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Wood structure explained by complex spatial source-sink interactions
DOI:10.1038/s41467-022-35451-7.png)
摘要
En 中文
Wood is a remarkable material with great cultural, economic, and biogeochemical importance. However, our understanding of its formation is poor. Key properties that have not been explained include the anatomy of growth rings (with consistent transitions from low-density earlywood to high density latewood), strong temperature-dependence of latewood density (used for historical temperature reconstructions), the regulation of cell size, and overall growth-temperature relationships in conifer and ring-porous tree species. We have developed a theoretical framework based on observations on Pinus sylvestris L. in northern Sweden. The observed anatomical properties emerge from our framework as a consequence of interactions in time and space between the production of new cells, the dynamics of developmental zone widths, and the distribution of carbohydrates across the developing wood. Here we find that the diffusion of carbohydrates is critical to determining final ring anatomy, potentially overturning current understanding of how wood formation responds to environmental variability and transforming our interpretation of tree rings as proxies of past climates.
Keyword:
PLANT-GROWTH
CELL-SIZE
DENSITY
MODEL
FORESTS
TEMPERATURE
DYNAMICS
PATTERNS
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期刊
IF:
15.7
论文数:
9.3W
被引数:
91.2W
机构
引用论文
Wood density and tracheid properties of Scots pine: responses to repeated fertilization and timing of the first commercial thinning苏格兰松树的木材密度和管胞特性: 对重复施肥的反应和首次商业间伐的时机
FORESTRY
IF3.2

