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Long-term development of landscape openness and arable land use in an agricultural region of southern Sweden: the potential of REVEALS estimates using pollen records from wells

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Abstract

The twofold aim of this study was to investigate the long-term landscape development in an intensely cultivated region of south-western Scania, southern Sweden, and to discuss the potential of pollen records from wells for this purpose. Pollen records from 36 different wells from 12 archaeological sites were compiled. Based on 35 of the wells, ranging ca 800 cal bc–cal ad 1900, regional vegetation cover for seven different time-windows was quantified using the REVEALS model and a multiple small sites approach. According to the REVALS output, landscape openness was high and relatively constant during the last ca 2,500 years (open-land vegetation covered 90–97%), whereas arable land use expanded more gradually (cereal vegetation expanded from 9% cover 800–500 bc to 38% cover ad 1700–1900). This gradual increase in arable farming at the expense of grassland enabled an increase in food production within an already agriculturally colonized landscape. The REVEALS estimates based on pollen records from wells were in general accordance with earlier published REVEALS reconstructions based on lake sediments from neighbouring regions. A GIS analysis of arable land use in south-western Scania around ad 1800, based on old cadastral maps, gave similar results as the REVEALS reconstruction of cereal vegetation cover for the ad 1700–1900 time-window. It gives support to the conclusion that pollen records from wells may be used for REVEALS reconstructions of past vegetation cover.

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References

  • Alexandersson H, Karlström C, Larsson-McCann S (1991) Temperaturen och nederbörden i Sverige 1960–1990. Swedish Meteorological and Hydrological Institute, Norrköping

    Google Scholar 

  • Berglund BE, Ralska-Jasiewiczowa M (1986) Pollen analysis and pollen diagrams. In: Berglund BE (ed) Handbook of Holocene palaeoecology and palaeohydrology. Wiley, Chichester, pp 455–484

    Google Scholar 

  • Björhem N, Magnusson Staaf B (2006) Långhuslandskapet – en studie av bebyggelse och samhälle från stenålder till järnålder (English summary). Öresundsförbindelsen och arkeologin. Malmö Kulturmiljö, Malmö

    Google Scholar 

  • Björkman L (1997) The role of human disturbance in the local Late Holocene establishment of Fagus and Picea forests at Flahult, Western Småland, Southern Sweden. Veget Hist Archaeobot 6:79–90. https://doi.org/10.1007/978-94-009-3081-0

    Article  Google Scholar 

  • Bronk Ramsey C (2009) Bayesian analysis of radiocarbon dates. Radiocarbon 51:337–360

    Article  Google Scholar 

  • Broström A, Sugita S, Gaillard M-J (2004) Pollen productivity estimates for the reconstruction of past vegetation cover in the cultural landscape of southern Sweden. Holocene 14:368–381

    Article  Google Scholar 

  • Brozio JP, Dörfler W, Feeser I, Kirleis W, Klooß S, Müller J (2014) A Middle Neolithic well from Northern Germany: a precise source to reconstruct water supply management, subsistence economy, and deposition practices. J Archaeol Sci 51:135–153. https://doi.org/10.1016/j.jas.2013.03.029

    Article  Google Scholar 

  • Cui Q-Y, Gaillard M-J, Lemdahl G, Stenberg L, Sugita S, Zernova G (2014) Historical land-use and landscape change in southern Sweden and implications for present and future biodiversity. Ecol Evol 4:3,555–3,570

    Article  Google Scholar 

  • Dahl S (1968) Vångalag i Skåne. Ymer 80:72–86

    Google Scholar 

  • Eisenhut G (1961) Untersuchungen über die Morphologie und Ökologie der Pollenkörner heimischer und fremdländischer Waldbäume. Paul Parey, Hamburg

    Google Scholar 

  • Emanuelsson U (1988) A model for describing the development of the cultural landscape. In: Birks HH, Birks HJB, Kaland PE, Moe D (eds) The cultural landscape: past, present and future. Cambridge University Press, Cambridge, pp 111–121

    Google Scholar 

  • Engelmark R (1992) A review of the farming economy in South Scania based on botanical evidence. In: Larsson L, Callmer J, Stjernquist B (eds) The archaeology of the culture landscape—field work and research in a south Swedish rural region. Acta Archaeologica Lundensia. Series in 4° 19. Almqvist & Wiksell, Stockholm, pp 369–374

  • Erlström M, Lidmar-Bergström K, Liljegren R, Malmberg-Persson K, Schlyter P, Sivhed U, Wikman H (1999) Berg och jord. In: Germundsson T, Schlyter P (eds) Atlas över Skåne. Sveriges Nationalatlas, Stockholm, pp 10–29

