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DOI10.1016/j.foreco.2020.118351
Variation in resin flow among Maritime pine populations: Relationship with growth potential and climatic responses
Zas R.; Touza R.; Sampedro L.; Lario F.J.; Bustingorri G.; Lema M.
发表日期2020
ISSN0378-1127
卷号474
英文摘要Pine trees produce large amounts of oleoresin to defend against biotic threats. Resin is highly costly to produce and investment in its production must be accurately optimized in relation to allocation to other life functions such growth. As a result of these costs, resin production is highly variable both genetically (among and within species) and plastically (across temporal and spatial environmental heterogeneity). The relative contribution of these sources of variation is, however, far from being completely understood. Besides being a main defensive mechanism, pine resin is also a valuable non-timber forest product that is regaining attention as a renewable resource for different industrial sectors. Improving our knowledge on the main drivers of resin production is vital to fine-tune resin-tapping management, especially in regions with little tradition in resin-tapping such are the Atlantic areas of the Iberian Peninsula. Here, we assessed resin flow and growth in a network of seven Maritime pine (Pinus pinaster) provenance tests established in North West Spain to explore the within species variation in resin flow, the plasticity of resin flow across sites and across the season and the (phenotypic and genotypic) relationships between resin flow and tree growth. Resin flow was assessed in three contrasting Maritime pine populations at three times within the season using a micro-tapping procedure that predicts well the resin yield potential for exploitation purposes. Results supported the theoretical predictions as resin flow significantly varied among populations, with populations from more favorable environmental conditions producing less resin than those from harsher conditions. Resin flow was positively correlated with tree size at the phenotypic level. However, the genetically-based relationship between growth potential and resin flow was markedly negative. Fast growing populations produced less resin than slow growing origins. Resin flow was also highly plastic across sites and across seasons, with resin flow consistently increasing towards the end of the growing season. Temperature and water deficit immediately before sampling emerged as main drivers of the observed variation in resin flow across sites and seasons. Results are valuable to understand the extremely large variation in defensive investment on resin-based defenses in conifer species, to model the potential of Atlantic Maritime pine forest for resin tapping, and to fine-tune the resin-tapping management of these forests. © 2020 Elsevier B.V.
英文关键词Growth-defense trade-off; Non-timber forest product; Pinus pinaster; Plasticity; Population differentiation; Resin tapping
语种英语
scopus关键词Forestry; Plants (botany); Population statistics; Defensive mechanism; Environmental conditions; Environmental heterogeneity; Non-timber forest products; Relative contribution; Renewable resource; Sources of variation; Temporal and spatial; Resins; climate effect; coniferous forest; exploitation; forest management; forest product; growth response; knowledge; nontimber forest product; renewable resource; resin; Flow; Forestry; Growth; Pinus Pinaster; Production; Sites; Tapping; Atlantic Ocean; Iberian Peninsula; Spain; Coniferophyta; Pinus pinaster
来源期刊Forest Ecology and Management
文献类型期刊论文
条目标识符http://gcip.llas.ac.cn/handle/2XKMVOVA/155102
作者单位Misión Biológica de Galicia. Consejo Superior de Investigaciones Científicas. Pontevedra, Apdo 28, Pontevedra, 36080, Spain; Extracción de Resina Touza. Lugar de Maúnzo, 25 Xeve, Pontevedra, 36150, Spain; Grupo Tragsa. Vivero de Maceda (Ourense), TRAGSA. Ctra. Maceda-Baldrei, Km. 2, Maceda, Ourense, 32700, Spain; Department of Functional Biology, Area of Ecology, Faculty of Biology, Universidade de Santiago de Compostela, Santiago de Compostela, Spain
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Zas R.,Touza R.,Sampedro L.,et al. Variation in resin flow among Maritime pine populations: Relationship with growth potential and climatic responses[J],2020,474.
APA Zas R.,Touza R.,Sampedro L.,Lario F.J.,Bustingorri G.,&Lema M..(2020).Variation in resin flow among Maritime pine populations: Relationship with growth potential and climatic responses.Forest Ecology and Management,474.
MLA Zas R.,et al."Variation in resin flow among Maritime pine populations: Relationship with growth potential and climatic responses".Forest Ecology and Management 474(2020).
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