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The effect of soil type and ecosystems on the soil nematode and microbial communities


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Alphei. J. (1998): Differences in soil nematode community structure of beech forests: comparison between a mull and a moder soil. Appl. Soil Ecol., 9(1–3): 9–15. DOI: 10.1016/S0929-1393(98)00047-XAlpheiJ.1998Differences in soil nematode community structure of beech forests: comparison between a mull and a moder soilAppl. Soil Ecol91–391510.1016/S0929-1393(98)00047-XOpen DOISearch in Google Scholar

Bai, J., Lin, X., Yinm, R. (2008): The influence of arbuscular mycorrhizal fungi on As and P uptake by maize Zea mays L. from As-contaminated soils. Appl. Soil Ecol., 38(2): 137–145. DOI: 10.1016/j.apsoil.2007.10.002BaiJ.LinX.YinmR.2008The influence of arbuscular mycorrhizal fungi on As and P uptake by maize Zea mays Lfrom As-contaminated soils. Appl. Soil Ecol38213714510.1016/j.apsoil.2007.10.002Open DOISearch in Google Scholar

Briar, S.S., Grewal, P.S., Somasekhar, N. (2007): Soil nematode community, organic matter, microbial biomass and nitrogen dynamics in field plots transitioning from conventional to organic management. Appl. Soil Ecol., 37(3): 256–266. DOI: 10.1016/j.apsoil.2007.08.004BriarS.S.GrewalP.S.SomasekharN.2007Soil nematode community, organic matter, microbial biomass and nitrogen dynamics in field plots transitioning from conventional to organic managementAppl. Soil Ecol37325626610.1016/j.apsoil.2007.08.004Open DOISearch in Google Scholar

Bhusal, D.R., Kallimanis, A.S., Tsiafouli, M.A., Sgardelis, S.P. (2014): Higher taxa vs. functional guilds vs. trophic groups as indicators of soil nematode diversity and community structure. Ecol. Indic., 41: 25–29. DOI: 10.1016/j.ecolind.2014.01.019BhusalD.R.KallimanisA.S.TsiafouliM.A.SgardelisS.P.2014Higher taxa vsfunctional guilds vs. trophic groups as indicators of soil nematode diversity and community structure. Ecol. Indic41252910.1016/j.ecolind.2014.01.019Open DOISearch in Google Scholar

Bloem, J., de Ruiter, P.C., Koopman, G.J., Lebbink, G., Brussaard, L. (1992). Microbial numbers and activity in dried and rewetted arable soil under integrated and conventional management. Soil Biol. Biochem., 24(7): 655–665. DOI: 10.1016/0038-0717(92)90044-X Bobuľská, L., Fazekašová, D., Angelovičová L. (2015): Vertical profiles of soil properties and microbial activities in peatbog soils in Slovakia. Environmental Process 2(1): 411–418. DOI: 10.1007/s40710-015-0073-7BloemJ.de RuiterP.C.KoopmanG.J.LebbinkG.BrussaardL.1992Microbial numbers and activity in dried and rewetted arable soil under integrated and conventional managementSoil Biol. Biochem24765566510.1016/0038-0717(92)90044-XBobuľská, L., Fazekašová, D., Angelovičová L. (2015): Vertical profiles of soil properties and microbial activities in peatbog soils in Slovakia. Environmental Process 2(1): 411–418. 10.1007/s40710-015-0073-7Open DOISearch in Google Scholar

Blagodatskii, S. A., Bogomolova, I. N., Blagodatskaya, E. V. (2008). Microbial biomass and growth kinetics of microorganisms in chernozem soils under different land use modes. Microbiology77(1): 99–106. DOI: 10.1134/S0026261708010141BlagodatskiiS. A.BogomolovaI. N.BlagodatskayaE. V.2008Microbial biomass and growth kinetics of microorganisms in chernozem soils under different land use modesMicrobiology7719910610.1134/S0026261708010141Open DOISearch in Google Scholar

Bongers T. (1990): The maturity index: an ecological measure of environmental disturbance based on nematode species composition. Oecologia 83(1): 14–19. DOI: 10.1007/BF00324627BongersT.1990The maturity index: an ecological measure of environmental disturbance based on nematode species compositionOecologia831141910.1007/BF00324627Open DOISearch in Google Scholar

Bongers, T., Bongers, M. (1998): Functional diversity of nematodes. Appl. Soil Ecol., 10(3): 239–251. DOI: 10.1016/S0929-1393(98)00123-1BongersT.BongersM.1998Functional diversity of nematodesAppl. Soil Ecol10323925110.1016/S0929-1393(98)00123-1Open DOISearch in Google Scholar

Buckley, D.H., Schmidt, T.M. (2001): The structure of microbial communities in soil and the lasting impact of cultivation. Microb. Ecol. 42(1): 11–21. DOI: 10.1007/s002480000108BuckleyD.H.SchmidtT.M.2001The structure of microbial communities in soil and the lasting impact of cultivationMicrob. Ecol421112110.1007/s00248000010812035077Open DOISearch in Google Scholar