    Google Scholar 

  • Figueiral I, Pomarèdes H, Court-Picon M, Bouby L, Tardy C, Terral J-F (2015) New insights into Mediterranean Gallo-Roman farming: a closer look at archaeological wells in Southern France. Archaeol Anthropol Sci 7:201–233. https://doi.org/10.1007/s12520-014-0181-8

    Article  Google Scholar 

  • Fredh D, Broström A, Rundgren M, Lagerås P, Mazier F, Zillén L (2013) The impact of land-use change on floristic diversity at regional scale in southern Sweden 600 bc-ad 2008. Biogeosciences 10:3,159–3,173. https://doi.org/10.5194/bg-10-3159-2013

    Article  Google Scholar 

  • Fredh ED, Lagerås P, Mazier F, Björkman L, Lindbladh M, Broström A (2019) Farm establishment, abandonment and agricultural practices during the last 1,300 years: a case study from southern Sweden based on pollen records and the LOVE model. Veget Hist Archaeobot 28:529–544. https://doi.org/10.1007/s00334-019-00712-x

    Article  Google Scholar 

  • Grabowski R (2011) Changes in cereal cultivation during the Iron Age in southern Sweden: a compilation and interpretation of the archaeobotanical material. Veget Hist Archaeobot 20:479–494. https://doi.org/10.1007/s00334-011-0283-5

    Article  Google Scholar 

  • Gräslund B, Price N (2012) Twilight of the gods? The ‘dust veil event’ of ad 536 in critical perspective. Antiquity 86:428–443

    Article  Google Scholar 

  • Greisman A, Gaillard M-J (2008) The role of climate variability and fire in early and mid Holocene forest dynamics of southern Sweden. J Quat Sci 24:593–611. https://doi.org/10.1002/jqs.1241

    Article  Google Scholar 

  • Grimm E (1992) TILIA and TILIA GRAPH: Pollen spreadsheet and graphics program. In: 8th international palynological congress (Aix-en-Provence, France), Program and Abstracts, p 56

  • Hellman S (2007) Validating and testing the Landscape Reconstruction Algorithm in southern Sweden—towards quantitative reconstruction of past vegetation. Linnaeus University, Kalmar

    Google Scholar 

  • Hellman SEV, Gaillard M-J, Broström A, Sugita S (2008) Effects of the sampling design and selection of parameter values on pollen-based quantitative reconstructions of regional vegetation: a case study in southern Sweden using the REVEALS model. Veget Hist Archaeobot 17:445–459

    Article  Google Scholar 

  • Hjelle KL, Halvorsen LS, Prøsch-Danielsen L et al (2018) Long-term changes in regional vegetation cover along the west coast of southern Norway: the importance of human impact. J Veget Sci 29:404–415

    Article  Google Scholar 

  • Hultberg T, Lagerås P, Björkman L et al (2017) The late-Holocene decline of Tilia in relation to climate and human activities—pollen evidence from 42 sites in southern Sweden. J Biogeogr 44:2,398–2,409. https://doi.org/10.1111/jbi.13016

    Article  Google Scholar 

  • Lagerås P (2009) Bilaga 8: Resultat av pollenanalys och makrofossilanalys från Brunnshög. Riksantikvarieämbetet, Avdelningen för arkeologiska undersökningar, DAFF 2019:2

    Google Scholar 

  • Lagerås P (2013) Den agrara ekonomin och växtutnyttjandet i Örja – analyser av växtmakrofossil och pollen. In: Schmidt Sabo K (ed) Örja 1:9. Riksantikvarieämbetet UV Rapport 2013:68. Riksantikvarieämbetet, Lund, pp 207–226

  • Lagerås P (2014) Grophus med mera från yngre järnålder i sydvästra Skåne - resultat av makrofossilanalys och pollenanalys. In: Söderberg B (ed) Väg E6 Trelleborg-Vellinge: Område 6:1. Riksantikvarieämbetet UV Rapport 2014:57

  • Lagerås P (ed) (2016) Environment, society and the Black Death—an interdisciplinary approach to the late-medieval crisis in Sweden. Oxbow Books, Oxford

    Google Scholar 

  • Lagerås P (2018) Pollenanalys. In: Söderberg B (ed) Stanstorp 5:1 och 6:1 – boplats och offerplats från yngre järnålder. Statens historiska museer, Arkeologerna Rapport 2018:137. Arkeologerna, Statens historiska museer, Stockholm, pp 163–165

  • Lagerås P, Magnell O (2017) Arkeobotanisk och osteologisk analys. In: Bolander A (ed) Östra Grevie 9:30 och 12:14, där backe möter slätt – mellan mosse och lund. Statens historiska museer, Arkeologerna Rapport 2017:18. Arkeologerna, Statens historiska museer, Stockholm, pp 69–86

