Publikationen

Barhoumi C, Rohland H, Franken C, Dulamsuren Ch, Saindovdon D, Behling H (2026) Environmental change and imperial land use in central Mongolia: a multiproxy lake record from the vicinity of Karakorum over the last 1260 years.
Palaeogeography, Palaeoclimatology, Palaeoecology 691: 113752.
https://doi.org/10.1016/j.palaeo.2026.113752

Dulamsuren Ch, Batsaikhan G, Csapek G, Rust S, Hauck M (2026) Testing the influence of internal stem decay and topography on biomass and carbon stock estimates in Mongolia’s boreal forest.
Ecosystems (in press)

Hauck M, Dietrich V (2026) Eutrophierung kontra Waldvitalität: Hohe Stickstoffdeposition aus der Landwirtschaft schadet der Rotbuche (Eutrophication versus forest vitality: High nitrogen deposition from agriculture harms European beech).
Natur und Landschaft 101: 193-201.
https://doi.org/10.19217/NuL2026-05-01

Kaufmann S, Delp M, Heinze D, Kreimeyer L, Rosenbach M, Hauck M (2026) Tree species choice by forest management and biodiversity: Replacing Abies alba by Picea abies and Pseudotsuga menziesii drives epiphytes to higher elevations. 
Forest Ecology and Management 605: 123501.
https://doi.org/10.1016/j.foreco.2025.123501

Möller T, Kaufmann S, Hauck M (2026) Effects of habitat quality and fine-scale spatial structure on epiphytic lichen and bryophyte communities.
Journal of Ecology 114: e70274.
https://doi.org/10.1111/1365-2745.70274

Möller T, Kaufmann S, Hauck M (2026) Functional traits mediate physico-chemical niche differentiation of epiphytic lichens and bryophytes in temperate forests.
Journal of Vegetation Science 37: e70127.
https://doi.org/10.1111/jvs.70127.

Bärmann, L.Kaufmann, S., Klingenfuss, S., Scherer-Lorenzen, M., & Hauck, M. (2025)
The presence of alternative tree species in European beech forests drives change in functional diversity and composition of forest floor plant communities.
Journal of Vegetation Science36(4), e70058.
https://doi.org/10.1111/jvs.70058

Bärmann L, Kaufmann S, Hauck M (2025)
Climate change adaption of European beech forests: silver fir admixtures drive understorey plant diversity.
Forest Ecology and Management 579: 100807.
https://doi.org/10.1016/j.tfp.2025.100807

Dietrich V, Niederberger J, Espadilha Patriarca N, Becker M, Müller S, Lorösch H, Boll S, Hoque N, Jüngling H, Beck N, Dierks A, Ebert P, Troidl E, Hauck M (2025)
Combined effects of nitrogen deposition and climate on root-to-shoot ratios and root morphology in temperate tree regeneration. 
Ecosystems 28: 17.
https://doi.org/10.1007/s10021-025-00962-z

Dietrich V, Niederberger J, Frank J, Hauck M (2025)
Does atmospheric nitrogen deposition cause critical nutrient imbalances in temperate tree regeneration? 
Trees 39: 28. 
https://doi.org/10.1007/s00468-025-02615-z

Dietrich V, Niederberger J, Hauck M (2025)
Stable isotope inferred intrinsic water use efficiency and its relation to N sources in temperate tree regeneration with increasing levels of N deposition, precipitation, and temperature. 
Environmental and Experimental Botany 232: 106125.
https://doi.org/10.1016/j.envexpbot.2025.106125

Emrich D, Gustafsson L, Kaufmann S, Hauck M (2025)
Tree species identity modifies the efficiency of habitat tree retention for conserving epiphytes in temperate mountain forests. 
Forest Ecology and Management 585: 122616.
https://doi.org/10.1016/j.foreco.2025.122616

