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Seasonal natural pruning and branch growth dynamics in young Betula alnoides

Effects of planting density and crown layer

Bibliographic Data

ID19587265
AuthorsChunsheng Wang (0000-0002-8626-6381, Research Institute of Tropical Forestry), Sebastian Hein (0000-0002-4009-9282, Rottenburg University of Applied Forest Sciences), Kaili Liu (0000-0002-4167-8243, Research Institute of Tropical Forestry), Junjie Guo (0000-0002-7424-7327, Research Institute of Tropical Forestry), Huan Wang (0000-0003-3219-7226, Research Institute of Tropical Forestry), Jie Zeng (0000-0002-2714-6187, Research Institute of Tropical Forestry, corresponding author)
Year2026
Volume23
Pages101157
Publication date2026-01-01
Peer ReviewedYes
Open AccessYes
TypeARTICLE
VenueTrees Forests and People (JOURNAL)
Journal identifiersISSN: 2666-7193 • E-ISSN: 2666-7193
PublisherElsevier BV (PUBLISHER)
DOI10.1016/j.tfp.2026.101157
OpenAlexW7121591253
LanguageEN
References cited41

Natural pruning of Betula alnoides peaked in the season of leaf senescence and shedding and increased with planting density. • Branch emergence is independent of planting density. • Branch size increment is negatively correlated with planting density and crown layer depth. • Branch length growth is more sensitive to planting density than branch diameter growth. Branch development is critical for tree growth and timber quality, and has received considerable research attention in recent decades. Although competition strongly influences branch morphology, the seasonal dynamic response of branch development to planting density across different crown layers remains poorly understood. To address this, a two-year field study was conducted since April 2017 in a five-year-old spacing trial plantation of Betula alnoides in southern China, with planting densities ranging from 625 to 2,500 stems per hectare (sph). Over the study period, the size and status of 1,885 branches distributed across various crown layers (from 1-2 m to 5-6 m in height) were periodically monitored in situ on 54 dominant or co-dominant trees. Apical branch emergence was also recorded during each measurement. The rate of natural pruning in B. alnoides was positively correlated with planting density, with most abscission occurring during the leaf senescence and abscission season. While branch emergence appeared to be independent of planting density. Both branch diameter and length increments exhibited an obvious increasing trend as planting densities decreased, and this trend was more pronounced in the middle and upper crown layers. Branch elongation was much more sensitive to planting density than diameter growth. Furthermore, the growth dynamics of branch diameter and length were closely synchronized with tree phenology, exhibiting a notable increment during leaf expansion and maturation periods. These findings highlight the importance and effectiveness of using appropriately high planting densities to control branch development in the most valuable stem sections of B. alnoides , and provide practical guidance for silvicultural interventions aimed at promoting high-quality solid wood production for this species

Abscission · Canopy · Crown (dentistry) · Growing season · Hectare · Leaf area index · Pruning · Sowing · Sprouting · Forest ecology and management · Seedling growth and survival studies · Wood Treatment and Properties

Citation velocityhistorical
Highly citedNo

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