  • Lagerås P, Magnell O (2019) Arkeobotanisk och osteologisk analys – agrara verksamheter och försörjningsbas. In: Lindberg S, Schmidt Sabo K (eds) Bytomt och boplats i Fjelie inför ombyggnad av väg E6.02. Statens historiska museer, Arkeologerna Rapport 2019:10. Arkeologerna, Statens historiska museer, Stockholm, pp 153–202

  • Lagerås P, Broström A, Fredh D et al (2016) Abandonment, agricultural change and ecology. In: Lagerås P (ed) Environment, society and the Black Death—an interdisciplinary approach to the late-medieval crisis in Sweden. Oxbow Books, Oxford, pp 30–68

    Chapter  Google Scholar 

  • Larsson M (2015) Agrarian plant economy at Uppåkra and the surrounding area: archaeobotanical studies of an Iron Age regional center. Acta Archaeologica Lundensia. Series in 4° 33. Lund University, Lund

  • Larsson M, Lagerås P (2014) Rapport avseende paleoekologisk analys. In: Carlie A, Lagergren A (eds) Lindängelund 1—bilagor. Riksantikvarieämbetet UV Rapport 2014:36. Riksantikvarieämbetet, Lund, pp 166–187

  • Larsson M, Lagerås P (2015) New evidence on the introduction, cultivation and processing of hemp (Cannabis sativa L.) in southern Sweden. Environ Archaeol 20:111–119. https://doi.org/10.1179/1749631414Y.0000000029

    Article  Google Scholar 

  • Lindahl Jensen B, Lagerås P, Regnell M (1995) A deposition of bark vessels, flax and opium poppy from 2500 bp in Sallerup, southern Sweden. Pact 50:305–318

    Google Scholar 

  • Lindbladh M, Foster DR (2010) Dynamics of long-lived foundation species: the history of Quercus in southern Scandinavia. J Ecol 98:1,330–1,345. https://doi.org/10.1111/j.1365-2745.2010.01733.x

    Article  Google Scholar 

  • Lindbladh M, Brunet J, Hannon G et al (2007) Forest history as a basis for ecosystem restoration—a multidisciplinary case study in a South Swedish temperate landscape. Restor Ecol 15:284–295. https://doi.org/10.1111/j.1526-100X.2007.00211.x

    Article  Google Scholar 

  • Lindbladh M, Niklasson M, Karlsson M, Björkman L, Churski M (2008) Close anthropogenic control of Fagus sylvatica establishment and expansion in a Swedish protected landscape—implications for forest history and conservation. J Biogeogr 35:682–697. https://doi.org/10.1111/j.1365-2699.2007.01813.x

    Article  Google Scholar 

  • Mazier F, Broström A, Bragée P et al (2015) Two hundred years of land-use change in the South Swedish Uplands: comparison of historical map-based estimates with pollen-based reconstruction using the landscape reconstruction algorithm. Veget Hist Archaeobot 24:555–570

    Article  Google Scholar 

  • Myrdal J (1982) Jordbruksredskap av järn före år 1000. Fornvännen 77:81–104

    Google Scholar 

  • Nielsen AB (2004) Modelling pollen sedimentation in Danish lakes at c. ad 1800: an attempt to validate the POLLSCAPE model. J Biogeogr 31:1,693–1,709

    Article  Google Scholar 

  • Nielsen AB, Odgaard BV (2010) Quantitative landscape dynamics in Denmark through the last three millennia based on the Landscape Reconstruction Algorithm approach. Veget Hist Archaeobot 19:375–387

    Article  Google Scholar 

  • Nielsen AB, Giesecke T, Teuerkauf M et al (2012) Quantitative reconstructions of changes in regional openness in north-central Europe reveal new insights into old questions. Quat Sci Rev 47:131–149

    Article  Google Scholar 

  • Nilsson L (2006) Djur och människor längs vägen. Öresundsförbindelsen och arkeologin. Malmöfynd 9. Malmö Kulturmiljö, Malmö

    Google Scholar 

  • Ranheden H (2014) Paleokologiska analyser från Lindängelund 4. In: Strömberg B, Carlie A, Lagergren A, Schmidt Sabo K (eds) Lockarp 24:1, 42:1 och 43:1. Riksantikvarieämbetet UV Rapport 2014:83

  • Redman CL (1999) Human impact on ancient environments. The University of Arizona Press, Tucson

    Google Scholar 

  • Regnell M, Sjögren K-G (2006) Introduction and development of agriculture. In: Sjögren K-G (ed) Ecology and economy in Stone Age Scania. National Heritage Board, Stockholm, pp 106–169

    Google Scholar 

  • Reimer PJ, Baillie MGL, Bard E et al (2004) IntCal04 terrestrial radiocarbon age calibration, 0-26 cal kyr bp. Radiocarbon 46:1,029–1,058

