Accesso libero

Effects of two decades of organic and mineral fertilization of arable crops on earthworms and standardized litter decomposition

INFORMAZIONI SU QUESTO ARTICOLO

Cita

Amossé, J., Bettarel, Y., Bouvier, C., Bouvier, T., Tran Duc, T., Doan Thu, T. and P. Jouquet (2013): The flows of nitrogen, bacteria and viruses from the soil to water compartments are influenced by earthworm activity and organic fertilization (compost vs. vermicompost). Soil Biology and Biochemistry 66, 197–203.AmosséJ.BettarelY.BouvierC.BouvierT.Tran DucT.Doan ThuT.JouquetP.2013The flows of nitrogen, bacteria and viruses from the soil to water compartments are influenced by earthworm activity and organic fertilization (compost vsvermicompost). Soil Biology and Biochemistry66197–20310.1016/j.soilbio.2013.07.007Search in Google Scholar

Bedada, W., Karltun, E., Lemenih, M. and M. Tolera (2014): Long-term addition of compost and NP fertilizer increases crop yield and improves soil quality in experiments on smallholder farms. Agriculture, Ecosystem & Environment 195, 193–201.BedadaW.KarltunE.LemenihM.ToleraM.2014Long-term addition of compost and NP fertilizer increases crop yield and improves soil quality in experiments on smallholder farmsAgriculture, Ecosystem & Environment195193–20110.1016/j.agee.2014.06.017Search in Google Scholar

BMLFUW (2006): Richtlinien für die sachgerechte Düngung. 6th ed., Bundesministerium für Land- und Forstwirtschaft, Umwelt und Wasserwirtschaft, Vienna, Austria.BMLFUW2006Richtlinien für die sachgerechte Düngung. 6th ed., Bundesministerium für Land- und Forstwirtschaft, Umwelt und WasserwirtschaftVienna, AustriaSearch in Google Scholar

Coleman, D.C. and D. Crossley, Jr. (2004): Fundamentals of soil ecology. 2nd ed., Academic Press, USA.ColemanD.C.CrossleyD.Jr.2004Fundamentals of soil ecology2nd edAcademic Press, USASearch in Google Scholar

Dersch, G. and K. Böhm (2001): Effects of agronomic practices on the soil carbon storage potential in arable farming in Austria. Nutrient Cycling in Agroecosystems 60, 49–55.DerschG.BöhmK.2001Effects of agronomic practices on the soil carbon storage potential in arable farming in AustriaNutrient Cycling in Agroecosystems6049–5510.1023/A:1012607112247Search in Google Scholar

Dersch, G. Pfeffer, M. and O.H. Danneberg (2003): Determination of the N mineralization potential of different soils by anaerobic incubation as calibrated in a potexperiment. Bodenkultur 54, 69–81.DerschG.PfefferM.DannebergO.H.2003Determination of the N mineralization potential of different soils by anaerobic incubation as calibrated in a potexperimentBodenkultur5469–81Search in Google Scholar

D'Hose, T., Molendijk, L., Van Vooren, L., van den Berg, W., Hoek, H., Runia, W., van Evert, F., ten Berge, H., Spiegel, H., Sandèn, T., Grignani, C. and G. Ruysschaert (2018): Responses of soil biota to non-inversion tillage and organic amendments: An analysis on European multiyear field experiments. Pedobiologia 66, 18–28.D'HoseT.MolendijkL.Van VoorenL.van den BergW.HoekH.RuniaW.van EvertF.ten BergeH.SpiegelH.SandènT.GrignaniC.RuysschaertG.2018Responses of soil biota to non-inversion tillage and organic amendments: An analysis on European multiyear field experimentsPedobiologia6618–2810.1016/j.pedobi.2017.12.003Search in Google Scholar

