{"id":26933,"date":"2025-03-20T09:59:00","date_gmt":"2025-03-20T08:59:00","guid":{"rendered":"https:\/\/www.idiv.de\/?p=26933"},"modified":"2025-03-20T11:14:07","modified_gmt":"2025-03-20T10:14:07","slug":"resource-efficient-tree-species-grow-faster-under-real-conditions-study-shows","status":"publish","type":"post","link":"https:\/\/www.idiv.de\/de\/resource-efficient-tree-species-grow-faster-under-real-conditions-study-shows\/","title":{"rendered":"Ressourceneffiziente Baumarten wachsen schneller unter realen Bedingungen, laut neuer Studie"},"content":{"rendered":"<div class=\"herosection pb-24 pt-0 no-bg modulclass \" id=\"\">\n                    <div class=\"swiper1noslider  nooverflow heronews swiper thinslider\" id=\"slide_69e1ab828ceea\">\n        \n                <div class=\"swiper-wrapper\">\n                                            <div class=\"swiper-slide  style_\" aria-hidden=\"true\" >\n                            <div class=\"backstretchwrap\">\n                        \n                            <div datasrc=\"https:\/\/www.idiv.de\/wp-content\/uploads\/2025\/03\/Common_alder_Alnus-glutinosa_WCarter-scaled.jpg\" class=\"backstretchimg responsiv desktop\"><\/div>\n\n                            <a href=\"#\" class=\"cr\"><svg  xmlns=\"http:\/\/www.w3.org\/2000\/svg\" width=\"22\" height=\"22\" viewBox=\"0 0 22 22\">\n                                    <rect id=\"BG\" width=\"22\" height=\"22\" rx=\"11\" fill=\"#fff\"\/>\n                                    <g id=\"Wrapper\" transform=\"translate(-1 -1)\">\n                                        <g id=\"Icon_material-copyright\" data-name=\"Icon material-copyright\">\n                                            <circle id=\"Ellipse_30\" data-name=\"Ellipse 30\" cx=\"8\" cy=\"8\" r=\"8\" transform=\"translate(4 4)\" fill=\"#fff\"\/>\n                                            <path id=\"Icon_material-copyright-2\" data-name=\"Icon material-copyright\" d=\"M9.464,10.088a2.045,2.045,0,0,1,.24-.7,1.4,1.4,0,0,1,.472-.5,1.42,1.42,0,0,1,.728-.184,1.45,1.45,0,0,1,.5.1,1.29,1.29,0,0,1,.416.288,1.54,1.54,0,0,1,.272.424,1.4,1.4,0,0,1,.112.512H13.64a2.864,2.864,0,0,0-.224-1.032,2.4,2.4,0,0,0-.56-.808,2.613,2.613,0,0,0-.864-.528,3.09,3.09,0,0,0-1.112-.184,3.127,3.127,0,0,0-1.36.272,2.751,2.751,0,0,0-.96.736,3.007,3.007,0,0,0-.568,1.088A4.685,4.685,0,0,0,7.8,10.9v.216a4.684,4.684,0,0,0,.184,1.312,2.908,2.908,0,0,0,.568,1.08,2.731,2.731,0,0,0,.96.728,3.246,3.246,0,0,0,1.36.272,3.051,3.051,0,0,0,1.056-.184,2.729,2.729,0,0,0,.864-.5,2.442,2.442,0,0,0,.592-.752,2.153,2.153,0,0,0,.24-.92H12.192a1.139,1.139,0,0,1-.12.464,1.177,1.177,0,0,1-.288.368,1.26,1.26,0,0,1-.416.24,1.589,1.589,0,0,1-.48.08,1.359,1.359,0,0,1-.712-.184,1.4,1.4,0,0,1-.472-.5,2.09,2.09,0,0,1-.24-.7,5.392,5.392,0,0,1-.064-.8V10.9a5.33,5.33,0,0,1,.064-.808ZM11,3a8,8,0,1,0,8,8A8,8,0,0,0,11,3Zm0,14.4A6.4,6.4,0,1,1,17.4,11,6.408,6.408,0,0,1,11,17.4Z\" transform=\"translate(1 1)\" fill=\"#4d4d4d\"\/>\n                                        <\/g>\n                                    <\/g>\n                                <\/svg>\n                                <span>Wikimedia \/ W. Carter<\/span><\/a>                        \n                                                    <div datasrc=\"https:\/\/www.idiv.de\/wp-content\/uploads\/2025\/03\/Common_alder_Alnus-glutinosa_WCarter-scaled.jpg\" class=\"backstretchimgmobile responsiv mobile\"><\/div>\n                                                    <\/div>\n                                        <div class=\"sliderinhalt \" role=\"region\" aria-label=\"carousel\">\n\n                                                \n\n                                                <p class=\"big align-center\" >20.03.2025 | Experimentelle Interaktions\u00f6kologie, Forschung, Medienmitteilung<\/p>                                            <h1 class=\"h1 tcenter\" >Ressourceneffiziente Baumarten wachsen schneller unter realen Bedingungen, laut neuer Studie<\/h1>                                                    <p style=\"text-align: left;\"><span style=\"font-weight: 400;\">Eine neue Studie in <em>Nature<\/em> zeigt, dass sogenannte konservative Arten, die N\u00e4hrstoffe, Wasser und Energie am effizientesten nutzen, unter realen Bedingungen im Allgemeinen schneller wachsen als akquisitive, angeblich schnell wachsende Arten. Die Ergebnisse tragen zu einem besseren Verst\u00e4ndnis bei, welche B\u00e4ume das gr\u00f6\u00dfte Potenzial zur Minderung der CO2-Emissionen haben.<\/span><\/p>\n                                                \n                                                                                                            <\/div>\n                                            <\/div>\n\n                        \n                 <\/div>\n\n                              <\/div>\n<\/div>\n\n<div class=\"textbildrepeater pb-24 pt-0 no-bg modulclass \" id=\"\">\n    <div class=\"container\">\n        <div class=\"row\">\n                                                                <div class=\"pb-24   mod_text  col-md-8 offset-md-2 pos_top\">\n                            <div class=\"textrepeater \" id=\"\">\n    <p><strong><i>Basierend auf einer Medienmitteilung vom <\/i><i>Franz\u00f6sisches nationales Forschungsinstitut f\u00fcr Landwirtschaft, Ern\u00e4hrung und Umwelt (<\/i><i>INRAE)<\/i><\/strong><\/p>\n<p>W\u00e4lder sind neben den Ozeanen eine der wichtigsten Kohlenstoffsenken, indem Kohlenstoff im Boden und in der Biomasse der B\u00e4ume gespeichert wird. Um zu ermitteln, welche Baumarten am meisten Kohlenstoff binden, hat ein internationales Forschungskonsortium, darunter Forschende vom Deutschen Zentrum f\u00fcr integrative Biodiversit\u00e4tsforschung (iDiv) Halle-Jena-Leipzig, der Universit\u00e4t Leipzig und dem Helmholtz-Zentrum f\u00fcr Umweltforschung \u2013 UFZ, untersucht, welche Merkmale oder funktionellen Eigenschaften das Wachstum und damit die CO2-Sequestrierung in der Biomasse von B\u00e4umen beg\u00fcnstigen.<\/p>\n<p>\u201eDiese globale Synthese stellt bestehende Paradigmen infrage und liefert neue Erkenntnisse \u00fcber die Dynamik des Baumwachstums unter verschiedenen Umweltbedingungen\u201c, sagt Prof. Nico Eisenhauer, Mitautor, Forschungsgruppenleiter bei iDiv und Professor an der Universit\u00e4t Leipzig.