[Research progress on cambium activity and radial growth dynamics monitoring of coniferous species].

Q3 Environmental Science 应用生态学报 Pub Date : 2024-05-01 DOI:10.13287/j.1001-9332.202405.007
Yue-Tong Wang, Jun-Zhou Zhang, Jun-Jun Liu, Li-Juan Wang, Yu-Lin Li
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Abstract

The radial growth of trees plays a crucial role in determining forest carbon sequestration capacity. Understanding the growth dynamics of trees and their response to environmental factors is essential for predicting forest's carbon sink potential under future climate change. Coniferous forest trees are particularly sensitive to climate change, with growth dynamics responding rapidly to environmental shifts. We collected and analyzed data from 99 papers published between 1975 and 2023, and examined the effects of exogenous factors (such as temperature, water, and photoperiod) and endogenous factors (including tree age and species) on cambial activity and radial growth in conifers. We further explored the mechanisms underlying these effects. The results showed that climate warming had the potential to advance the onset while delayed the end of xylem differentiation stages in conifers in temperate and boreal regions. Water availability played a crucial role in regulating the timing of cambial phenology and wood formation by influencing water potential and cell turgor. Additionally, the photoperiod not only participated in regulating the start and end times of growth, but also influenced the timing of maximum growth rate occurrence. Future climate warming was expected to extend the growing season, leading to increase in growth of conifers in boreal regions and expanding forests to higher altitudes or latitudes. However, changes in precipitation patterns and increased evapotranspiration resulting from temperature increases might advance the end of growing season and reduce growth rate in arid areas. To gain a more comprehensive understanding of the relationship between radial growth and climatic factors, it is necessary to develop process-based models to elucidate the physiological mechanisms underlying wood formation and the response of trees to climatic factors.

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[针叶树种的韧皮部活动和径向生长动态监测研究进展]。
树木的径向生长在决定森林固碳能力方面起着至关重要的作用。了解树木的生长动态及其对环境因素的反应对于预测未来气候变化下森林的碳汇潜力至关重要。针叶林树木对气候变化尤为敏感,其生长动态对环境变化反应迅速。我们收集并分析了1975年至2023年间发表的99篇论文的数据,研究了外源因素(如温度、水和光周期)和内源因素(包括树龄和树种)对针叶树的韧皮部活动和径向生长的影响。我们进一步探讨了这些影响的机制。结果表明,气候变暖有可能使温带和寒带地区针叶树木质部分化阶段的开始时间提前,而结束时间推迟。水分供应通过影响水势和细胞张力,在调节木质部物候期和木质部形成的时间上起着至关重要的作用。此外,光周期不仅参与调节生长的开始和结束时间,还影响最大生长率出现的时间。未来气候变暖预计会延长生长期,从而导致北方地区针叶树的生长速度加快,并将森林扩展到更高的海拔或纬度。然而,气温升高导致的降水模式变化和蒸散量增加可能会提前生长季的结束时间,降低干旱地区的生长率。为了更全面地了解径向生长与气候因素之间的关系,有必要开发基于过程的模型,以阐明木材形成的生理机制以及树木对气候因素的反应。
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来源期刊
应用生态学报
应用生态学报 Environmental Science-Ecology
CiteScore
2.50
自引率
0.00%
发文量
11393
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