首页> 美国卫生研究院文献>Annals of Botany >The Leaf Size–Twig Size Spectrum of Temperate Woody Species Along an Altitudinal Gradient: An Invariant Allometric Scaling Relationship
【2h】

The Leaf Size–Twig Size Spectrum of Temperate Woody Species Along an Altitudinal Gradient: An Invariant Allometric Scaling Relationship

机译:温带木本植物的叶大小-小枝大小谱沿海拔梯度变化:不变的异度尺度关系

代理获取
本网站仅为用户提供外文OA文献查询和代理获取服务,本网站没有原文。下单后我们将采用程序或人工为您竭诚获取高质量的原文,但由于OA文献来源多样且变更频繁,仍可能出现获取不到、文献不完整或与标题不符等情况,如果获取不到我们将提供退款服务。请知悉。

摘要

• Background and Aims The leaf size–twig size spectrum is one of the leading dimensions of plant ecological variation, and now it is under development. The purpose of this study was to test whether the relationship between leaf size and twig size is isometric or allometric, and to examine the relationship between plant allometric growth and life history strategies in the spectrum.• Methods Leaf and stem characters—including leaf and stem mass, total leaf area, individual leaf area, stem cross-sectional area, leaf number and stem length—at the twig level for 59 woody species were investigated along an altitudinal gradient on Changbaishan Mountain in the temperate zone of China. The environmental gradient ranges from temperate broad-leaved mixed forest at low altitude, to conifer forest at middle altitude, and to sub-alpine birch forest at high altitude. The scaling relationships between stem cross-sectional area and stem mass, stem mass and leaf mass, and leaf mass and leaf area at the twig level were simultaneously determined.• Key Results Twig cross-sectional area was found to have invariant allometric scaling relationships with the stem mass, leaf mass, total leaf area and individual leaf area, all with common slopes being significantly larger than 1, for three altitudinal-zoned vegetation types under investigation. However, leaf mass was found to be isometrically related to stem mass and leaf area along the environmental gradient. Based on the predictions of previous models, the exponent value of the relationship between twig cross-sectional area and total leaf area can be inferred to be 1·5, which falls between the confidence intervals of the relationship at each altitude, and between the confidence intervals of the common slope value (1·17–1·56) of this study. This invariant scaling relationship is assumed to result from the fractural network and/or developmental constraints of plants. The allometric constants (y-intercepts) of the relationships between the stem cross-sectional area and leaf area (both total leaf area and individual leaf area) were found to decrease significantly along the altitudinal gradient. This suggests that the species would support less leaf area at a given twig cross-sectional area with increasing environmental stress.• Conclusions This study demonstrated that plants respond to the environmental gradient by changing the y-intercepts of the relationship between leaf size–twig size, while keeping the exponent value of the allometric relationship as an invariant constant. The allometric growth in the twig size–leaf size spectrum is related to many other components of plant life history strategy, including the well established life history trade-off between efficiency and safety in the hydraulic transport of water.
机译:•背景和目的叶尺寸-树枝尺寸图是植物生态变异的主要尺度之一,目前正在开发中。这项研究的目的是检验叶片大小与嫩枝大小之间的关系是等轴测图还是异速轴测图,并检验光谱中植物异体生长和生活史策略之间的关系。•方法叶片和茎的性状,包括叶片和茎在中国温带地区长白山沿海拔梯度调查了59种木本植物在小枝水平上的质量,总叶面积,单叶面积,茎横断面积,叶数和茎长。环境梯度的范围从低海拔的温带阔叶混交林,中海拔的针叶林到高海拔的亚高山桦木林。同时确定了茎横截面积与茎质量,茎质量与叶质量以及嫩枝水平上的叶子质量与叶面积之间的比例关系。•关键结果发现,嫩枝横截面积具有不变的异速伸缩比例关系。在研究的三个垂直区域植被类型中,茎质量,叶质量,总叶面积和单个叶面积的共同斜率均明显大于1。但是,发现叶的质量与沿环境梯度的茎的质量和叶的面积等距相关。根据先前模型的预测,可以推断出枝条横截面积与总叶面积之间的关系的指数值为1·5,介于每个海拔高度的关系的置信区间之间和本研究的共同斜率值的区间(1·17-1·56)。假定这种不变的比例关系是由植物的分形网络和/或发育限制引起的。发现茎横断面积与叶面积(总叶面积和单叶面积)之间的关系的异形常数(y截距)沿高度梯度显着降低。这表明该物种在给定的枝条横截面上将支持较少的叶面积,并伴随环境压力的增加。•结论这项研究表明,植物通过改变叶片大小与枝条大小之间的关系的y截距来响应环境梯度。 ,同时保持异形关系的指数值不变。树枝大小-叶片大小频谱的异速增长与植物生命历史策略的许多其他组成部分有关,包括在水力输送中效率与安全性之间建立的良好的生命历史权衡。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
代理获取

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