Doan, T.T., Ngo, P.T., Rumpel, C., Nguyen, B.V. and P. Jouquet (2013). Interactions between compost, vermicompost and earthworms influence plant growth and yield: A one-year greenhouse experiment. Scientia Horticulturae 160, 148–154.DoanT.T.NgoP.T.RumpelC.NguyenB.V.JouquetP.2013Interactions between compost, vermicompost and earthworms influence plant growth and yield: A one-year greenhouse experimentScientia Horticulturae160148–15410.1016/j.scienta.2013.05.042Search in Google Scholar

Edwards, C.A. (1983): Earthworm ecology in cultivated soils. In: Satchell, J.E. (Ed.): Earthworm Ecology. Springer, Netherlands, pp. 123–137.EdwardsC.A.1983Earthworm ecology in cultivated soilsSatchellJ.E.Earthworm EcologySpringerNetherlands123–13710.1007/978-94-009-5965-1_10Search in Google Scholar

Edwards, C.A. and P.J. Bohlen (1995): Biology and Ecology of Earthworms. Chapman & Hall, New York, USA.EdwardsC.A.BohlenP.J.1995Biology and Ecology of EarthwormsChapman & HallNew York, USASearch in Google Scholar

Edwards, C.A. and J.R. Lofty (1982): Nitrogenous fertilizers and earthworm populations in agricultural soils. Soil Biology and Biochemistry 14, 515–521.EdwardsC.A.LoftyJ.R.1982Nitrogenous fertilizers and earthworm populations in agricultural soilsSoil Biology and Biochemistry14515–52110.1016/0038-0717(82)90112-2Search in Google Scholar

El-Haggar, S.M. (2007): Sustainability of Agricultural and Rural Waste Management. In: El-Haggar, S.M. (Ed.): Sustainable Industrial Design and Waste Management. Academic Press, Oxford, UK, pp. 223–260.El-HaggarS.M.2007Sustainability of Agricultural and Rural Waste ManagementEl-HaggarS.M.Sustainable Industrial Design and Waste ManagementAcademic PressOxford, UK223–26010.1016/B978-012373623-9/50009-5Search in Google Scholar

Erhart, E. and W. Hartl (2010): Compost use in organic Farming. In: Lichtfouse, E. (Ed.): Genetic engineering, biofertilization, soil quality and organic farming. Sustainable Agriculture Reviews 4, Springer, Dortrecht, Germany, pp. 311–345.ErhartE.HartlW.2010Compost use in organic FarmingLichtfouseE.Genetic engineering, biofertilization, soil quality and organic farming. Sustainable Agriculture Reviews 4SpringerDortrecht, Germany311–34510.1007/978-90-481-8741-6_11Search in Google Scholar

Estevez, B., N’Dayegamiye, A. and D. Coderre (1996): The effect on earthworm abundance and selected soil properties after 14 years of solid cattle manure and NPKMg fertilizer application. Canadian Journal of Soil Science 76, 351–355.EstevezB.N’DayegamiyeA.CoderreD.1996The effect on earthworm abundance and selected soil properties after 14 years of solid cattle manure and NPKMg fertilizer applicationCanadian Journal of Soil Science76351–35510.4141/cjss96-042Search in Google Scholar

Fließbach, A., Schmid, H. and U. Niggli (2008): Die Vorteile des Öko-Landbaus für das Klima. Ökologie und Landbau 1, 17–19.FließbachA.SchmidH.NiggliU.2008Die Vorteile des Öko-Landbaus für das KlimaÖkologie und Landbau117–19Search in Google Scholar

Gattinger, A., Muller, A., Haeni, M., Skinner, C., Fliessbach, A., Buchmann, N., Mäder, P., Stolze, M., Smith, P., El-Hage Scialabba, N. and U. Niggli (2012): Enhanced top soil carbon stocks under organic farming. Proceedings of the National Academy of Sciences 109, 18226–18231.GattingerA.MullerA.HaeniM.SkinnerC.FliessbachA.BuchmannN.MäderP.StolzeM.SmithP.El-Hage ScialabbaN.NiggliU.2012Enhanced top soil carbon stocks under organic farmingProceedings of the National Academy of Sciences10918226–1823110.1073/pnas.1209429109Search in Google Scholar