<\/p>\n<p>Die Studie untersuchte das Wachstum von 223 Baumarten, die in 160 W\u00e4ldern auf der ganzen Welt gepflanzt wurden, darunter L\u00e4nder wie Brasilien, Kamerun, \u00c4thiopien, Deutschland und die Vereinigten Staaten. Alle wichtigen Waldbiome \u2013 gro\u00dfe Gemeinschaften von Pflanzen und Tieren die durch Klima und Region definiert sind \u2013 waren vertreten: Savannen, gem\u00e4\u00dfigte W\u00e4lder, tropische W\u00e4lder, boreale W\u00e4lder, Graslandschaften und das mediterrane Biom.<\/p>\n<h2>Konservative Baumarten \u00fcbertreffen akquisitive Arten unter realen Bedingungen<\/h2>\n<p>Fr\u00fchere Untersuchungen unter kontrollierten Bedingungen, wie z.B. in Gew\u00e4chsh\u00e4usern, hatten gezeigt, dass Arten, die in der Lage sind, Ressourcen wie Licht, Wasser und N\u00e4hrstoffe effizient aufzunehmen, im Allgemeinen schnell wachsen. Diese Baumarten, zu denen die Rotbuche <em>(Fagus sylvatica)<\/em>, die Esche <em>(Fraxinus excelsior)<\/em>, die Traubeneiche <em>(Quercus petraea<\/em>), und die Vogelbeere <em>(Sorbus aucuparia)<\/em> geh\u00f6ren, k\u00f6nnen die vorhandenen Ressourcen maximal nutzen. Das verdanken sie Eigenschaften wie einer spezifischen Blattfl\u00e4che, die vorteilhaft f\u00fcr die Aufnahme von Sonnenlicht und CO2 ist, sowie eine spezifische Wurzell\u00e4nge, die beispielsweise die Aufnahme von Bodenwasser und N\u00e4hrstoffen verbessert. Dank dieser Eigenschaften k\u00f6nnen die genannten Baumarten Biomasse besonders gut umwandeln.<\/p>\n<p>Andererseits wurde angenommen, dass Baumarten, die ihre vorhandenen Ressourcen eher konservieren, und weniger externe Resourcen aufnehmen, sogenannte konservative Arten, langsamer wachsen. Beispiele f\u00fcr solche Baumarten sind Nadelb\u00e4ume wie z.B. die L\u00e4rche <em>(Larix decidua)<\/em> und die Fichte <em>(Picea abies)<\/em>, aber auch Laubb\u00e4ume wie z.B. die Erle <em>(Alnus glutinosa)<\/em> oder die Rosskastanie <em>(Aesculus hippocastanum)<\/em>.<\/p>\n<p>Die Forscherinnen und Forscher zeigten jedoch, dass diese konservativen Arten unter realen Bedingungen in borealen und gem\u00e4\u00dfigten W\u00e4ldern im Allgemeinen schneller wachsen als akquisitive Arten. Diese Erkenntnis kann damit erkl\u00e4rt werden, dass sich diese W\u00e4lder vorrangig in Gebieten mit ung\u00fcnstigen Wachstumsbedingungen befinden, die sich durch eine geringe Bodenfruchtbarkeit und kalte oder trockene Klimata auszeichnen.<\/p>\n<p>Dies gibt konservativen Arten einen Vorteil, da sie besser mit Stress und begrenzten Ressourcen umgehen k\u00f6nnen. In tropischen Regenw\u00e4ldern, wo das Klima potenziell g\u00fcnstiger f\u00fcr das Pflanzenwachstum ist, zeigen beide Baumarten im Durchschnitt keine Unterschiede.<\/p>\n<h2>Lokales Klima und Boden: Schl\u00fcsselfaktoren f\u00fcr die Auswahl der Baumarten<\/h2>\n<p>Neben diesen allgemeinen Trends beleuchten die Forscherinnen und Forscher auch den Einfluss lokaler Bedingungen.<\/p>\n<p>Demzufolge sei es entscheidend, sicherzustellen, dass die Arten an ihre lokale Umgebung angepasst sind. In g\u00fcnstigen Klimaten und fruchtbaren B\u00f6den k\u00f6nnten akquisitive Arten schneller wachsen und daher mehr Kohlenstoff binden als konservative Arten. In ung\u00fcnstigen Klimaten und armen B\u00f6den hingegen haben konservative Arten das gr\u00f6\u00dfte Potenzial, Kohlenstoff in der Biomasse zu speichern.