Buchanan, M., King, L.D. (1992). Seasonal fluctuations in soil microbial biomass carbon, phosphorus, and activity in no-till and reduced-chemical-input maize agroecosystems. Biol. Fertil. Soils 13(4): 211–217. DOI: 10.1007/BF00340578BuchananM.KingL.D.1992Seasonal fluctuations in soil microbial biomass carbon, phosphorus, and activity in no-till and reduced-chemical-input maize agroecosystemsBiol. Fertil. Soils13421121710.1007/BF00340578Open DOISearch in Google Scholar

Cesarz, S., Ruess, L., Jacob, M., Jacob, A., Schaefer, M., Scheu, S. (2013). Tree species diversity versus tree species identity: driving forces in structuring forest food webs as indicated by soil nematodes. Soil Biol. Biochem. 62: 36–45. DOI: 10.1016/j.soilbio.2013.02.020CesarzS.RuessL.JacobM.JacobA.SchaeferM.ScheuS.2013Tree species diversity versus tree species identity: driving forces in structuring forest food webs as indicated by soil nematodesSoil Biol. Biochem62364510.1016/j.soilbio.2013.02.020Open DOISearch in Google Scholar

Compton, J.E, Boone, R.D. (2000): Long-term impacts of agriculture on soil carbon and nitrogen in New England forests. Ecology 81(8): 2314–2330. DOI: 10.1890/0012-9658(2000)081ComptonJ.E, Boone, R.D.2000Long-term impacts of agriculture on soil carbon and nitrogen in New England forestsEcology8182314233010.1890/0012-9658(2000)081Open DOISearch in Google Scholar

Cob, N.A. (1918): Estimating the nematode population of the soil. Agric Tech Circ Bur Pl Ind US Dep Agric No.1, 150 ppCobN.A.1918Estimating the nematode population of the soil. Agric Tech Circ Bur Pl Ind US Dep Agric No.1150Search in Google Scholar

Čerevková, A (2006): Nematode communities in three types of grassland in the Slovak Republic. Helminthologia 43(3): 171–176. DOI: 10.2478/s11687-006-0032-yČerevkováA2006Nematode communities in three types of grassland in the Slovak RepublicHelminthologia43317117610.2478/s11687-006-0032-yOpen DOISearch in Google Scholar

Čerevková, A., Renčo, M., Cagáň, L. (2013): Short-term effects of forest disturbances on soil nematode communities in European mountain spruce forests. J. Helminth., 87(3): 376–385. DOI: 10.1017/S0022149X12000508ČerevkováA.RenčoM.CagáňL.2013Short-term effects of forest disturbances on soil nematode communities in European mountain spruce forestsJ. Helminth87337638510.1017/S0022149X12000508Open DOISearch in Google Scholar

Degens, B.P., Haris, J.A. (1997): Development of a physiological approach to measuring the catabolic diversity of soil microbial communities. Soil Biol. Biochem., 29(9–10): 1309–1320. DOI: 10.1016/S0038-0717(97)00076-XDegensB.P.HarisJ.A.1997Development of a physiological approach to measuring the catabolic diversity of soil microbial communitiesSoil Biol. Biochem299–101309132010.1016/S0038-0717(97)00076-XOpen DOISearch in Google Scholar

Dick, R.P. (1992): A review: long-term effects of agricultural systems on soil biochemical and microbial parameters. Agric. Ecos. Envir., 40(1–4): 25–36. DOI: 10.1016/0167-8809(92)90081-LDickR.P.1992A review: long-term effects of agricultural systems on soil biochemical and microbial parametersAgric. Ecos. Envir401–4253610.1016/0167-8809(92)90081-LOpen DOISearch in Google Scholar

Domsch, K.H., Jagnow, G., Anderson, T.H. (1983): An ecological concept for the assessment of side-effects of agrochemicals on soil microorganisms. In: Gunther, F.A. (Ed) Residue Reviews. Springer, New York, NY, pp. 65–130DomschK.H.JagnowG.AndersonT.H.1983An ecological concept for the assessment of side-effects of agrochemicals on soil microorganismsGuntherF.A.Residue ReviewsSpringer, New York, NY6513010.1007/978-1-4612-5473-7_2Search in Google Scholar

Ekschmit, K., Bakonyi, G., Bongers, M., Bongers, T., Boström, S., Dogan, H., Sohlenius, B. (2001): Nematode community structure as indicator of soil functioning in European grassland soils. Eur. J Soil Biol. 37(4): 263–268. DOI: 10.1016/S1164-5563(01)01095-0EkschmitK.BakonyiG.BongersM.BongersT.BoströmS.DoganH.SohleniusB.2001Nematode community structure as indicator of soil functioning in European grassland soilsEur. J Soil Biol37426326810.1016/S1164-5563(01)01095-0Open DOISearch in Google Scholar

