeds of two Mediterranean orchids. European Journal of Environmental Sciences 2019; 9(1): 47–52.KatsalirouEGerakisAHaldasXOptimal scarification times for seeds of two Mediterranean orchidsEuropean Journal of Environmental Sciences201991475210.14712/23361964.2019.6Search in Google Scholar

Delforge P. Orchids of Europe, North Africa and the Middle East. Paris, Delachaux et Niestlé 2005. p 640.DelforgePOrchids of Europe, North Africa and the Middle EastParisDelachaux et Niestlé2005p640Search in Google Scholar

Garbaye J. La symbiose mycorhizienne : une association entre les plantes et les champignons. Versailles, Editions Quae 2013. p 284.GarbayeJLa symbiose mycorhizienne : une association entre les plantes et les champignons. Versailles, Editions Quae2013p284Search in Google Scholar

Marschner H. Mineral nutrition of higher plants. CA, San Diego, Academic Press 1995. p 889.MarschnerHMineral nutrition of higher plantsCA, San DiegoAcademic Press1995p889Search in Google Scholar

Bakar B, Abdul Latip M, Azlan Gansau J. Asymbiotic germination and seedling development of dimorphics lowii (Orchidaceae). Asian Journal of Plant Biology 2014; 2(1): 18–27.BakarBAbdulLatip MAzlanGansau J.Asymbiotic germination and seedling development of dimorphics lowii (Orchidaceae)Asian Journal of Plant Biology201421182710.54987/ajpb.v2i1.85Search in Google Scholar

Lee YI, Chen MC, Huang CY. Effect of medium composition on asymbiotic seed germination of five Phalaenopsis species. Acta Horticulturae 2010; 878: 225–230.LeeYIChenMCHuangCYEffect of medium composition on asymbiotic seed germination of five Phalaenopsis speciesActa Horticulturae201087822523010.17660/ActaHortic.2010.878.27Search in Google Scholar

Lee YI, Yeung ECT. Orchid Propagation: From Laboratories to Greenhouses—Methods and Protocols. Lee YI, Yeung ECT (Eds) NY, New York, Springer New York 2018. p 516.LeeYIYeungECTOrchid Propagation: From Laboratories to Greenhouses—Methods and Protocols. Lee YI, Yeung ECT (Eds) NYNew York, Springer New York2018p51610.1007/978-1-4939-7771-0Search in Google Scholar

El Sanharawi M, Naudet F. Comprendre la régression logistique. Journal Français d’Ophtalmologie 2013; 36(8): 710–715.ElSanharawi MNaudetFComprendre la régression logistiqueJournal Français d’Ophtalmologie201336871071510.1016/j.jfo.2013.05.00823953846Search in Google Scholar

Jaeger TF. Categorical data analysis: Away from ANOVAs (transformation or not) and towards logit mixed models. Journal of Memory and Language 2008; 59(4): 434–446.JaegerTFCategorical data analysis: Away from ANOVAs (transformation or not) and towards logit mixed modelsJournal of Memory and Language200859443444610.1016/j.jml.2007.11.007261328419884961Search in Google Scholar

Rouvière L. Régression logistique avec R. Université Rennes 2, UFR Sciences Sociales 2015. Available at https://perso.univ-rennes2.fr/system/files/users/rouviere_l/poly_logistique_web.pdf Accessed 17 Aug 2020.RouvièreL.Régression logistique avec R. Université Rennes 2, UFR Sciences Sociales2015Available athttps://perso.univ-rennes2.fr/system/files/users/rouviere_l/poly_logistique_web.pdfAccessed 17 Aug 2020Search in Google Scholar

R Core Team. R: A language and environment for statistical computing. Austria, Vienna, R Foundation for Statistical Computing 2016. URL http://www.R-project.org/R Core Team. R: A language and environment for statistical computing. Austria, Vienna, R Foundation for Statistical Computing2016URLhttp://www.R-project.org/Search in Google Scholar