Hadas, A., Kautsky, L. and R. Portnoy (1996): Mineralization of composted manure and microbial dynamics in soil as affected by long-term nitrogen management. Soil Biology and Biochemistry 28, 733–738.HadasA.KautskyL.PortnoyR.1996Mineralization of composted manure and microbial dynamics in soil as affected by long-term nitrogen managementSoil Biology and Biochemistry28733–73810.1016/0038-0717(95)00179-4Search in Google Scholar

Hartl, W. and E. Erhart (2005): Crop nitrogen recovery and soil nitrogen dynamics in a 10-year field experiment with biowaste compost. Journal of Plant Nutrition and Soil Science 168, 781–788.HartlW.ErhartE.2005Crop nitrogen recovery and soil nitrogen dynamics in a 10-year field experiment with biowaste compostJournal of Plant Nutrition and Soil Science168781–78810.1002/jpln.200521702Search in Google Scholar

Hartwich, F.H. und G. (2000): Urania Tierreich. Wirbellose Tiere 2. Die große farbige Enzyklopädie. Urania Verlag, Leipzig, Jena & Berlin, Deutschland.HartwichF.H.und G2000Urania TierreichWirbellose Tiere 2. Die große farbige EnzyklopädieUrania VerlagLeipzig, Jena & Berlin, DeutschlandSearch in Google Scholar

Hong, H.N., Rumpel, C., Henry des Tureaux, T., Bardoux, G., Billou, D., Tran Duc, T. and P. Jouquet (2011): How do earthworms influence organic matter quantity and quality in tropical soils? Soil Biology and Biochemistry 43, 223–230.HongH.N.RumpelC.Henry des TureauxT.BardouxG.BillouD.Tran DucT.JouquetP.2011How do earthworms influence organic matter quantity and quality in tropical soils? Soil Biology and Biochemistry43223–23010.1016/j.soilbio.2010.09.033Search in Google Scholar

IUSS Working Group WRB (2015): World Reference Base for Soil Resources 2014, update 2015. International soil classification system for naming soils and creating legends for soil maps. World Soil Resources Reports No. 106. FAO, Rome.IUSS Working Group WRB2015World Reference Base for Soil Resources 2014, update 2015. International soil classification system for naming soils and creating legends for soil maps. World Soil Resources Reports No106. FAO, RomeSearch in Google Scholar

Jouquet, P. and T.T. Doan (2014): Vermicompost reduces the invasiveness of the earthworm species Dichogaster bolaui compared to the use of compost in a degraded tropical soil in Northern Vietnam. European Journal of Soil Biology 64, 46–52.JouquetP.DoanT.T.2014Vermicompost reduces the invasiveness of the earthworm species Dichogaster bolaui compared to the use of compost in a degraded tropical soil in Northern VietnamEuropean Journal of Soil Biology6446–5210.1016/j.ejsobi.2014.08.003Search in Google Scholar

Kandeler, E. (1993): Bestimmung der N-Mineralisation im anaeroben Brutversuch. In: Schinner, F. et al. (Eds.): Bodenbiologische Arbeitsmethoden. Springer Verlag, Berlin, Deutschland.KandelerE.1993Bestimmung der N-Mineralisation im anaeroben BrutversuchSchinnerF.et al. EdsBodenbiologische ArbeitsmethodenSpringer VerlagBerlin, Deutschland10.1007/978-3-642-77936-7Search in Google Scholar

Keeney, D.R. (1982): Nitrogen-availability indices. In: Page, A.L. et al. (Eds.): Methods of Soil Analysis, Part 2. American Society of Agronomy Inc., Soil Science Society of America Inc., Madison, Wisconsin, USA, 711 p.KeeneyD.R.1982Nitrogen-availability indicesPageA.L.et al. EdsMethods of Soil Analysis, Part 2. American Society of Agronomy Inc., Soil Science Society of America IncMadison, Wisconsin, USA71110.2134/agronmonogr9.2.2ed.c35Search in Google Scholar