Fang, X., Yu, D., Zhou, W., Zhou, L., Dai, L. (2016). The effects of forest type on soil microbial activity in Changbai Mountain, Northeast China. Annals For. Sci., 73(2), 473–482. DOI: 10.1007/s13595-016-0540-yFangX.YuD.ZhouW.ZhouL.DaiL.2016The effects of forest type on soil microbial activity in Changbai Mountain, Northeast ChinaAnnals For. Sci73247348210.1007/s13595-016-0540-yOpen DOISearch in Google Scholar

Fernandes, E.C.M., Motaval i, P.P., Castil a, C., Mukurumbira, L. (1997): Management control of soil organic matter dynamics in tropical land-use systems. Geoderma, 79(1–4): 49–67. DOI: 10.1016/S0016-7061(97)00038-4FernandesE.C.M.Motaval iP.P.Castil aC.MukurumbiraL.1997Management control of soil organic matter dynamics in tropical land-use systemsGeoderma791–4496710.1016/S0016-7061(97)00038-4Open DOISearch in Google Scholar

Ferris, H., Bongers, T., De Goede, R.G.M. (2001): A framework for soil food web diagnostics: extension of the nematode faunal analysis concept. Appl. Soil Ecol., 18(1): 13–29. DOI: 10.1016/S0929-1393(01)00152-4FerrisH.BongersT.De GoedeR.G.M.2001A framework for soil food web diagnostics: extension of the nematode faunal analysis conceptAppl. Soil Ecol181132910.1016/S0929-1393(01)00152-4Open DOISearch in Google Scholar

Flis, L., Dobosz, R., Rybarczyk-Mydlowska, K., Wasilewska-Nasciemento, B., Kubicz, M., Winiszewska, G. (2018): First report of the lesion nematodes: Pratylenchus brachyurus and Pratylenchus delattrei on tomato Solanum lycopersicum L.) plants in Cape Verde. Helminthologia, 55(1): 88–94. DOI: 10.1515/helm-2017-0053FlisL.DoboszR.Rybarczyk-MydlowskaK.Wasilewska-NasciementoB.KubiczM.WiniszewskaG.2018First report of the lesion nematodes: Pratylenchus brachyurus and Pratylenchus delattrei on tomato Solanum lycopersicum L.) plants in Cape VerdeHelminthologia551889410.1515/helm-2017-0053679953131662632Open DOISearch in Google Scholar

Fuhrman, J.A. (2009): Microbial community structure and its functional implications. Nature, 459:193–199FuhrmanJ.A.2009Microbial community structure and its functional implicationsNature45919319910.1038/nature0805819444205Search in Google Scholar

Garland, J.L., Mills, A.L. (1991): Classification and characterization of heterotrophic microbial communities on the basis of patterns of community-level sole-carbon-source utilization. Appl. Environ. Microb., 57(8): 2351–2359GarlandJ.L.MillsA.L.1991Classification and characterization of heterotrophic microbial communities on the basis of patterns of community-level sole-carbon-source utilizationAppl. Environ. Microb5782351235910.1128/aem.57.8.2351-2359.199118357516348543Search in Google Scholar

Garbach, K., Milder, J.C., DeClerck, F.A., Montenegro, de Wit M., Driscol, L., Gemmil -Herren, B. (2017): Examining multi-functionality for crop yield and ecosystem services in five systems of agroecological intensification. Int. J. Agric. Sustain 15(1): 11–28. DOI: 10.1080/14735903.2016.1174810GarbachK.MilderJ.C.DeClerckF.A.Montenegrode Wit M.DriscolL.Gemmil -HerrenB.2017Examining multi-functionality for crop yield and ecosystem services in five systems of agroecological intensificationInt. J. Agric. Sustain151112810.1080/14735903.2016.1174810Open DOISearch in Google Scholar

Gaugler, R., Bilgrami, A. (2004): Nematode Behaviour CABI Publishing, Oxfordshire and Cambridge, 419 ppGauglerR.BilgramiA.2004Nematode BehaviourCABI PublishingOxfordshire and Cambridge41910.1079/9780851998183.0000Search in Google Scholar

Gömöryová, E., Střelcová, K., Fleischer, P., Gömöry, D. (2011): Soil microbial characteristics at the monitoring plots on windthrow areas of the Tatra National Park Slovakia: their assessment as environmental indicators. Environ. Monitor. Assess., 174(1–4): 31–45. DOI: 10.1007/s10661-010-1755-2GömöryováE.StřelcováK.FleischerP.GömöryD.2011Soil microbial characteristics at the monitoring plots on windthrow areas of the Tatra National Park Slovakia: their assessment as environmental indicatorsEnviron. Monitor. Assess1741–4314510.1007/s10661-010-1755-220981566Open DOISearch in Google Scholar

Háněl, L. (2017): Soil nematodes in alpine meadows of the Tatra National Park (Slovak Republic). Helminthologia 54(1) 48–67. DOI: 10.1515/helm-2017-0005HánělL.2017Soil nematodes in alpine meadows of the Tatra National Park (Slovak Republic)Helminthologia541486710.1515/helm-2017-0005Open DOISearch in Google Scholar