<\/p>\n<p>\u201eWenn immer bevorzugt schnellwachsende B\u00e4ume gepflanzt werden, ist es wahrscheinlich, dass der Lebensraum f\u00fcr diese Arten suboptimal ist und das Ziel &#8211; schnelles Wachstum und hohe Kohlenstoffbindung &#8211; nicht erreicht wird\u201c, sagt iDiv-Mitglied Dr. Harald Auge, Mitautor und Forschungsgruppenleiter am UFZ.<\/p>\n<p>Er f\u00fcgt hinzu: \u201eRessourcennutzung und die Wachstumsstrategie sollten jedoch nur ein Kriterium f\u00fcr die Auswahl geeigneter Baumarten sein. Die Anpassungsf\u00e4higkeit an den Klimawandel, die Herkunft der Baumarten und auch ihre Vielfalt sind weitere Auswahlkriterien.&#8220;<\/p>\n<p>Die neue Studie bietet ein weiteres Werkzeug, wie der Klimawandel auch mithilfe eines sinnvollen Forstmanagements bek\u00e4mpft werden kann.<\/p>\n<p>&nbsp;<\/p>\n<h3>Original-publikation<\/h3>\n<p>(Wissenschaftlerinnen und Wissenschaftler mit iDiv-Affiliation fett gedruckt)<\/p>\n<p>Augusto, L., Borelle, R., Bo\u010da, A., Bon, L., Orazio, C., Arias-Gonz\u00e1lez, A., Bakker, M.R., Gartzia-Bengoetxea, N.,<strong> Auge, H.<\/strong>, Bernier, F., Cantero, A., Cavender-Bares, J., Correia, A.H., De Schrijver, A., Diez-Casero, J.J., <strong>Eisenhauer, N.<\/strong>, Fotelli, M.N., G\u00e2tebl\u00e9, G., Godbold, D.L., Gomes-Caetano-Ferreira, M., Gundale, M.J., Jactel, H., Koricheva, J., Larsson, M., Laudicina, V.A., Legout, A., Mart\u00edn-Garc\u00eda, J., Mason, W.L., Meredieu, C., Mereu, S., Montgomery, R.A., Musch, B., Muys, B., Paillassa, E., Paquette, A., Parker, J.D., Parker, W.C., Ponette, Q., Reynolds, C., Rozados-Lorenzo, M.J., Ruiz-Peinado, R., Santesteban-Insausti, X., Scherer-Lorenzen, M., Silva-Pando, F.J., Smolander, A., Spyroglou, G., Teixeira-Barcelos, E.B., Vanguelova, E.I., Verheyen, K., Vesterdal, L., Charru, M. (2025) Widespread slow growth of acquisitive tree species, <em>Nature.<\/em> DOI: <a href=\"https:\/\/www.nature.com\/articles\/s41586-025-08692-x\" target=\"_blank\" aria-label=\"open in new tab\" rel=\"noopener\">10.1038\/s41586-025-08692-x<\/a><\/p>\n<p>&nbsp;<\/p>\n<h3>Ansprechpartner<\/h3>\n<p><strong>Dr. Harald Auge<\/strong><br \/>\nLeiter der Forschungsgruppe Experimentelle \u00d6kologie von Populationen und Artengemeinschaften<br \/>\nHelmholtz-Zentrum f\u00fcr Umweltforschung &#8211; UFZ<br \/>\nDeutsches Zentrum f\u00fcr integrative Biodiversit\u00e4tsforschung (iDiv) Halle-Jena-Leipzig<br \/>\nTelefon: +49 341 6025 4309<br \/>\nEmail: &#x68;&#97;r&#x61;&#x6c;&#100;&#46;&#x61;&#117;g&#x65;&#x40;&#117;f&#x7a;&#46;d&#x65;<\/p>\n<p><strong>Prof. Dr. Nico Eisenhauer<\/strong><br \/>\nLeiter der Forschungsgruppe Experimentelle Interaktions\u00f6kologie<br \/>\nDeutsches Zentrum f\u00fcr integrative Biodiversit\u00e4tsforschung (iDiv) Halle-Jena-Leipzig<br \/>\nUniversit\u00e4t Leipzig<br \/>\nTelefon: +49 341 97 33167<br \/>\nEmail: n&#105;&#99;&#x6f;&#x2e;&#x65;is&#101;&#110;&#x68;&#x61;&#x75;e&#114;&#64;&#105;&#x64;&#x69;&#x76;&#46;&#100;&#101;<\/p>\n<p><strong>Christine Coester<\/strong><br \/>\nMedien und Kommunikation<br \/>\nDeutsches Zentrum f\u00fcr integrative Biodiversit\u00e4tsforschung (iDiv) Halle-Jena-Leipzig<br \/>\nPhone: +49 