马尾松对生材和压缩材形成的年际动态。在湿润的亚热带中国

IF 2.7 3区 农林科学 Q2 ECOLOGY
Chunsong Wang, Zhuangpeng Zheng, Feifei Zhou, Xinsheng Liu, Patrick Fonti, Jiani Gao, Keyan Fang
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引用次数: 0

摘要

树木的径向生长可以产生对生木(OW)和压缩木(CW),这是由于茎部机械应力的不同影响,如重力或风引起的应力。先前的研究发现,连续栽培的木质部产量高于普通栽培。然而,目前尚不清楚OW和CW之间木质部细胞数量的差异是由于木质部细胞生长速度的差异还是木质部细胞生长时间的差异。在这项研究中,我们从2019年3月到2020年1月每周收集马尾松(Pinus massoniana Lamb)的木材微核。位于陡坡上的我们的目的是比较湿润亚热带环境下OW和CW之间形成层活动的动态和由此产生的细胞解剖参数。结果表明,黄花和黄花的木质部物候基本一致,木质部细胞分裂过程从3月初开始,11月结束。最后一个迟木细胞在12月底完成分化。平流层和连续林下木材形成动态对气候的响应是一致的。此外,由于夏季的高温和干旱,两种木材类型都表现出有限的扩大阶段发展。木质部细胞数变异的90.7%是由细胞分裂率引起的。连续木质部通过增加细胞分裂速率获得了更多的细胞,呈现出比OW细胞更薄、管腔更大的早期木质部细胞。结果表明,针叶树的木质部通过加速细胞分裂速率来响应机械应力。因此,我们建议计算横波宽度与连续波宽度之比来重建风应力变化,而不是目前研究中使用的计算残差。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Intra-annual dynamic of opposite and compression wood formation of Pinus massoniana Lamb. in humid subtropical China
Radial growth of trees can result in opposite wood (OW) and compression wood (CW) due to the varying impact of stem mechanical stress, such as that caused by gravity or wind. Previous research has identified higher xylem production in CW compared to OW. Yet, it remains unclear whether the difference in the number of xylem cells between OW and CW results from differences in growth rate or the duration of xylem cells. In this study, we collected wood microcores on a weekly basis from March 2019 to January 2020 in Pinus massoniana Lamb. located on a steep slope. Our objective was to compare the dynamic of cambial activity and resulting cellular anatomical parameters between OW and CW in a humid subtropical environment. Our results showed that the xylem phenology of OW and CW was generally consistent with the xylem cell division process beginning in early March and ceasing in November. The last latewood cell completed its differentiation at the end of December. The response of wood formation dynamics to climate was consistent in both OW and CW. Moreover, both wood types exhibited a limited development of the enlargement phase due to the heat and drought during the summer. The rate of cell division was responsible for 90.7% of the variability in the number of xylem cells. The CW xylem obtained a larger number of cells by increasing the rate of cell division and displayed thinner earlywood cells with larger lumens than OW cells. Our findings showed that the xylem of conifer species responds to mechanical stress by accelerating the cell division rate. As a result, we suggest calculating the ratio between OW and CW widths to reconstruct wind stress changes rather than calculating the residuals used in the current study.
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来源期刊
CiteScore
4.50
自引率
6.20%
发文量
256
审稿时长
12 weeks
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