    Article  Google Scholar 

  • Ringberg B (1976) Description to Quaternary map Malmö NV. Sveriges Geologiska Undersökning. Serie Ae 27. Uppsala

  • Ringberg B (1980) Description to Quaternary map Malmö SO. Sveriges Geologiska Undersökning. Serie Ae 38. Uppsala

  • Ringberg B (1987) Description to Quaternary map Malmö NO. Sveriges Geologiska Undersökning. Serie Ae 85. Uppsala

  • Rühl L, Stobbe A (2018) Bronze Age wells in the Transurals (Russia) as multi-record archives—a combined study of pollen, plant macro-remains and micromorphology. In: 24th EAA annual meeting, abstract book 1. European Association of Archaeologists, Barcelona, p 293

  • Schmidt Sabo K, Söderberg B (2019) Byns vara eller icke vara, är det frågan? By och bebyggelse i sydvästra Skåne 400–1800 e. Kr. In Situ 13:5–54

    Google Scholar 

  • Sigl M, Winstrup M, McConnell JR et al (2015) Timing and climate forcing of volcanic eruptions for the past 2,500 years. Nature 523:543–549

    Article  Google Scholar 

  • Sköld E, Lagerås P, Berglund BE (2010) Temporal cultural landscape dynamics in a marginal upland area: agricultural expansions and contractions inferred from palynological evidence at Yttra Berg, southern Sweden. Veget Hist Archaeobot 19:121–136. https://doi.org/10.1007/s00334-009-0234-6

    Article  Google Scholar 

  • Sørensen L, Karg S (2014) The expansion of agrarian societies towards the north—new evidence for agriculture during the Mesolithic/Neolithic transition in Southern Scandinavia. J Archaeol Sci 51:98–114. https://doi.org/10.1016/j.jas.2012.08.042

    Article  Google Scholar 

  • Stobbe A, Röpke A, Rasbach G (2018) A Roman well in Waldgirmes (Hesse, Germany)—palynological and micromorphological analyses. In: 24th EAA annual meeting, abstract book 1. European Association of Archaeologists, Barcelona, p 291

  • Sugita S (1993) A model of pollen source area for an entire lake surface. Quat Res 39:239–244

    Article  Google Scholar 

  • Sugita S (2007) Theory of quantitative reconstruction of vegetation I: pollen from large sites REVEALS regional vegetation composition. Holocene 17:229–241. https://doi.org/10.1177/0959683607075837

    Article  Google Scholar 

  • Sugita S, Gaillard M-J, Broström A (1999) Landscape openness and pollen records: a simulation approach. Holocene 9:409–421

    Article  Google Scholar 

  • Sugita S, Parshall T, Calcote R, Walker K (2010) Testing the landscape reconstruction algorithm for spatially explicit reconstruction of vegetation in northern Michigan and Wisconsin. Quat Res 74:289–300

    Article  Google Scholar 

  • Tesch S (1991) Tradition and change during the Bronze Age and Iron Age: houses as archaeological sources for the study of changes in the cultural landscape. In: Berglund BE (ed) The cultural landscape during 6000 years in southern Sweden—the Ystad Project. Ecological Bulletins 41. Munksgaard International, Copenhagen, pp 326–336

    Google Scholar 

  • Tolksdorf JF, Schmalfuß G, Herbig C, Köster H, Turner F, Stäuble H (2017) End Neolithic water management in central Germany based on geoarchaeological and palaeobotanical analyses of wells at the Roitzschjora site, northern Saxony. J Neolit Archaeol 19:127–140. https://doi.org/10.12766/jna.2017.5

    Article  Google Scholar 

  • Trondman A-K, Gaillard M-J, Sugita S et al (2016) Are pollen records from small sites appropriate for REVEALS model-based quantitative reconstructions of past regional vegetation? An empirical test in southern Sweden. Veget Hist Archaeobot 25:131–151. https://doi.org/10.1007/s00334-015-0536-9

    Article  Google Scholar 

  • Vuorela I, Lempiäinen T (1993) Palynological and palaeobotanical investigations in the area of the post-medieval Helsinki Old Town. Veget Hist Archaebot 2:101–123

    Article  Google Scholar 

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Acknowledgements

We thank the anonymous reviewers for constructive comments. The paper was presented at the EAA meeting in Barcelona 2018, at the session ‘Exploring the Potential of Palynology in Archaeological Contexts’.

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Lagerås, P., Fredh, E.D. Long-term development of landscape openness and arable land use in an agricultural region of southern Sweden: the potential of REVEALS estimates using pollen records from wells. Veget Hist Archaeobot 29, 113–124 (2020). https://doi.org/10.1007/s00334-019-00756-z

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