Emrich D, Kaufmann S, Hauck M (2025)
Selecting dominant or rare tree species as habitat trees: consequences for epiphyte diversity in temperate mountain forests. 
Trees, Forests and People 20:100807
https://doi.org/10.1016/j.tfp.2025.100807

Hauck MCsapek GDulamsuren Ch (2025)
Internal stem decay is not a major source of error for carbon stock estimates in managed temperate forests of Central Europe. 
Journal of Ecology 113: 2603-2612.
https://doi.org/10.1111/1365-2745.70116

Hauck M, Dietrich V (2025)
Nitrogen deposition controls intrinsic water-use efficiency in Fagus sylvatica regeneration more tightly than climate. 
Forest Ecology and Management 592: 122835.
https://doi.org/10.1016/j.foreco.2025.122835

Hauck M, Schneider T, Bahlinger S, Fischbach J, Oswald G, Csapek G, Dulamsuren Ch (2025)
Heat tolerance of temperate tree species from Central Europe. 
Forest Ecology and Management 580: 122541.
https://doi.org/10.1016/j.foreco.2025.122541

Möller T, Kaufmann S, Hauck M (2025)
Tree, stand, and landscape scale effects on epiphytic lichen and bryophyte diversity in temperate mountain forests.
Forest Ecology and Management: 594: 122967.
https://doi.org/10.1016/j.foreco.2025.122967

Deilmann TJ, Christiansen DM, García Criado M, Möller T, Schüle M, Täuber A (2024)
Early Career Researchers advocate for raising the profile of bryophyte ecological research. 
Basic and Applied Ecology 81: 106-111.
https://doi.org/10.1016/j.baae.2024.11.001

Diers M, Leuschner C, Dulamsuren Ch, Schulz TC, Weigel R (2024)
Increasing winter temperatures stimulate Scots pine growth in the North German lowlands despite stationary sensitivity to summer drought. 
Ecosystems 27: 428-442.
https://doi.org/10.1007/s10021-023-00897-3

Dietrich V, Lauritz M, Roggenhofer MM, Redlin-Weiß J, Huber M, Schulte J, Wanninger A, Niederberger J, Hauck M (2024)
Drought effects on growth and density of temperate tree regeneration under different levels of nitrogen deposition. 
Forest Ecology and Management 559: 121825.
https://doi.org/10.1016/j.foreco.2024.121825

Dulamsuren Ch, Buyanbaatar A, Batsaikhan G, Batdorj D, Khishigjargal M, Dorjsuren C, Tsogt Z, Ariunbaatar T, Munkhtuya B, Tuya D (2024)
Effects of salvage logging after forest fire on Siberian larch regeneration and ecosystem carbon stocks at the drought limit of the boreal forest in
Mongolia. 
Trees, Forests and People 18: 100720.
https://doi.org/10.1016/j.tfp.2024.100720

Hauck M, Lkhagvadorj D, Dulamsuren Ch (2024)
Mongolia’s pastoral nomadism in transition: putting case studies on socioecological feedbacks and socioeconomic forcing into a conceptual
framework. In: Degen AA, Dana L-P (Eds.) Lifestyle and livelihood changes among formerly nomadic peoples: entrepreneurship, diversity and
urbanisation.
Springer, Cham, pp. 259-283.
https://doi.org/10.1007/978-3-031-51142-4_12

Klesse S, Peters R, von Arx G, Levesque M, Buras A, Dorado-Liñán I, Badeau V, Bosela M, Bert D, Kaspar J, Jump A, Hevia A, Land A, Rubio-Cuadrado A, Menzel A, Hacket-Pain A, Petritan AM, Garamszegi B, Stajić B, Čada V, Roibu C, Dulamsuren Ch, Baittinger C, van der Maaten E, Battipaglia G, Lebourgeois F, Janda P, Camarero JJ, Espelta J, Gričar J, Longares L, Kazimirovic M, Grabner M, Panayatov M, Wilmking M, Zang C, Tognetti R, Zlatanov T, Sánchez-Salguero R, Motta R, Alfaro Sánchez R, Weigel R, Svoboda M, Nola P (2024)
No future growth enhancement expected at the northern edge for European beech due to continued water limitation. 
Global Change Biology 30: e17546.
https://doi.org/10.1111/gcb.17546