Keuskamp, J.A., Dingemans, B.J.J., Lehtinen, T., Sarneel, J.M. and M.M. Hefting (2013): Tea Bag Index: a novel approach to collect uniform decomposition data across ecosystems. Methods in Ecology and Evolution 4, 1070–1075.KeuskampJ.A.DingemansB.J.J.LehtinenT.SarneelJ.M.HeftingM.M.2013Tea Bag Index: a novel approach to collect uniform decomposition data across ecosystemsMethods in Ecology and Evolution41070–107510.1111/2041-210X.12097Search in Google Scholar

Kirchmann, H., Bergström, L., Kätterer, T., Mattson, L. and S. Gesslein (2007): Comparison of long-term organic and conventional crop-livestock systems on a previously nutrient-depleted soil in Sweden. Agronomy Journal 99, 960–972.KirchmannH.BergströmL.KättererT.MattsonL.GessleinS.2007Comparison of long-term organic and conventional crop-livestock systems on a previously nutrient-depleted soil in SwedenAgronomy Journal99960–97210.2134/agronj2006.0061Search in Google Scholar

Lavelle, P. (1988): Earthworm activities and the soil system. Biology and Fertility of Soils 6, 237–251.LavelleP.1988Earthworm activities and the soil systemBiology and Fertility of Soils6237–25110.1007/BF00260820Search in Google Scholar

Lehtinen, T., Dersch, G., Söllinger, J., Baumgarten, A., Schlatter, N., Aichberger, K. and H. Spiegel (2017): Long-term amendment of four different compost types on a loamy silt Cambisol: impact on soil organic matter, nutrients and yields. Archives of Agronomy and Soil Science 63, 663–673.LehtinenT.DerschG.SöllingerJ.BaumgartenA.SchlatterN.AichbergerK.SpiegelH.2017Long-term amendment of four different compost types on a loamy silt Cambisol: impact on soil organic matter, nutrients and yieldsArchives of Agronomy and Soil Science63663–67310.1080/03650340.2016.1235264Search in Google Scholar

Leifeld, J., Zimmermann M. and J. Fuhrer (2008): Simulating decomposition of labile soil organic carbon: Effects of pH. Soil Biology and Biochemistry 40, 2948–2951.LeifeldJ.ZimmermannM.FuhrerJ.2008Simulating decomposition of labile soil organic carbon: Effects of pHSoil Biology and Biochemistry402948–295110.1016/j.soilbio.2008.08.019Search in Google Scholar

Leroy, B.L.M., Schmidt, O., Van den Bossche, A., Reheul, D. and M. Moens (2008): Earthworm population dynamics as influenced by the quality of exogenous organic matter. Pedobiologia 52, 139–150.LeroyB.L.M.SchmidtO.Van den BosscheA.ReheulD.MoensM.2008Earthworm population dynamics as influenced by the quality of exogenous organic matterPedobiologia52139–15010.1016/j.pedobi.2008.07.001Search in Google Scholar

Mäder, P., Fliessbach, A., Dubois, D., Gunst, L., Fried, P. and U. Niggli (2002): Soil fertility and biodiversity in organic farming. Science 296, 1694–1697.MäderP.FliessbachA.DuboisD.GunstL.FriedP.NiggliU.2002Soil fertility and biodiversity in organic farmingScience2961694–169710.1126/science.1071148Search in Google Scholar

Niggli, U. and A. Fließbach (2009): Gut fürs Klima? Ökologische und konventionelle Landwirtschaft im Vergleich. In: Agrarbündnis, e.V. (Ed.): Der kritische Agrarbericht. ABL Verlag, Hamm, Deutschland, pp. 103–109.NiggliU.FließbachA.2009Gut fürs Klima? Ökologische und konventionelle Landwirtschaft im VergleichAgrarbündnise.V.Der kritische AgrarberichtABL VerlagHamm, Deutschland103–109Search in Google Scholar