Heip, C., Herman, P.M.J., Soetaert, K. (1988): Data processing evaluation and analysis. In: Higins, H.P., Thiel, H. (Eds) Introduction to the study of meiofauna Smithsonian Institution Press, Washington, pp. 25–30HeipC.HermanP.M.J.SoetaertK.1988Data processing evaluation and analysisHiginsH.P.ThielH.Introduction to the study of meiofaunaSmithsonian Institution PressWashington2530Search in Google Scholar

Högberg, M.N., Högberg, P., Myrold, D.D. (2007): Is microbial community composition in boreal forest soils determined by pH, C-to-N ratio, the trees, or all three? Oecologia, 150(4): 590–601. DOI: 10.1007/s00442-006-0562-5HögbergM.N.HögbergP.MyroldD.D.2007Is microbial community composition in boreal forest soils determined by pH, C-to-N ratio, the trees, or all three?Oecologia150459060110.1007/s00442-006-0562-517033802Open DOISearch in Google Scholar

Hu, C., Xia, X.G., Han, X.M., Chen, Y.F., Qiao, Y., Liu, D. H., Li, S. L. (2018): Soil nematode abundances were increased by an incremental nutrient input in a paddy-upland rotation system. Helminthologia 55(4): 322–333. DOI: 10.2478/helm-2018-0025HuC.XiaX.G.HanX.M.ChenY.F.QiaoY.LiuD. H.LiS. L.2018Soil nematode abundances were increased by an incremental nutrient input in a paddy-upland rotation systemHelminthologia55432233310.2478/helm-2018-0025666200631662663Open DOISearch in Google Scholar

Insam, H. (1997): A new set of substrates proposed for community characterization in environmental samples. In: Insam, H., Ranger, A. (Eds) Microbial Communities. Functional versus Structural Approaches Springer, Heidleberg. pp. 260–261InsamH.1997A new set of substrates proposed for community characterization in environmental samplesInsamH.RangerA.Microbial Communities. Functional versus Structural ApproachesSpringer, Heidleberg26026110.1007/978-3-642-60694-6Search in Google Scholar

Islam, K.R, Weil, R.R. (1998): Microwave irradiation of soil for routine measurements of microbial biomass carbon. Biol. Fertil. Soils, 27(4): 408–416. DOI: 10.1007/s003740050IslamK.R, Weil, R.R.1998Microwave irradiation of soil for routine measurements of microbial biomass carbonBiol. Fertil. Soils27440841610.1007/s003740050Open DOISearch in Google Scholar

Jangid, K., Williams, M.A., Franzluebbers, A.J., Schmidt, T.M., Coleman, D.C., Whitman, W.B. (2011): Land-use history has a stronger impact on soil microbial community composition than aboveground vegetation and soil properties. Soil Biol. Biochem., 43(1): 2184–2193. DOI: 10.1016/j.soilbio.2011.06.022JangidK.WilliamsM.A.FranzluebbersA.J.SchmidtT.M.ColemanD.C.WhitmanW.B.2011Land-use history has a stronger impact on soil microbial community composition than aboveground vegetation and soil propertiesSoil Biol. Biochem4312184219310.1016/j.soilbio.2011.06.022Open DOISearch in Google Scholar

Kaur, A., Chaudhary, A., Kaur, A., Choudhary, R., Kaushik, R. (2005): Phospholipid fatty acid–a bioindicator of environment monitoring and assessment in soil ecosystem. Curr. Sci. 89:1103–1112KaurA.ChaudharyA.KaurA.ChoudharyR.KaushikR.2005Phospholipid fatty acid–a bioindicator of environment monitoring and assessment in soil ecosystemCurr. Sci8911031112Search in Google Scholar

Kautz, T., Wirth, S., Ellmer, F. (2004). Microbial activity in a sandy arable soil is governed by the fertilization regime. Eur. J Soil Biol., 40(2), 87–94. DOI: 10.1016/j.ejsobi.2004.10.001KautzT.WirthS.EllmerF.2004Microbial activity in a sandy arable soil is governed by the fertilization regimeEur. J Soil Biol402879410.1016/j.ejsobi.2004.10.001Open DOISearch in Google Scholar

Kaschuk, K., Alberton, O., Hungria, M. (2010): Three decades of soil microbial biomass studies in Brazilian ecosystems: lessons learned about soil quality and indications for improving sustainability. Soil Biol. Biochem 42(1): 1–13. DOI: 10.1016/j.soilbio.2009.08.02KaschukK.AlbertonO.HungriaM.2010Three decades of soil microbial biomass studies in Brazilian ecosystems: lessons learned about soil quality and indications for improving sustainabilitySoil Biol. Biochem42111310.1016/j.soilbio.2009.08.02Open DOISearch in Google Scholar