Leifsson C, Buras A, Klesse S, Baittinger C, Bat-Enerel B, Battipaglia G, Biondi F, Budeanu M, Vojtěch Č, Camarero JJ, Cavin L, Claessens H, Čufar K, de Luis M, Dorado-Liñán I, Dulamsuren Ch, Garamszegi B, Grabner M, Hacket-PainA, Hansen JK, Hartl C, Huang W, Janda P, Jump AS, Kazimirović M, Knutzen F, Kreyling J, Land A, Latte N, Lebourgeois F, Leuschner C, Longares LA, Martinez del Castillo E, Menzel A, Motta R, Muffler-Weigel L, Nola P, Panayatov M, Petritan AM, Petritan IC, Popa I, Roibu C-C, Rubio-Cuadrado Á, Rydval M, Scharnweber T, Stajić B, Svoboda M, Toromani E, Trotsiuk V, van der Maaten-Theunissen M, van der Maaten E, Weigel R, Wilmking M, Zlatanov T, Rammig A, Zang C (2024)
Identifying drivers of non-stationary climate-growth relationships of European beech. 
Science of the Total Environment 937: 173321.
https://doi.org/10.1016/j.scitotenv.2024.173321

Otgontuya T, Gerelbaatar S, Batsaikhan G, Burmaa B, Delgermaa A, Kim K-W, Seah KY, Bolormaa O (2024)
Tree canopy area-dependent changes in soil properties: a comparative study in the southern limit of boreal forest distribution. 
Forest Science and Technology
https://doi.org/10.1080/21580103.2023.2295450

Zibold M, Bässler C, Hauck M, Scherer-Lorenzen M (2024)
Fungi and deadwood diversity: A test of the area-heterogeneity trade-off hypothesis. 
Journal of Ecology 112: 1701-1718.
https://doi.org/10.1111/1365-2745.14352

Bärmann L, Kaufmann S, Weimann S, Hauck M (2023)
Future forests and biodiversity: effects of Douglas fir introduction into temperate beech forests on plant diversity. 
Forest Ecology and Management 545: 121286.
https://doi.org/10.1016/j.foreco.2023.121286

Batsaikhan G, Ishiguri F, Nezu I, Ohshima J, Yokota, S, Tumenjargal B, Sukhbaatar G (2023)
Effects of radial growth rate on juvenile wood properties of Pinus sylvestris planted in Mongolia. 
Baltic Forestry 29: id649.
https://doi.org/10.46490/bf649

Dulamsuren Ch, Byamba-Yondon G, Oyungerel S, Nitschke R, Gebauer T (2023)
Non-structural carbohydrate concentrations in contrasting dry and wet years in early- and late-successional boreal forest trees. 
Trees 37: 1315-1332.
https://doi.org/10.1007/s00468-023-02420-6

Dulamsuren Ch, Coners H, Leuschner C, Hauck M (2023)
Climatic control of high-resolution stem radius changes in a drought-limited southern boreal forest. 
Trees 37: 797-810.
https://doi.org/10.1007/s00468-022-02384-z

Hauck M (2023)
Zeitenwende im Wald: Klimawandelanpassung durch Ersatzbaumarten – eine langfristige Lösung? (Turning point in the forest: Adapting to climate change by replacing tree species – A long-term solution?). 
Natur und Landschaft 98: 516-523.
https://bfn.bsz-bw.de/frontdoor/deliver/index/docId/1829/file/NuL2023-11-04.pdf

Hauck MCsapek GDulamsuren Ch (2023)
The significance of large old trees and tree cavities for forest carbon estimates. 
Forest Ecology and Management 546: 121319.
https://doi.org/10.1016/j.foreco.2023.121319