Pfiffner, L. and P. Mäder (1997): Effects of biodynamic, organic and conventional production systems on earthworm populations. Biological Agriculture & Horticulture 15, 2–10.PfiffnerL.MäderP.1997Effects of biodynamic, organic and conventional production systems on earthworm populationsBiological Agriculture & Horticulture152–1010.1080/01448765.1997.9755177Search in Google Scholar

Pfiffner, L. and H. Luka (2007): Earthworm populations in two low-input cereal farming systems. Applied Soil Ecology 37, 184–191.PfiffnerL.LukaH.2007Earthworm populations in two low-input cereal farming systemsApplied Soil Ecology37184–19110.1016/j.apsoil.2007.06.005Search in Google Scholar

Pokorná-Kozová, J. and B. Novák (1975): Der langfristige Einfluß der organischen und mineralischen Düngung auf den Boden. Zentralblatt für Bakteriologie, Parasitenkunde, Infektionskrankheiten und Hygiene. Zweite Naturwissenschaftliche Abteilung: Allgemeine, Landwirtschaftliche und Technische Mikrobiologie 130, 711–724.Pokorná-KozováJ.NovákB.1975Der langfristige Einfluß der organischen und mineralischen Düngung auf den BodenZentralblatt für Bakteriologie, Parasitenkunde, Infektionskrankheiten und Hygiene. Zweite Naturwissenschaftliche Abteilung: Allgemeine, Landwirtschaftliche und Technische Mikrobiologie130711–72410.1016/S0044-4057(75)80054-2Search in Google Scholar

Powlson, D.S., Whitmore, A.P. and K.W.T. Goulding (2011): Soil carbon sequestration to mitigate climate change: a critical re-examination to identify the true and the false. European Journal of Soil Science 62, 42–55.PowlsonD.S.WhitmoreA.P.GouldingK.W.T.2011Soil carbon sequestration to mitigate climate change: a critical re-examination to identify the true and the falseEuropean Journal of Soil Science6242–5510.1111/j.1365-2389.2010.01342.xSearch in Google Scholar

Riley, H., Pommeresche, R., Eltun, R., Hansen, S. and A. Korsaeth (2008): Soil structure, organic matter and earthworm activity in a comparison of cropping systems with contrasting tillage, rotations, fertilizer levels and manure use. Agriculture, Ecosystems & Environment 124, 275–284.RileyH.PommerescheR.EltunR.HansenS.KorsaethA.2008Soil structure, organic matter and earthworm activity in a comparison of cropping systems with contrasting tillage, rotations, fertilizer levels and manure useAgriculture, Ecosystems & Environment124275–28410.1016/j.agee.2007.11.002Search in Google Scholar

Ros, M., Klammer, S., Knapp, B., Aichberger, K. and H. Insam (2006a): Long-term effects of compost amendment of soil on functional and structural diversity and microbial activity. Soil Use and Management 22, 209–218.RosM.KlammerS.KnappB.AichbergerK.InsamH.2006aLong-term effects of compost amendment of soil on functional and structural diversity and microbial activitySoil Use and Management22209–21810.1111/j.1475-2743.2006.00027.xSearch in Google Scholar

Ros, M., Pascual, J.A., Garcia, C., Hernandez, M.T. and H. Insam (2006b): Hydrolase activities, microbial biomass and bacterial community in a soil after long-term amendment with different composts. Soil Biology & Biochemistry 38, 3443–3452.RosM.PascualJ.A.GarciaC.HernandezM.T.InsamH.2006bHydrolase activities, microbial biomass and bacterial community in a soil after long-term amendment with different compostsSoil Biology & Biochemistry383443–345210.1016/j.soilbio.2006.05.017Search in Google Scholar

Sacco, D., Moretti, B., Monaco, S. and C. Grignani (2015): Six-year transition from conventional to organic farming: effects on crop production and soil quality. European Journal of Agronomy 69, 10–20.SaccoD.MorettiB.MonacoS.GrignaniC.2015Six-year transition from conventional to organic farming: effects on crop production and soil qualityEuropean Journal of Agronomy6910–2010.1016/j.eja.2015.05.002Search in Google Scholar

