首页> 外文期刊>Dendrochronologia >A phenology-based approach to the analysis of conifers intra-annual xylem anatomy in water-limited environments
【24h】

A phenology-based approach to the analysis of conifers intra-annual xylem anatomy in water-limited environments

机译:一种基于酚类基于水有限环境中的针叶草的鉴生方法方法

获取原文
获取原文并翻译 | 示例
       

摘要

Xylem structure and cambial phenology (i.e. onset and cessation of cambial cell division) of conifers growing under severe water-limitations can change dramatically in relation to moisture availability. In hyperarid environments, analytical tools commonly used to investigate intra-annual variability of xylem anatomy (i.e. tracheidograms), may fail to capture the complexity of tree phenological responses to environmental conditions. This greatly limits our ability to accurately date the onset of intra-annual density variations, including the transition between earlywood and latewood. I present a new approach for developing phenological tracheidograms ("pheno-tracheidograms") calibrated to account for the seasonal variations in cell division rates. Phenotracheidograms were developed for a population of Pinus ponderosa in the Mojave Desert (Nevada, USA) during the period 2015-2016 in order 1) to determine the onset date of latewood formation and 2) to investigate relationships between environmental conditions, lumen diameter, and cell wall thickness targeting specific climatic windows for each tracheid. Pheno-tracheidograms were standardized at the tree-level, showing more flexibility compared to tracheidograms standardized according to a pre-determined number of cells. By displaying cellular parameters with respect to the date of formation of the tracheid to which each measurement is associated, pheno-tracheidograms allowed to determine the beginning of latewood formation with daily resolution. Lumen diameter was significantly correlated with the onset date of cellular enlargement, while cell wall thickness showed a weaker relationship with the beginning of secondary wall deposition. Soil moisture positively affected the duration of cell enlargement and tracheid lumen diameter, particularly in the earlywood, while cell wall thickness was not significantly influenced by environmental conditions. Pheno-tracheidograms represent an empirical, yet effective way to date intra-annual xylem structures and to investigate high-resolution climate-anatomy relationships in conifer species from arid environments characterized by high phenological plasticity.
机译:在严重水限制下生长的针叶树的针叶树的Xylem结构和爪候(即爪细胞分裂的停止)可以急剧变化与水分的可用性。在过度环境中,常用的分析工具用于研究木质解剖学(即Trouchidocks)的年度年度变异性,可能无法捕捉到环境条件的树木鉴别反应的复杂性。这极大地限制了我们准确地日期年度密度变化的发作的能力,包括早期和胶水之间的过渡。我提出了一种新的开发酚类学术图(“苯足总形图”)校准的方法,以考虑细胞分裂率的季节性变化。 2015 - 2016年期间莫哈韦沙漠(内华达州)的Pinus Ponderosa群体开发了现象,以确定胶水形成的发病日期和2)调查环境条件,腔直径和的关系用于每个Trachid的细胞壁厚度瞄准特定气候窗。与根据预定数量的细胞标准化的学生标准相比,酚类 - 嗜疟戏标准化,显示出更多的灵活性。通过在每个测量相关的植入物的形成日期显示蜂窝参数,允许诸如日常分辨率确定胶水形成的开始。腔直径与细胞扩大的发作日期显着相关,而细胞壁厚度与二次壁沉积的开始显示较弱的关系。土壤水分积极影响细胞增大和躯干腔直径的持续时间,特别是在早期的伍德中,而细胞壁厚度不会受到环境条件的显着影响。苯 - 库管贴图代表了日期,迄今为止鉴定年度鉴定性的鉴定性鉴定结构的经验,但有效的方法。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号