Zeng S, Wu K, Teixeira da Silva JA, Zhang J, Chen Z, Xia N, Duan J. Asymbiotic seed germination, seedling development and reintroduction of Paphiopedilum wardii Sumerh., an endangered terrestrial orchid. Scientia Horticulturae 2012; 138: 198–209.ZengSWuKTeixeirada Silva JAZhangJChenZXiaNDuanJ.Asymbiotic seed germination, seedling development and reintroduction of Paphiopedilum wardii Sumerh., an endangered terrestrial orchidScientia Horticulturae201213819820910.1016/j.scienta.2012.02.026Search in Google Scholar

Kauth PJ, Dutra D, Johnson TR, Stewart SL, Kane ME, Vendrame W. Techniques and Applications of In Vitro Orchid Seed Germination. In Floriculture, Ornamental and Plant Biotechnology. Teixeira da Silva JA (Ed) UK, Global Science Books Ltd 2008; 375–391.KauthPJDutraDJohnsonTRStewartSLKaneMEVendrameWTechniques and Applications of In Vitro Orchid Seed Germination. In Floriculture, Ornamental and Plant Biotechnology. Teixeira da Silva JA (Ed) UKGlobal Science Books Ltd2008375391Search in Google Scholar

Bozdemir H, Çiğ A, Türkoğlu N. Effects of different concentrations of carbohydrate forms on Orchis sancta L. Propagation in vitro. Applied Ecology and Environmental Research 2018; 16(4): 4849–4864.BozdemirHÇiğATürkoğluNEffects of different concentrations of carbohydrate forms on Orchis sancta LPropagation in vitro. Applied Ecology and Environmental Research20181644849486410.15666/aeer/1604_48494864Search in Google Scholar

Nykiforuk CL, Johnson-Flanagan AM. Germination and early seedling development under low temperature in canola. Crop Science 1994; 34: 1047–1054.NykiforukCLJohnson-FlanaganAMGermination and early seedling development under low temperature in canolaCrop Science1994341047105410.2135/cropsci1994.0011183X003400040039xSearch in Google Scholar

Gray SW, Edwards BF. Effects of centrifugal forces on growth and form of coleoptile of wheat. Journal of Cellular and Comparative Physiology 1995; 46(1): 97–125.GraySWEdwardsBFEffects of centrifugal forces on growth and form of coleoptile of wheatJournal of Cellular and Comparative Physiology19954619712510.1002/jcp.1030460106Search in Google Scholar

Kostoff D. The effect of centrifuging upon the germinated seeds from various plants. Cytologia 1938; 8(3–4): 420– 442.KostoffDThe effect of centrifuging upon the germinated seeds from various plantsCytologia193883–442044210.1508/cytologia.8.420Search in Google Scholar

Siegel SM, Renwick G, Daly O, Giumarro C, Davis G, Halpern L. The survival capabilities and the performance of earth organisms in simulated extraterrestrial environments. In Current Aspects of Exobiology. Mamikunian G, Briggs MH (Eds) Oxford, Permagon Press 1965; 119–178.SiegelSMRenwickGDalyOGiumarroCDavisGHalpernLThe survival capabilities and the performance of earth organisms in simulated extraterrestrial environments. In Current Aspects of ExobiologyMamikunianGBriggsMHEdsOxfordPermagon Press196511917810.1016/B978-1-4832-0047-7.50010-1Search in Google Scholar

Norris Jr WE, Wikinson MN. The effects of centrifugation and hydrostatic pressure on Avena germination and seedling development. Zeitschrift Für Pflanzenphysiologie 1980; 98(4): 311–319.NorrisJr WEWikinsonMN.The effects of centrifugation and hydrostatic pressure on Avena germination and seedling developmentZeitschrift Für Pflanzenphysiologie198098431131910.1016/S0044-328X(80)80261-3Search in Google Scholar

Raghavan V. Developmental Biology of Fern Gametophytes. Cambridge, Cambridge University Press 1989. p 361.RaghavanVDevelopmental Biology of Fern GametophytesCambridgeCambridge University Press1989p36110.1017/CBO9780511529757Search in Google Scholar

