Degree of shade tolerance shapes seasonality of chlorophyll, nitrogen and phosphorus levels of trees and herbs in a temperate deciduous forest

IF 3.4 2区 农林科学 Q1 FORESTRY
Jiajia Zeng, Fan Liu, Yuan Zhu, Jiayi Li, Ying Ruan, Xiankui Quan, Chuankuan Wang, Xingchang Wang
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Abstract

Forest productivity is closely linked to seasonal variations and vertical differentiation in leaf traits. However, leaf structural and chemical traits variation among co-existing species, and plant functional types within the canopy are poorly quantified. In this study, the seasonality of leaf chlorophyll, nitrogen (N), and phosphorus (P) were quantified vertically along the canopy of four major tree species and two types of herbs in a temperate deciduous forest. The role of shade tolerance in shaping the seasonal variation and vertical differentiation was examined. During the entire season, chlorophyll content showed a distinct asymmetric unimodal pattern for all species, with greater chlorophyll levels in autumn than in spring, and the timing of peak chlorophyll per leaf area gradually decreased as shade tolerance increased. Chlorophyll a:b ratios gradually decreased with increasing shade tolerance. Leaf N and P contents sharply declined during leaf expansion, remained steady in the mature stage and decreased again during leaf senescence. Over the seasons, the lower canopy layer had significantly higher chlorophyll per leaf mass but not chlorophyll per leaf area than the upper canopy layer regardless of degree of shade tolerance. However, N and P per leaf area of intermediate shade-tolerant and fully shade-tolerant tree species were significantly higher in the upper canopy than in the lower. Seasonal variations in N:P ratios suggest changes in N or P limitation. These findings indicate that shade tolerance is a key feature shaping inter-specific differences in leaf chlorophyll, N, and P contents as well as their seasonality in temperate deciduous forests, which have significant implications for modeling leaf photosynthesis and ecosystem production.

Abstract Image

耐阴程度影响温带落叶林树木和草本植物叶绿素、氮和磷水平的季节性
森林生产力与叶片性状的季节变化和垂直分化密切相关。然而,树冠层内共存物种和植物功能类型之间的叶片结构和化学性质差异却很少被量化。本研究对温带落叶林中四种主要树种和两种草本植物的叶片叶绿素、氮(N)和磷(P)的季节性进行了垂直量化。研究考察了耐阴性在形成季节变化和垂直分化方面的作用。在整个季节中,所有树种的叶绿素含量都呈现出明显的非对称单峰模式,秋季叶绿素含量高于春季,随着耐荫性的增加,单位叶面积叶绿素含量达到峰值的时间逐渐缩短。叶绿素 a:b 比率随着耐荫性的增加而逐渐降低。叶片 N 和 P 含量在展叶期急剧下降,在成熟期保持稳定,在叶片衰老期再次下降。在各季中,无论耐阴程度如何,冠层下部的单位叶片质量叶绿素显著高于冠层上部,但单位叶面积叶绿素却不高。然而,中等耐阴和完全耐阴树种的单位叶面积氮和磷在树冠上层明显高于树冠下层。氮磷比的季节性变化表明氮或磷的限制发生了变化。这些研究结果表明,耐荫性是温带落叶林叶片叶绿素、氮和磷含量及其季节性差异的一个关键特征,对叶片光合作用和生态系统生产建模具有重要意义。
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来源期刊
CiteScore
7.30
自引率
3.30%
发文量
2538
期刊介绍: The Journal of Forestry Research (JFR), founded in 1990, is a peer-reviewed quarterly journal in English. JFR has rapidly emerged as an international journal published by Northeast Forestry University and Ecological Society of China in collaboration with Springer Verlag. The journal publishes scientific articles related to forestry for a broad range of international scientists, forest managers and practitioners.The scope of the journal covers the following five thematic categories and 20 subjects: Basic Science of Forestry, Forest biometrics, Forest soils, Forest hydrology, Tree physiology, Forest biomass, carbon, and bioenergy, Forest biotechnology and molecular biology, Forest Ecology, Forest ecology, Forest ecological services, Restoration ecology, Forest adaptation to climate change, Wildlife ecology and management, Silviculture and Forest Management, Forest genetics and tree breeding, Silviculture, Forest RS, GIS, and modeling, Forest management, Forest Protection, Forest entomology and pathology, Forest fire, Forest resources conservation, Forest health monitoring and assessment, Wood Science and Technology, Wood Science and Technology.
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