341 97 33197<br \/>\nEmail: &#x63;&#104;&#x72;&#x69;&#115;&#x74;&#105;n&#x65;&#46;c&#x6f;&#101;s&#x74;&#101;r&#x40;&#105;&#x64;&#x69;&#118;&#x2e;&#x64;&#101;<\/p>\n<\/div>\n                            <\/div>\n                        <\/div>\n    <\/div>\n<\/div>\n\n<div class=\"textbildrepeater pb-24 pt-0 no-bg modulclass \" id=\"\">\n    <div class=\"container\">\n        <div class=\"row\">\n                                                                <div class=\"pb-0   mod_bild  col-md-4 offset-md-2 pos_top\">\n                            <div class=\"bildrepeater \" id=\"\">\n    <div class=\"relativ\"><img decoding=\"async\" class=\"responsiv desktop\" src=\"https:\/\/www.idiv.de\/wp-content\/uploads\/2025\/03\/Common_alder_Alnus-glutinosa_WCarter-scaled.jpg\" height=\"\" width=\"\" alt=\"idiv-A tree trunk with a small branch and a cluster of green leaves emerging from it, against a blurred green background.\"\/><img decoding=\"async\" class=\"responsiv mobile\" src=\"https:\/\/www.idiv.de\/wp-content\/uploads\/2025\/03\/Common_alder_Alnus-glutinosa_WCarter-scaled.jpg\" height=\"\" width=\"\" alt=\"idiv-A tree trunk with a small branch and a cluster of green leaves emerging from it, against a blurred green background.\"\/><a href=\"#\" class=\"cr\" role=\"button\">\n<svg  xmlns=\"http:\/\/www.w3.org\/2000\/svg\" width=\"22\" height=\"22\" viewBox=\"0 0 22 22\">\n    <rect id=\"BG\" width=\"22\" height=\"22\" rx=\"11\" fill=\"#fff\"\/>\n    <g id=\"Wrapper\" transform=\"translate(-1 -1)\">\n        <g id=\"Icon_material-copyright\" data-name=\"Icon material-copyright\">\n            <circle id=\"Ellipse_30\" data-name=\"Ellipse 30\" cx=\"8\" cy=\"8\" r=\"8\" transform=\"translate(4 4)\" fill=\"#fff\"\/>\n            <path id=\"Icon_material-copyright-2\" data-name=\"Icon material-copyright\" d=\"M9.464,10.088a2.045,2.045,0,0,1,.24-.7,1.4,1.4,0,0,1,.472-.5,1.42,1.42,0,0,1,.728-.184,1.45,1.45,0,0,1,.5.1,1.29,1.29,0,0,1,.416.288,1.54,1.54,0,0,1,.272.424,1.4,1.4,0,0,1,.112.512H13.64a2.864,2.864,0,0,0-.224-1.032,2.4,2.4,0,0,0-.56-.808,2.613,2.613,0,0,0-.864-.528,3.09,3.09,0,0,0-1.112-.184,3.127,3.127,0,0,0-1.36.272,2.751,2.751,0,0,0-.96.736,3.007,3.007,0,0,0-.568,1.088A4.685,4.685,0,0,0,7.8,10.9v.216a4.684,4.684,0,0,0,.184,1.312,2.908,2.908,0,0,0,.568,1.08,2.731,2.731,0,0,0,.96.728,3.246,3.246,0,0,0,1.36.272,3.051,3.051,0,0,0,1.056-.184,2.729,2.729,0,0,0,.864-.5,2.442,2.442,0,0,0,.592-.752,2.153,2.153,0,0,0,.24-.92H12.192a1.139,1.139,0,0,1-.12.464,1.177,1.177,0,0,1-.288.368,1.26,1.26,0,0,1-.416.24,1.589,1.589,0,0,1-.48.08,1.359,1.359,0,0,1-.712-.184,1.4,1.4,0,0,1-.472-.5,2.09,2.09,0,0,1-.24-.7,5.392,5.392,0,0,1-.064-.8V10.9a5.33,5.33,0,0,1,.064-.808ZM11,3a8,8,0,1,0,8,8A8,8,0,0,0,11,3Zm0,14.4A6.4,6.4,0,1,1,17.4,11,6.408,6.408,0,0,1,11,17.4Z\" transform=\"translate(1 1)\" fill=\"#4d4d4d\"\/>\n        <\/g>\n    <\/g>\n<\/svg>\n<span>Wikimedia \/ W. Carter<\/span><\/a><\/div><p class=\"bu\">Die Erle (Alnus glutinosa) ist ein Beispiel f\u00fcr eine Baumart, die ihre Ressourcen effizienter konserviert, und daher als sogenannte konservative Art gilt.