Precipitation and Temperature Influence the Relationship between Stand Structural Characteristics and Aboveground Biomass of Forests—A Meta-Analysis

IF 2.4 2区 农林科学 Q1 FORESTRY
Forests Pub Date : 2023-04-27 DOI:10.3390/f14050896
Yingdong Ma, A. Eziz, Ü. Halik, Abdulla Abliz, A. Kurban
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引用次数: 0

Abstract

Forest aboveground biomass (AGB) is not simply affected by a single factor or a few factors, but also by the interaction between them in complex ways across multiple spatial scales. Understanding the joint effect of stand structural characteristics and climate factors on AGB on large scales is critical for accurate forest carbon storage prediction and sustainable management. Despite numerous attempts to clarify the relationships between stand structural characteristics (tree density/TD, diameter at breast height/DBH, basal area/BA), climate factors (mean annual temperature/MAT, mean annual precipitation/MAP), and AGB, they remain contentious on a large scale. Therefore, we explored the relationships between stand structural characteristics, climate factors, and AGB at a biome level by meta-analyzing datasets contained in 40 articles from 25 countries, and then answered the questions of how stand structural characteristics influence AGB at the biome level and whether the relationships are regulated by climate on a large scale. Through using regression analysis and the establishment of a structural equation model, the results showed that the influence of basal area on AGB at the biome level was more substantial than that of tree density and DBH, and the significant relationship between basal area and AGB was relatively stable regardless of biome variation, but the effects of tree density and DBH was non-negligible within the biome. Climatic factors (e.g., temperature and precipitation), should be considered. Our meta-analysis illustrated the complicated interactions between climate factors, stand structural characteristics, and the AGB of forests, highlighting the importance of climate effects on regulating stand structural characteristics and AGB relationships. We suggest that basal area be preferred and considered in forest sustainable management practice to optimize stand structure for increasing carbon storage potential, with close attention to local climate conditions. Overall, our meta-analysis will crucially aid forest management and conservation in the context of global environmental changes, and provide novel insights and a scientific reference to lead to future carbon storage research on large scales.
降水和温度对林分结构特征与地上生物量关系的影响——Meta分析
森林地上生物量(AGB)不仅受单一或少数因素的影响,还受它们之间在多个空间尺度上的复杂相互作用的影响。在大尺度上了解林分结构特征和气候因子对森林碳储量的共同影响对准确预测森林碳储量和可持续经营具有重要意义。尽管许多研究试图阐明林分结构特征(树密度/TD、胸径/DBH、基底面积/BA)、气候因子(年平均温度/MAT、年平均降水/MAP)与林分生长强度(AGB)之间的关系,但它们在大尺度上仍存在争议。因此,本文通过对来自25个国家的40篇文献的meta分析,探讨了林分结构特征、气候因子与生物群系水平AGB之间的关系,进而回答了林分结构特征如何影响生物群系水平的AGB以及这种关系是否在大尺度上受到气候的调节。通过回归分析和结构方程模型的建立,结果表明,在生物群系水平上,基片面积对AGB的影响比乔木密度和胸径的影响更为显著,且无论生物群系变化如何,基片面积与AGB之间的显著关系相对稳定,但在生物群系内部,乔木密度和胸径的影响不可忽略。应考虑气候因素(如温度和降水)。我们的meta分析揭示了气候因子、林分结构特征和森林AGB之间复杂的相互作用,强调了气候效应在调节林分结构特征和AGB关系中的重要性。我们建议在森林可持续经营实践中,在密切关注当地气候条件的情况下,优先考虑和考虑基底区,以优化林分结构,提高碳储量潜力。总之,我们的荟萃分析将对全球环境变化背景下的森林管理和保护提供重要的帮助,并为未来大规模的碳储存研究提供新的见解和科学参考。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Forests
Forests FORESTRY-
CiteScore
4.40
自引率
17.20%
发文量
1823
审稿时长
19.02 days
期刊介绍: Forests (ISSN 1999-4907) is an international and cross-disciplinary scholarly journal of forestry and forest ecology. It publishes research papers, short communications and review papers. There is no restriction on the length of the papers. Our aim is to encourage scientists to publish their experimental and theoretical research in as much detail as possible. Full experimental and/or methodical details must be provided for research articles.
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