Lange, M., Eisenhauer, N., Sierra, C.A., Bessler, H., Engels, C., Griffiths, R.I., Steinbeiss, S. (2015). Plant diversity increases soil microbial activity and soil carbon storage. Nature Comm., 6(1), 1–8. DOI: 10.1038/ncomms7707LangeM.EisenhauerN.SierraC.A.BesslerH.EngelsC.GriffithsR.I.SteinbeissS.2015Plant diversity increases soil microbial activity and soil carbon storageNature Comm611810.1038/ncomms770725848862Open DOISearch in Google Scholar

Lima da Silva, J.V.C., Hirschfeld, M.N.C., Cares, J.E., Esteves, A.M. (2019). Land use, soil properties and climate variables influence the nematode communities in the Caatinga dry forest. Appl. Soil Ecol., 103474. DOI: 10.1016/j.apsoil.2019.103474Lima da SilvaJ.V.C.HirschfeldM.N.C.CaresJ.E.EstevesA.M.2019Land use, soil properties and climate variables influence the nematode communities in the Caatinga dry forestAppl. Soil Ecol10347410.1016/j.apsoil.2019.103474Open DOISearch in Google Scholar

Lišková, M., Čerevková, A., Háněl, L. (2008): Nematode communities of forest ecosystems in association with various soil orders. Russ. J. Nematol. 16(2): 129–142LiškováM.ČerevkováA.HánělL.2008Nematode communities of forest ecosystems in association with various soil ordersRuss. J. Nematol162129142Search in Google Scholar

Losos, B., Gulička, J., Lellák, J., Pelikán, J. (1984): Animal Ecology Státní pedagogické nakladatelství Praha, In Czech, 120 pp.LososB.GuličkaJ.LellákJ.PelikánJ.1984Animal Ecology Státní pedagogické nakladatelství Praha, In Czech120Search in Google Scholar

Mangalassery, S., Mooney, S.J., Sparkes, D. L., Fraser, W.T., Sjögersten, S. (2015). Impacts of zero tillage on soil enzyme activities, microbial characteristics and organic matter functional chemistry in temperate soils. Eur. J Soil Biol., 689–17. DOI: 10.1016/j.ejsobi.2015.03.001MangalasseryS.MooneyS.J.SparkesD. L.FraserW.T.SjögerstenS.2015Impacts of zero tillage on soil enzyme activities, microbial characteristics and organic matter functional chemistry in temperate soilsEur. J Soil Biol6891710.1016/j.ejsobi.2015.03.001Open DOISearch in Google Scholar

Martin-Laurent, F., Philipot, L., Hal et, S., Chaussod, R., Germon, J.C., Soulas, G., Catroux, G. (2001): DNA extraction from soils: old bias for new microbial diversity analysis methods. Appl. Environ. Microb., 67(5): 2354–2359. DOI: 10.1128/AEM.67.5.2354-2359.2001Martin-LaurentF.PhilipotL.Hal etS.ChaussodR.GermonJ.C.SoulasG.CatrouxG.2001DNA extraction from soils: old bias for new microbial diversity analysis methodsAppl. Environ. Microb6752354235910.1128/AEM.67.5.2354-2359.20019287711319122Open DOISearch in Google Scholar

Murty, D., Kirschbaum, M.U., McMurtrie, R.E., McGilvray, H. (2002): Does conversion of forest to agricultural land change soil carbon and nitrogen? A review of the literature. Global Change Biol., 8(2): 105–123. DOI: 10.1046/j.1354-1013.2001.00459.xMurtyD.KirschbaumM.U.McMurtrieR.E.McGilvrayH.2002Does conversion of forest to agricultural land change soil carbon and nitrogen? A review of the literatureGlobal Change Biol8210512310.1046/j.1354-1013.2001.00459.xOpen DOISearch in Google Scholar

Nannipieri, P., Ascher, J., Cecherini, M.T., Landi, L., Pietramellara, G., Renel a, G. (2003): Microbial diversity and soil functions. Eur. J. Soil Sci., 54(4): 655–670. DOI: 10.1046/j.1351-0754.2003.0556.xNannipieriP.AscherJ.CecheriniM.T.LandiL.PietramellaraG.Renel aG.2003Microbial diversity and soil functionsEur. J. Soil Sci54465567010.1046/j.1351-0754.2003.0556.xOpen DOISearch in Google Scholar

Neher, D. A. (2001). Role of nematodes in soil health and their use as indicators. J. Nematol., 33(4), 161.NeherD. A.2001Role of nematodes in soil health and their use as indicatorsJ. Nematol334161Search in Google Scholar

Neher, D.A. (2010): Ecology of plant and free-living nematodes in natural and agricultural soil. Ann. Rev. Phytopath., 48(4): 371–394. DOI: 10.1146/annurev-phyto-073009-114439NeherD.A.2010Ecology of plant and free-living nematodes in natural and agricultural soilAnn. Rev. Phytopath48437139410.1146/annurev-phyto-073009-114439Open DOISearch in Google Scholar

Neher, D.A., Olson, R.K. (1999): Nematode communities in soils of four farm cropping management systems. Pedobiologia, 43(5): 430–438NeherD.A.OlsonR.K.1999Nematode communities in soils of four farm cropping management systemsPedobiologia435430438Search in Google Scholar