Otter JA, Vickery K, Walker JT, deLancey Pulcini E, Stoodley P, Goldenberg SD, Salkeld JAG, Chewins J, Yezli S, Edgeworth JD. Surface-attached cells, biofilms and biocide susceptibility: Implications for hospital cleaning and disinfection. Journal of Hospital Infection 2015; 89(1): 16–27.OtterJAVickeryKWalkerJTdeLanceyPulcini EStoodleyPGoldenbergSDSalkeldJAGChewinsJYezliSEdgeworthJD.Surface-attached cells, biofilms and biocide susceptibility: Implications for hospital cleaning and disinfectionJournal of Hospital Infection2015891162710.1016/j.jhin.2014.09.00825447198Search in Google Scholar

Randhawa V, Thakkar M, Wei L. Effect of algal growth phase on Aureococcus anopha-gefferens susceptibility to hydrogen peroxide. Aquatic Toxicology 2013; 142–143: 230–238.RandhawaVThakkarMWeiLEffect of algal growth phase on Aureococcus anopha-gefferens susceptibility to hydrogen peroxideAquatic Toxicology2013142–14323023810.1016/j.aquatox.2013.08.01524055756Search in Google Scholar

Ahn SJ, Qu MD, Roberts E, Burne RA, Rice KC. Identification of the Streptococcus mutans LytST two-component regulon reveals its contribution to oxidative stress tolerance. BMC Microbiology 2012; 12(1): 187.AhnSJQuMDRobertsEBurneRARiceKCIdentification of the Streptococcus mutans LytST two-component regulon reveals its contribution to oxidative stress toleranceBMC Microbiology201212118710.1186/1471-2180-12-187350784822937869Search in Google Scholar

Evans DJ, Brown MRW, Allison DG, Gilbert P. Susceptibility of bacterial biofilms to tobramycin: Role of specific growth rate and phase in the division cycle. Journal of Antimicrobial Chemotherapy 1990; 25(4): 585–591.EvansDJBrownMRWAllisonDGGilbertPSusceptibility of bacterial biofilms to tobramycin: Role of specific growth rate and phase in the division cycleJournal of Antimicrobial Chemotherapy199025458559110.1093/jac/25.4.5852190969Search in Google Scholar

Hyatt MT, Levinson HS. Effect of Sugars and Other Carbon Compounds on Germination and Postgerminative Development of Bacillus Megaterium Spores. Journal of Bacteriology 1964; 88(5): 1403–1415.HyattMTLevinsonHSEffect of Sugars and Other Carbon Compounds on Germination and Postgerminative Development of Bacillus Megaterium SporesJournal of Bacteriology19648851403141510.1128/jb.88.5.1403-1415.196427742314234800Search in Google Scholar

Tehri N, Kumar N, Yadav A, Raghu HV, Singh NA. Sugars mediated germination in spores of Bacillus megaterium. International Journal of Microbiology Research 2018; 10(3): 1058–1061.TehriNKumarNYadavARaghuHVSinghNASugars mediated germination in spores of Bacillus megateriumInternational Journal of Microbiology Research20181031058106110.9735/0975-5276.10.3.1058-1061Search in Google Scholar

Anusha A, Mahesh YS, Mesta RK, Basavarajappa MP, Patil SN, Babu AG. Effect of different sugar solutions, temperature and relative humidity on uredospore germination of Cerotelium fici (Cast.) Arth. causing rust disease on fig (Ficus carica Linn.). International Journal of Current Microbiology and Applied Sciences 2018; 7(11): 3558–3565.AnushaAMaheshYSMestaRKBasavarajappaMPPatilSNBabuAGEffect of different sugar solutions, temperature and relative humidity on uredospore germination of Cerotelium fici (Cast.) Arthcausing rust disease on fig (Ficus carica Linn.). International Journal of Current Microbiology and Applied Sciences20187113558356510.20546/ijcmas.2018.711.408Search in Google Scholar

Grover RK, Bansal RD. The effect of carbohydrates on growth and sporulation of Aspergillus flavus and their carry over for subsequent spore germination. Sydowia 1967; 23: 169–180.GroverRKBansalRDThe effect of carbohydrates on growth and sporulation of Aspergillus flavus and their carry over for subsequent spore germinationSydowia196723169180Search in Google Scholar

eISSN:
2564-615X
Język:
Angielski
Częstotliwość wydawania:
4 razy w roku
Dziedziny czasopisma:
Life Sciences, Genetics, Biotechnology, Bioinformatics, other