Schüller, H. (1969): Die CAL-Methode, eine neue Methode zur Bestimmung des pflanzenverfügbaren Phosphates im Boden. Zeitschrift für Pflanzenernährung und Bodenkunde 123, 49–63.SchüllerH.1969Die CAL-Methode, eine neue Methode zur Bestimmung des pflanzenverfügbaren Phosphates im BodenZeitschrift für Pflanzenernährung und Bodenkunde12349–6310.1002/jpln.19691230106Search in Google Scholar

Spiegel, H., Dersch, G., Baumgarten, A. and J. Hösch (2010): The international organic nitrogen long-term fertilization experiment (IOSDV) at Vienna after 21 years. Archives of Agronomy and Soil Science 56, 405–420.SpiegelH.DerschG.BaumgartenA.HöschJ.2010The international organic nitrogen long-term fertilization experiment (IOSDV) at Vienna after 21 yearsArchives of Agronomy and Soil Science56405–42010.1080/03650341003645624Search in Google Scholar

Suthar, S. (2009): Earthworm communities a bioindicator of arable land management practices: A case study in semiarid region of India. Ecological Indicators 9, 588–594.SutharS.2009Earthworm communities a bioindicator of arable land management practices: A case study in semiarid region of IndiaEcological Indicators9588–59410.1016/j.ecolind.2008.08.002Search in Google Scholar

Tatzber, M., Schlatter, N., Baumgarten, A., Dersch, G., Körner, R., Lehtinen, T., Unger, G., Mifek, E. and H. Spiegel (2015): KMnO4 determination of active carbon for laboratory routines: three long-term field experiments in Austria. Soil Research 53, 190–204.TatzberM.SchlatterN.BaumgartenA.DerschG.KörnerR.LehtinenT.UngerG.MifekE.SpiegelH.2015KMnO4 determination of active carbon for laboratory routines: three long-term field experiments in AustriaSoil Research53190–20410.1071/SR14200Search in Google Scholar

Tiwari, S.C. (1993): Effects of organic manure and NPK fertilization on earthworm activity in an Oxisol. Biology and Fertility of Soils 16, 293–295.TiwariS.C.1993Effects of organic manure and NPK fertilization on earthworm activity in an OxisolBiology and Fertility of Soils16293–29510.1007/BF00369307Search in Google Scholar

Thirukkumaran, C.M. and D. Parkinson (2000): Microbial respiration, biomass, metabolic quotient and litter decomposition in a lodgepole pine forest floor amended with nitrogen and phosphorous fertilizers. Soil Biology and Biochemistry 32, 59–66.ThirukkumaranC.M.ParkinsonD.2000Microbial respiration, biomass, metabolic quotient and litter decomposition in a lodgepole pine forest floor amended with nitrogen and phosphorous fertilizersSoil Biology and Biochemistry3259–6610.1016/S0038-0717(99)00129-7Search in Google Scholar

UNFCCC (2015): Join the 4/1000 Initiative. Soils for Food Security and Climate. Lima- Paris Action Agenda.UNFCCC2015Join the 4/1000 Initiative. Soils for Food Security and ClimateLima- Paris Action AgendaSearch in Google Scholar

Van Hoesel, W., Tiefenbacher, A., König, N., Dorn, V.M., Hagenguth, J.F., Prah, U., Widhalm, T., Wiklicky, V., Kolle,r R., Bonkowski, M., Lagerlöf, J., Ratzenböck, A. and J.G. Zaller (2017): Single and combined effects of pesticide seed dressings and herbicides on earthworms, soil microorganisms, and litter decomposition. Frontiers in Plant Science 8, 215.Van HoeselW.TiefenbacherA.KönigN.DornV.M.HagenguthJ.F.PrahU.WidhalmT.WiklickyV.Koller R.BonkowskiM.LagerlöfJ.RatzenböckA.ZallerJ.G.2017Single and combined effects of pesticide seed dressings and herbicides on earthworms, soil microorganisms, and litter decompositionFrontiers in Plant Science821510.3389/fpls.2017.00215531840128270821Search in Google Scholar