Neher, D.A, Wu, J., Barbercheck, M.E., Anas, O. (2005): Ecosystem type affects interpretation of soil nematode community measures. Appl. Soil Ecol., 30(1): 47–64. DOI: 10.1016/j.apsoil.2005.01.002NeherD.A, Wu, J.BarbercheckM.E.AnasO.2005Ecosystem type affects interpretation of soil nematode community measuresAppl. Soil Ecol301476410.1016/j.apsoil.2005.01.002Open DOISearch in Google Scholar

Nielsen, U.N, Ayres, E., Wall, D.H., Li, G., Bardget, R.D., Wu, T., Garey, J.R. (2014): Global-scale patterns of assemblage structure of soil nematodes in relation to climate and ecosystem properties. Global Ecol. Biogeog 23(9): 968–978. DOI: 10.1111/geb.12177NielsenU.N, Ayres, E.WallD.H.LiG.BardgetR.D.WuT.GareyJ.R.2014Global-scale patterns of assemblage structure of soil nematodes in relation to climate and ecosystem propertiesGlobal Ecol. Biogeog23996897810.1111/geb.12177Open DOISearch in Google Scholar

Le, T. M. L., Nguyen, T. D., Nguyen, H. T., Liebanas, G., Nguyen, T. A. D., Trinh, Q. P. (2019). A new root-knot nematode, Meloidogyne moensi n. sp.(Nematoda: Meloidogynidae), parasitizing Robusta coffee from Western Highlands, Vietnam. Helminthologia 56(3): 229–246. DOI:10.2478/helm-2019-0017LeT. M. L.NguyenT. D.NguyenH. T.LiebanasG.NguyenT. A. D.TrinhQ. P.2019A new root-knot nematode, Meloidogyne moensi nsp.(Nematoda: Meloidogynidae), parasitizing Robusta coffee from Western Highlands, Vietnam. Helminthologia56322924610.2478/helm-2019-0017Open DOISearch in Google Scholar

Olembo, R., Hawksworth, D.L. (1991): Importance of microorganisms and invertebrates as components of biodiversity. Biodiversity of microorganisms and invertebrates: its role in sustainable agriculture. In Proceedings of the First Workshop on the Ecological Foundations of Sustainable Agriculture WEFSA 1 London, UK, CAB InternationalOlemboR.HawksworthD.L.1991Importance of microorganisms and invertebrates as components of biodiversity. Biodiversity of microorganisms and invertebrates: its role in sustainable agricultureProceedings of the First Workshop on the Ecological Foundations of Sustainable Agriculture WEFSA 1London, UKCAB InternationalSearch in Google Scholar

Papatheodorou, E.M, Argyropoulou, M.D., Stamou, G.P. (2004): The effects of large-and small-scale differences in soil temperature and moisture on bacterial functional diversity and the community of bacterivorous nematodes. Appl. Soil Ecol., 25(1): 37–49. DOI: 10.1016/S0929-1393(03)00100-8PapatheodorouE.M, Argyropoulou, M.D.StamouG.P.2004The effects of large-and small-scale differences in soil temperature and moisture on bacterial functional diversity and the community of bacterivorous nematodesAppl. Soil Ecol251374910.1016/S0929-1393(03)00100-8Open DOISearch in Google Scholar

Popovici, I., Ciobanu, M. (2000): Diversity and distribution of nematode communities in grasslands from Romania in relation to vegetation and soil characteristics. Appl. Soil Ecol., 14: 27–36PopoviciI.CiobanuM.2000Diversity and distribution of nematode communities in grasslands from Romania in relation to vegetation and soil characteristicsAppl. Soil Ecol14273610.1016/S0929-1393(99)00048-7Search in Google Scholar

Renčo, M., Baležentiené, L. (2015): An analysis of soil free-living and plant-parasitic nematode communities in three habitats invaded by Heracleum sosnowskyi in central Lithuania. Biol. Inv., 17(4): 1025–1039. DOI: 10.1007/s10530-014-0773-3RenčoM.BaležentienéL.2015An analysis of soil free-living and plant-parasitic nematode communities in three habitats invaded by Heracleum sosnowskyi in central LithuaniaBiol. Inv1741025103910.1007/s10530-014-0773-3Open DOISearch in Google Scholar

Renčo, M., Čerevková, A. (2015): Long-term effects of a wildfire on the soil nematode communities in the spruce forest ecosystem of High Tatra National Park. Int. J. Wild. Fire, 24(5): 702–711. DOI: 10.1071/WF14138RenčoM.ČerevkováA.2015Long-term effects of a wildfire on the soil nematode communities in the spruce forest ecosystem of High Tatra National ParkInt. J. Wild. Fire24570271110.1071/WF14138Open DOISearch in Google Scholar

Renčo, M., Čerevková, A. (2017): Windstorms as mediator of soil nematode community changes: Evidence from European spruce forest. Helminthologia, 54(1): 36–47. DOI: 10.1515/helm-2017-0004RenčoM.ČerevkováA.2017Windstorms as mediator of soil nematode community changes: Evidence from European spruce forestHelminthologia541364710.1515/helm-2017-0004Open DOISearch in Google Scholar