Hauck M, Klinge M, Erasmi S, Dulamsuren Ch (2023)
No signs of long-term greening trend in western Mongolian grasslands. 
Ecosystems 26: 1125-1143.
https://doi.org/10.1007/s10021-023-00819-3

Leuschner C, Weithmann G, Bat-Enerel B, Weigel R (2023)
The future of European beech in northern Germany – climate change vulnerability and adaptation potential. 
Forests 14: 1448.
https://doi.org/10.3390/f14071448

Sukhbaatar G, Chimednyam D, Nachin B, Batsaikhan G, Gradel A (2023)
Allometric equations for the estimation of above- and below-ground biomass for Larix sibirica Ledeb. in Northern Mongolia. 
Forest Science and Technology
https://doi.org/10.1080/21580103.2023.2165173

Weigel R, Bat-Enerel B, Dulamsuren Ch, Muffler L, Weithmann G, Leuschner C (2023)
Summer drought exposure, stand structure, and soil properties jointly control the growth of European beech along a steep precipitation gradient in northern Germany. 
Global Change Biology 29: 763-779.
https://doi.org/10.1111/gcb.16506

Dulamsuren Ch, Bat-Enerel B, Meyer P, Leuschner C (2022)
Did stand opening 60 years ago predispose a European beech population to death? 
Trees, Forests and People 8: 100265.
https://doi.org/10.1016/j.tfp.2022.100265

Martinez del Castillo E, Zang CS, Buras A, Hacket-Pain A, Esper J, Serrano-Notivoli R, Hartl C, Weigel R, Klesse S, Resco de Dios V, Scharnweber T, Dorado-Liñán I, van der Maaten-Theunissen M, van der Maaten E, Jump A, Mikac S, Bat-Enerel B, Beck W, Cavin L, Claessens H, Cada V, Cufar K, Dulamsuren Ch, Gricar J, Gil-Pelegrín E, Janda P, Kazimirovic M, Kreyling J, Latte N, Leuschner C, Lonagres LA, Menzel A, Merela M, Motta R, Muffler L, Nola P, Petrita AM, Petritan IC, Prislan P, Rubio-Cuadrado Á, Ryvdal M, Stajic B, Svoboda M, Toromani E, Trotsiuk V, Wilmking M, Zlatanov T, de Luis M (2022)
Climate-change-driven growth decline of European beech forests.
Communications Biology 5: 163.
https://doi.org/10.1038/s42003-022-03107-3

Roth M, Müller-Meißner A, Michiels H-G, Hauck M (2022)
Vegetation changes in the understory of nitrogen-sensitive temperate forests over the past 70 years.
Forest Ecology and Management 503: 119754.
https://doi.org/10.1016/j.foreco.2021.119754

Roth M, Puhlmann H, Michiels H-G, Hauck M (2022)
Manganese availability modifies nitrogen eutrophication signals in acidophilous temperate forests. 
Trees, Forests and People 9: 100281.
https://doi.org/10.1016/j.tfp.2022.100281

Dulamsuren Ch (2021)
Organic carbon stock losses by disturbance: comparing broadleaved pioneer and late-successional conifer forests in Mongolia’s boreal forest. 
Forest Ecology and Management 499: 119636.
https://doi.org/10.1016/j.foreco.2021.119636

Dulamsuren ChHauck M (2021)
Drought stress mitigation by nitrogen in boreal forests inferred from stable isotopes.
Global Change Biology 27: 5211-5224.
https://doi.org/10.1111/gcb.15813

Erasmi S, Klinge M, Dulamsuren Ch, Schneider F, Hauck M (2021)
Modelling the productivity of Siberian larch forests from NDVI time series in fragmented forest stands of the Mongolian forest-steppe. 
Environmental Monitoring and Assessment 193: 200.
https://doi.org/10.1007/s10661-021-08996-1

Kaufmann SFunck S-KPaintner F, Asbeck T, Hauck M (2021)
The efficiency of retention measures in continuous-cover forestry for conserving epiphytic cryptogams: a case study on Abies albaForest Ecology and Management 502: 119698.
https://doi.org/10.1016/j.foreco.2021.119698