Zadoks, J.C., Chang, T.T. and C.F. Konzak (1974): A decimal code for the growth stages of cereals. Weed Research 14, 415–421.ZadoksJ.C.ChangT.T.KonzakC.F.1974A decimal code for the growth stages of cerealsWeed Research14415–42110.1111/j.1365-3180.1974.tb01084.xSearch in Google Scholar

Zaller, J.G. and J.A. Arnone III (1997): Activity of surfacecasting earthworms in a calcareous grassland under elevated atmospheric CO2 Oecologia 111, 249–254.ZallerJ.G.ArnoneJ.A.1997Activity of surfacecasting earthworms in a calcareous grassland under elevated atmospheric CO2Oecologia111249–25410.1007/PL0000881728308001Search in Google Scholar

Zaller, J. and U. Köpke (2004): Effects of traditional and biodynamic farmyard manure amendment on yields, soil chemical, biochemical and biological properties in a long-term field experiment. Biology and Fertility of Soils 40, 222–229.ZallerJ.KöpkeU.2004Effects of traditional and biodynamic farmyard manure amendment on yields, soil chemical, biochemical and biological properties in a long-term field experimentBiology and Fertility of Soils40222–22910.1007/s00374-004-0772-0Search in Google Scholar

Zaller, J.G., König, N., Tiefenbacher, A., Muraoka, Y., Querner, P., Ratzenböck, A., Bonkowski, M. and R. Koller (2016): Pesticide seed dressings can affect the activity of various soil organisms and reduce decomposition of plant material. BMC Ecology 16, 37.ZallerJ.G.KönigN.TiefenbacherA.MuraokaY.QuernerP.RatzenböckA.BonkowskiM.KollerR.2016Pesticide seed dressings can affect the activity of various soil organisms and reduce decomposition of plant materialBMC Ecology163710.1186/s12898-016-0092-x498953527534619Search in Google Scholar

Zeng, J., Liu, X., Song, L., Lin, X., Zhang, H., Shen, C. and H. Chu (2016): Nitrogen fertilization directly affects soil bacterial diversity and indirectly affects bacterial community composition. Soil Biology and Biochemistry 92, 41–49.ZengJ.LiuX.SongL.LinX.ZhangH.ShenC.ChuH.2016Nitrogen fertilization directly affects soil bacterial diversity and indirectly affects bacterial community compositionSoil Biology and Biochemistry9241–4910.1016/j.soilbio.2015.09.018Search in Google Scholar

Zhang, W., Hendrix, P.F., Dame, L.E., Burke, R.A., Wu, J., Neher, D.A., Li, J., Shao, Y. and S. Fu (2013): Earthworms facilitate carbon sequestration through unequal amplification of carbon stabilization compared with mineralization. Nature Communications 4, 2576.ZhangW.HendrixP.F.DameL.E.BurkeR.A.WuJ.NeherD.A.LiJ.ShaoY.FuS.2013Earthworms facilitate carbon sequestration through unequal amplification of carbon stabilization compared with mineralizationNature Communications4257610.1038/ncomms357624129390Search in Google Scholar

Zimmer, M., Kautz, G. and W. Topp (2005): Do woodlice and earthworms interact synergistically in leaf litter decomposition? Functional Ecology 19, 7–16.ZimmerM.KautzG.ToppW.2005Do woodlice and earthworms interact synergistically in leaf litter decomposition?Functional Ecology197–1610.1111/j.0269-8463.2005.00926.xSearch in Google Scholar

eISSN:
0006-5471
Lingua:
Inglese
Frequenza di pubblicazione:
4 volte all'anno
Argomenti della rivista:
Life Sciences, Ecology, other