Renčo, M., Čerevková, A., Homolová, Z., Gömöryová, E. (2015): Long-term effects on soil nematode community structure in spruce forests of removing or not removing fallen trees after a wind-storm. For. Ecol. Manag., 356(3): 243–252. DOI: 10.1016/j.fore-co.2015.07.008RenčoM.ČerevkováA.HomolováZ.GömöryováE.2015Long-term effects on soil nematode community structure in spruce forests of removing or not removing fallen trees after a wind-stormFor. Ecol. Manag356324325210.1016/j.fore-co.2015.07.008Open DOISearch in Google Scholar

Renčo, M., Čermák, V., Čerevková, A. (2012): Composition of soil nematode communities in native birch forests in Central Europe. Nematology, 14(1): 15–25. DOI: 10.1163/138855411X575430RenčoM.ČermákV.ČerevkováA.2012Composition of soil nematode communities in native birch forests in Central EuropeNematology141152510.1163/138855411X575430Open DOISearch in Google Scholar

Renčo, M., Lišková, M., Čerevková, A. (2010): Seasonal fluctuations of the nematode communities in a hop garden soil. Helminthologia, 47(2): 115–122. DOI: 10.2478/s11687-010-0018-7RenčoM.LiškováM.ČerevkováA.2010Seasonal fluctuations of the nematode communities in a hop garden soilHelminthologia47211512210.2478/s11687-010-0018-7Open DOISearch in Google Scholar

Rues, L. (2003): Nematode soil faunal analysis of decomposition pathways in different ecosystems. Nematology 5(2): 179–181. DOI: 10.1163/156854103767139662RuesL.2003Nematode soil faunal analysis of decomposition pathways in different ecosystemsNematology5217918110.1163/156854103767139662Open DOISearch in Google Scholar

Sánchez-Moreno, S., Cano, M., López-Pérez, A., Benayas, J.M.R (2018): Microfaunal soil food webs in Mediterranean semi-arid agroecosystems. Does organic management improve soil health? Appl. Soil Ecol., 125: 138–147. DOI: 10.1016/j.apsoil.2017.12.020Sánchez-MorenoS.CanoM.López-PérezA.BenayasJ.M.R2018Microfaunal soil food webs in Mediterranean semi-arid agroecosystemsDoes organic management improve soil health? Appl. Soil Ecol12513814710.1016/j.apsoil.2017.12.020Open DOISearch in Google Scholar

Schutter, M., Sandeno, J., Dick, R. (2001): Seasonal, soil type, and alternative management influences on microbial communities of vegetable cropping systems. Biol. Fertil. Soils, 34(6): 397–410. DOI: 10.1007/s00374-001-0423-7SchutterM.SandenoJ.DickR.2001Seasonal, soil type, and alternative management influences on microbial communities of vegetable cropping systemsBiol. Fertil. Soils34639741010.1007/s00374-001-0423-7Open DOISearch in Google Scholar

Seinhorst, J.W. (1962): On the killing, fixation and transferring to glycerine of nematodes. Nematologica, 8(1): 29–32SeinhorstJ.W.1962On the killing, fixation and transferring to glycerine of nematodesNematologica81293210.1163/187529262X00981Search in Google Scholar

Shannon, C.E., Weaver, W. (1949): The mathematical theory of communication University of Illinois Press, UrbanaShannonC.E.WeaverW.1949The mathematical theory of communicationUniversity of Illinois PressUrbanaSearch in Google Scholar

Smil, V. (1999): Crop residues: agriculture’s largest harvest: Crop residues incorporate more than half of the world’s agricultural phytomass. BioScience, 49(2): 299–308. DOI: 10.2307/1313613SmilV.1999Crop residues: agriculture’s largest harvest: Crop residues incorporate more than half of the world’s agricultural phytomassBioScience49229930810.2307/1313613Open DOISearch in Google Scholar

Sohlenius, B., Boström, S. (2001): Annual and long-term fluctuations of the nematode fauna in a Swedish Scots pine forest soil. Pedobiologia, 45(5): 408–429. DOI: 10.1078/0031-4056-00096SohleniusB.BoströmS.2001Annual and long-term fluctuations of the nematode fauna in a Swedish Scots pine forest soilPedobiologia45540842910.1078/0031-4056-00096Open DOISearch in Google Scholar

Šály, M. (1985): Production of free living nematodes in the Protected landscape area of the Slovak Paradise. Ekológia ČSSR, 4(1): 185–209ŠályM.1985Production of free living nematodes in the Protected landscape area of the Slovak ParadiseEkológia ČSSR41185209Search in Google Scholar