Klinge M, Dulamsuren Ch, Schneider F, Erasmi S, Bayarsaikhan U, Sauer D, Hauck M (2021)
Geoecological parameters indicate discrepancies between potential and actual forest area in the forest-steppe of Central Mongolia. 
Forest Ecosystems 8: 55.
https://doi.org/10.1186/s40663-021-00333-9

Klinge M, Schneider F, Dulamsuren Ch, Arndt K, Bayarsaikhan U, Sauer D (2021)
Interrelations between relief, vegetation, disturbances, and permafrost in the forest-steppe of central Mongolia. 
Earth Surface Processes and Landforms 46: 1766-1782.
https://doi.org/10.1002/esp.5116

Kortmann M, Müller J, Baier R, Bässler C, Buse J, Cholewińska O, Förschler MI, Georgiev B, Hilszczański J, Jaroszewicz B, Jaworski T, Kaufmann S, Kuijper D, Lorz J, Lotz A, Łubek A, Mayer M, Mayerhofer S, Meyer S, Morinière J, Popa F, Reith H, Roth N, Seibold S, Seidl R, Stengel E, Wolski G, Thorn S (2021)
Ecology versus society: Impacts of bark beetle infestations on biodiversity and restorativeness in protected areas of Central Europe. 
Biological Conservation 254: 108931.
https://doi.org/10.1016/j.biocon.2020.108931

Obladen N, Dechering P, Skiadaresis G, Tegel W, Keßler J, Höfferl S, Kaps S, Hertel M, Dulamsuren Ch, Seifert T, Hirsch M, Seim A (2021)
Tree mortality of European beech and Norway spruce induced by 2018-2019 hot droughts in central Germany. 
Agricultural and Forest Meteorology 307: 108482.
https://doi.org/10.1016/j.agrformet.2021.108482

Roth M, Michiels H-G, Puhlmann H, Sucker C, Hauck M (2021)
Multiple soil factors explain eutrophication signals in the understorey vegetation of temperate forests. 
Journal of Vegetation Science 32: e13063.
https://doi.org/10.1111/jvs.13063

Roth M, Michiels H-G, Puhlmann H, Sucker C, Winter M-B, Hauck M (2021)
Responses of temperate forests to nitrogen deposition: testing the explanatory power of modeled deposition datasets for vegetation gradients. 
Ecosystems 24: 1222-1238.
https://doi.org/10.1007/s10021-020-00579-4

Roth M, Günther K, Michiels H-G, Puhlmann H, Sucker C, Hauck M (2021)
Nitrogen deposition is positively correlated to foliar nitrogen content in Vaccinium myrtillus and other understory species in temperate forests on acidic soil. 
Acta Oecologica 110: 103696.
https://doi.org/10.1016/j.actao.2020.103696

Unkelbach J, Dulamsuren Ch, Behling H (2021)
Late Holocene climate and land-use history in the Mongolian Altai Mountains: combined evidence from palynological, macro-charcoal and tree-ring analyses. 
Trees, Forests and People 4:100073.
https://doi.org/10.1016/j.tfp.2021.100073

Unkelbach J, Dulamsuren Ch, Klinge M, Behling H (2021)
Holocene high-resolution forest-steppe and environmental dynamics in the Tarvagatai Mountains, north-central Mongolia, over the last 9570 cal yr BP. 
Quaternary Science Reviews 266:107076
https://doi.org/10.1016/j.quascirev.2021.107076

Zimmermann J, Link RM, Hauck M, Leuschner C, Schuldt B (2021)
60-year record of stem xylem anatomy and related hydraulic modification under increased summer drought in ring- and diffuse-porous temperate broad-leaved tree species.
Trees 35: 919-937.
https://doi.org/10.1007/s00468-021-02090-2

