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author Bebre, Ieva
Riebl, Hannes
Annighöfer, Peter
author_facet Bebre, Ieva
Riebl, Hannes
Annighöfer, Peter
collection Datos científicos de ciencias marinas y ambientales
contents Light is an exceptionally important but often limited resource. Light availability determines seedling survival, establishment, and growth. Regardless of species identity, trees growing under high light availability produce more biomass and are generally larger than trees receiving less light. How stressed trees become under the conditions of limited light availability depends on species-specific factors like shade tolerance and plasticity as well as the competitive situation. Additionally, the taller individuals have the advantage to obtain more light since competition for the resource is asymmetric. In competitive environments, the niche complementarity of the coexisting species can reduce the competitive pressure and facilitate higher biomass production (i.e., positive mixing effect). We established a controlled pot experiment to study the effect of light availability and competition type on growth and its allocation, biomass production and allocation, and leaf morphology of European beech (Fagus sylvatica L.), Norway spruce (Picea abies L. Karst), and Douglas fir (Pseudotsuga menziesii Mirb. Franco) seedlings. The study site was located at the Experimental Botanical Garden of the University of Göttingen (51.55684392372871, 9.953489533796636). We planted four seedlings per pot, each pot being either monospecific or mixed (two seedlings per species) and exposed to one of three different light availability levels (10%, 20%, and 50%). We planted in a total of 576 pots – 6 species combinations (monocultures + mixtures) x 3 light treatment levels x 32 replicates. For planting, we used 1-year-old European beech and 2-year-old Norway spruce and Douglas fir seedlings that were not undercut or transplanted. The experiment lasted from April 2018 – November 2019. All seedlings received the same water treatment through an automatic dripping irrigation system. Nutrients were provided using a controlled release fertilizer (Osmocote Exact Hi.End with 12-14 month longevity (ICL SF)).
format Dataset Open Access
id pangaea_https___doi_org_10_1594_PANGAEA_933150
institution PANGAEA
language en
publishDate 2021
publisher PANGAEA
record_format pangaea
spellingShingle Height, diameter, biomass, leaf area, and relative height volume growth of European beech, Norway spruce, and Douglas fir grown in monospecific and mixed pots under different light availability levels
Bebre, Ieva
Riebl, Hannes
Annighöfer, Peter
Block; Branches, dry mass; Canon CanoScan LiDE 300 scanner; WinFolia 2004a software (Régent Instruments Inc., Quebec, Canada); Competition; Diameter; Digital caliper (RS PRO 150mm Digital Caliper, accuracy ± 0.03 mm); Douglas-fir; Enrichment of European beech forests with conifers; European beech; Folding ruler [Accuracy: ±1.00 mm]; Göttingen, Lower Saxony, Germany; growth allocation; Height; Laboratory scale Sartorius LC1200S, accuracy ± 0.003 g (Sartorius AG, Göttingen, Germany); Leaf, dry mass; Leaf area; Light; Light intensity; mixing effect; Norway spruce; Number; OBSE; Observation; pot experiment; Pots_Uni_Goe; Quantum Irradiance Meter, LI-COR Inc.; Relative height volume growth, R; Roots, dry mass; RTG2300; See description in dataset comment; seedling; shade tolerance; Species; Stem, dry mass
Light is an exceptionally important but often limited resource. Light availability determines seedling survival, establishment, and growth. Regardless of species identity, trees growing under high light availability produce more biomass and are generally larger than trees receiving less light. How stressed trees become under the conditions of limited light availability depends on species-specific factors like shade tolerance and plasticity as well as the competitive situation. Additionally, the taller individuals have the advantage to obtain more light since competition for the resource is asymmetric. In competitive environments, the niche complementarity of the coexisting species can reduce the competitive pressure and facilitate higher biomass production (i.e., positive mixing effect). We established a controlled pot experiment to study the effect of light availability and competition type on growth and its allocation, biomass production and allocation, and leaf morphology of European beech (Fagus sylvatica L.), Norway spruce (Picea abies L. Karst), and Douglas fir (Pseudotsuga menziesii Mirb. Franco) seedlings. The study site was located at the Experimental Botanical Garden of the University of Göttingen (51.55684392372871, 9.953489533796636). We planted four seedlings per pot, each pot being either monospecific or mixed (two seedlings per species) and exposed to one of three different light availability levels (10%, 20%, and 50%). We planted in a total of 576 pots – 6 species combinations (monocultures + mixtures) x 3 light treatment levels x 32 replicates. For planting, we used 1-year-old European beech and 2-year-old Norway spruce and Douglas fir seedlings that were not undercut or transplanted. The experiment lasted from April 2018 – November 2019. All seedlings received the same water treatment through an automatic dripping irrigation system. Nutrients were provided using a controlled release fertilizer (Osmocote Exact Hi.End with 12-14 month longevity (ICL SF)).
title Height, diameter, biomass, leaf area, and relative height volume growth of European beech, Norway spruce, and Douglas fir grown in monospecific and mixed pots under different light availability levels
topic Block; Branches, dry mass; Canon CanoScan LiDE 300 scanner; WinFolia 2004a software (Régent Instruments Inc., Quebec, Canada); Competition; Diameter; Digital caliper (RS PRO 150mm Digital Caliper, accuracy ± 0.03 mm); Douglas-fir; Enrichment of European beech forests with conifers; European beech; Folding ruler [Accuracy: ±1.00 mm]; Göttingen, Lower Saxony, Germany; growth allocation; Height; Laboratory scale Sartorius LC1200S, accuracy ± 0.003 g (Sartorius AG, Göttingen, Germany); Leaf, dry mass; Leaf area; Light; Light intensity; mixing effect; Norway spruce; Number; OBSE; Observation; pot experiment; Pots_Uni_Goe; Quantum Irradiance Meter, LI-COR Inc.; Relative height volume growth, R; Roots, dry mass; RTG2300; See description in dataset comment; seedling; shade tolerance; Species; Stem, dry mass
url https://doi.org/10.1594/PANGAEA.933150