Ter Braak, C.J.F, Šmilauer, P. (2012) Canoco reference manual and user’s guide: Software for ordination. Version 5 Microcomputer Power, Ithaca, NY. 496 ppTer BraakC.J.FŠmilauerP.2012Canoco reference manual and user’s guide: Software for ordination. Version 5Microcomputer PowerIthaca, NY496Search in Google Scholar

van Benzoijen, J. (2006): Methods and techniques for nematology The Netherlands, Wagenningen University, 156 ppvanBenzoijen, J.2006Methods and techniques for nematologyThe NetherlandsWagenningen University156Search in Google Scholar

Whitford, W.G., Pen-Mouratov, S., Steinberger, Y. (2014): The effects of prescribed fire on soil nematodes in an arid juniper savanna. Open J. Ecol. 4(2): 66–75. DOI: 10.4236/oje.2014.42009WhitfordW.G.Pen-MouratovS.SteinbergerY.2014The effects of prescribed fire on soil nematodes in an arid juniper savannaOpen J. Ecol42667510.4236/oje.2014.42009Open DOISearch in Google Scholar

Wardle, D.A, Yeates, G.W., Bonner, K.L., Nicholson, K.S., Watson, R.N. (2001): Impacts of ground vegetation management strategies in a kiwifruit orchard on the composition and functioning of the soil biota. Soil Biol. Biochem., 33(7–8): 893–905. DOI: 10.1016/S0038-0717(00)00235-2WardleD.A, Yeates, G.W.BonnerK.L.NicholsonK.S.WatsonR.N.2001Impacts of ground vegetation management strategies in a kiwifruit orchard on the composition and functioning of the soil biotaSoil Biol. Biochem337–889390510.1016/S0038-0717(00)00235-2Open DOISearch in Google Scholar

Wasilewska, L. (1997): Soil invertebrates as bioindicators with special reference to soil-inhabiting nematodes. Russ. J. Nematol., 5(3): 113–126WasilewskaL.1997Soil invertebrates as bioindicators with special reference to soil-inhabiting nematodesRuss. J. Nematol53113126Search in Google Scholar

Yergeau, E., Bokhorst, S., Huiskes, A.H. (2006) Size and structure of bacterial, fungal and nematode communities along an Antarctic environmental gradient. FEMS Microbiol. Ecol., 59(3): 436–451. DOI: 10.1111/j.1574-6941.2006.00200.xYergeauE.BokhorstS.HuiskesA.H.2006Size and structure of bacterial, fungal and nematode communities along an Antarctic environmental gradientFEMS Microbiol. Ecol59343645110.1111/j.1574-6941.2006.00200.x16978243Open DOISearch in Google Scholar

Yeates, G.W. (1994): Modification and qualification of the Nematode Maturity Index. Pedobiologia, 38(1): 97–101YeatesG.W.1994Modification and qualification of the Nematode Maturity IndexPedobiologia38197101Search in Google Scholar

Yeates, G.W. (2003): Nematodes as soil indicators: functional and biodiversity aspects. Biol. Fertil. Soils., 37(2): 199–210. DOI: 10.1007/s00374-003-0586-5YeatesG.W.2003Nematodes as soil indicators: functional and biodiversity aspectsBiol. Fertil. Soils37219921010.1007/s00374-003-0586-5Open DOISearch in Google Scholar

Yeates, G.W. (2007): Abundance, diversity, and resilience of nematode assemblages in forest soils. Can. J. For. Res., 37(1): 216–225. DOI: 10.1139/x06-172YeatesG.W.2007Abundance, diversity, and resilience of nematode assemblages in forest soilsCan. J. For. Res37121622510.1139/x06-172Open DOISearch in Google Scholar

Young, I.M, Ritz, K. (1998): Can there be a contemporary ecological dimension to soil biology without a habitat? Soil Biol. Biochem., 30(4): 1229–1232YoungI.M, Ritz, K.1998Can there be a contemporary ecological dimension to soil biology without a habitat? Soil BiolBiochem3041229123210.1016/S0038-0717(97)00263-0Search in Google Scholar

Zakarauskaitė, D., Vaišvila, Z., Motuzas, A., Grigaliūnienė, K., Buivydaitė, V.V., Vaisvalavičius, R., Butkus, V. (2008). The influence of long-term application of mineral fertilizers on the biological activity of Cambisols. Ekologija 54(3): 173–178ZakarauskaitėD.VaišvilaZ.MotuzasA.GrigaliūnienėK.BuivydaitėV.V.VaisvalavičiusR.ButkusV.2008The influence of long-term application of mineral fertilizers on the biological activity of CambisolsEkologija54317317810.2478/V10055-008-0027-8Search in Google Scholar

Zhang, Y., Cong, J., Lu, H., Yang, C., Yang, Y., Zhou, J., Li, D. (2014). An integrated study to analyze soil microbial community structure and metabolic potential in two forest types. PloS ONE, 9(4). DOI: 10.1371/journal.pone.0093773ZhangY.CongJ.LuH.YangC.YangY.ZhouJ.LiD.2014An integrated study to analyze soil microbial community structure and metabolic potential in two forest typesPloS ONE9410.1371/journal.pone.0093773399052724743581Open DOISearch in Google Scholar

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