Jung P, Baumann K, Emrich D, Springer A, Felde VJMNL, Dultz S, Baum C., Frank M, Büdel B, Leinweber P (2020)
Lichens bite the dust – a bio-weathering scenario in the Atacama Desert. 
iScience 23: 101647.
https://doi.org/10.1016/j.isci.2020.101647

Jung P, Mikhailyuk T, Emrich D, Baumann K, Dultz S, Büdel B (2020)
Shifting Boundaries: ecological and geographical range extension based on three new species in the cyanobacterial genera AliterellaCyanocohniella and Oculatella.
Journal of Phycology 56: 1216-1231.
https://doi.org/10.1111/jpy.13025

Saindovdon D, Unkelbach J, Dulamsuren Ch, Punsalpaamuu G, Beket U, Behling H (2020)
Modern pollen rain studies at the forest steppe ecotone in the Lake Dayan region, Mongolian Altai. 
Mongolian Journal of Biological Sciences 18: 3-11.
https://doi.org/10.22353/mjbs.2020.18.01

Schuldt B, Buras A, Arend M, Vitasse Y, Beierkuhnlein C, Damm A, Gharun M, Grams TEE, Hauck M, Hajek P, Hartmann H, Hilbrunner E, Hoch G, Holloway-Phillips M, Körner C, Larysch E, Lübbe T, Nelson DB, Rammig A, Rigling A, Rose L, Ruehr NK, Schumann K, Weiser F, Werner C, Wohlgemuth T, Zang CS, Kahmen A (2020)
A first assessment of the impact of the extreme 2018 drought on Central European forests. 
Basic and Applied Ecology 45: 86-103.
https://doi.org/10.1016/j.baae.2020.04.003

Dulamsuren Ch, Abilova Sh, Bektayeva M, Eldarov M, Schuldt B, Leuschner C, Hauck M (2019)
Hydraulic architecture and vulnerability to drought-induced embolism in southern boreal tree species of Inner Asia. 
Tree Physiology 39: 463-473.
https://doi.org/10.1093/treephys/tpy116

Dulamsuren Ch, Klinge M, Bat-Enerel B, Ariunbaatar T, Tuya D (2019)
Effects of forest fragmentation on organic carbon pool densities in the Mongolian forest-steppe. 
Forest Ecology and Management 433: 780-788.
https://doi.org/10.1016/j.foreco.2018.10.054

Kaufmann S, Weinrich T, Hauck M, Leuschner C (2019)
Vertical variation in epiphytic cryptogam species richness and composition in a primeval Fagus sylvatica forest. 
Journal Vegetation Science 30:881-892.
https://doi.org/10.1111/jvs.12775

Pfeiffer M, Dulamsuren Ch, Wesche K (2019)
Grasslands and shrublands of Mongolia.
In Encyclopedia of the World’s Biomes doi:10.1016/B978-0-12-409548-9.12057-3. Elsevier.
https://doi.org/10.1016/b978-0-12-409548-9.12057-3

Unkelbach J, Dulamsuren Ch, Behling H, Punsalpaamuu G, Kashima K, Enters D (2019)
Late Holocene (Meghalayan) palaeoenvironmental evolution inferred from multi-proxy-studies of lacustrine sediments from the Dayan Nuur region of Mongolia. 
Palaeogeography, Palaeoclimatology, Palaeoecology 530: 1-14.
https://doi.org/10.1016/j.palaeo.2019.05.021

Zorigt M, Battulga G, Sarantuya G, Kenner S, Soninkhishig N, Hauck M (2019)
Runoff dynamics of the upper Selenge basin, a major water source for Lake Baikal, under a warming climate. 
Regional Environmental Change 19: 2609-2619.
https://doi.org/10.1007/s10113-019-01564-x

Bücher

Hauck M, Leuschner C, Homeier J (2019)
Klimawandel und Vegetation – Eine globale Übersicht. Springer Spektrum, Berlin/Heidelberg.
https://doi.org/10.1007/978-3-662-59791-0