<\/p><\/div>\n                            <\/div>\n                                                                    <div class=\"pb-24   mod_link  col-md-12 offset-md-2 pos_tleft\">\n                            <div class=\"btncf-block  tleft\" id=\"\">\n            <a href=\"https:\/\/www.idiv.de\/wp-content\/uploads\/2025\/03\/Common_alder_Alnus-glutinosa_WCarter-scaled.jpg\"\n           class=\"mr-24 btncf normal\"\n           target=\"_blank\">Bild herunterladen                            <svg xmlns=\"http:\/\/www.w3.org\/2000\/svg\" width=\"7.621\" height=\"12.243\" aria-hidden=\"true\"\n                     viewBox=\"0 0 7.621 12.243\">\n                    <path id=\"Icon_feather-chevron-right\" data-name=\"Icon feather-chevron-right\"\n                          d=\"M17.5,17l-4-4,4-4\" transform=\"translate(19.621 19.121) rotate(180)\" fill=\"none\"\n                          stroke=\"#447226\" stroke-linecap=\"round\" stroke-linejoin=\"round\" stroke-width=\"3\"\/>\n                <\/svg>\n                    <\/a>\n    <\/div>                            <\/div>\n                                                                    <div class=\"pb-24   mod_text  col-md-8 offset-md-2 pos_top\">\n                            <div class=\"textrepeater \" id=\"\">\n    <p><em>Hinweis f\u00fcr die Medien: Die von iDiv bereitgestellten Bilder d\u00fcrfen ausschlie\u00dflich f\u00fcr die Berichterstattung im Zusammenhang mit dieser Medienmitteilung und unter Angabe des\/der Urhebers\/in verwendet werden.<\/em><\/p>\n<\/div>\n                            <\/div>\n                        <\/div>\n    <\/div>\n<\/div>","protected":false},"excerpt":{"rendered":"","protected":false},"author":6,"featured_media":0,"comment_status":"closed","ping_status":"closed","sticky":false,"template":"","format":"standard","meta":{"_acf_changed":false,"advgb_blocks_editor_width":"","advgb_blocks_columns_visual_guide":"","footnotes":"","_links_to":"","_links_to_target":""},"categories":[35,37,29],"tags":[],"class_list":["post-26933","post","type-post","status-publish","format-standard","hentry","category-experimentelle-interaktionsoekologie","category-forschung","category-medienmitteilung"],"acf":{"thumb":26926,"thumbmobile":26926,"copyright":"Wikimedia \/ W. Carter","breadcrumb":true},"yoast_head":"<!-- This site is optimized with the Yoast SEO plugin v27.4 - https:\/\/yoast.com\/product\/yoast-seo-wordpress\/ -->\n<title>Ressourceneffiziente Baumarten wachsen schneller unter realen Bedingungen, laut neuer Studie<\/title>\n<meta name=\"description\" content=\"Published in Nature, the study\u2019s results broaden understanding of which trees have the greatest potential to mitigate CO2 emissions.\" \/>\n<meta name=\"robots\" content=\"index, follow, max-snippet:-1, max-image-preview:large, max-video-preview:-1\" \/>\n<link rel=\"canonical\" href=\"https:\/\/www.idiv.de\/de\/resource-efficient-tree-species-grow-faster-under-real-conditions-study-shows\/\" \/>\n<meta property=\"og:locale\" content=\"de_DE\" \/>\n<meta property=\"og:type\" content=\"article\" \/>\n<meta property=\"og:title\" content=\"Resource-efficient tree species grow faster under real conditions, study shows\" \/>\n<meta property=\"og:description\" content=\"Published in 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