Concurrent response of tree growth and grain productivity to climate change: A case study from climatic transition zone in central China

•Tree ring is an ideal indicator of annual total grain production parameters.•Tree growth synchronized with grain production, and concurrent response to climate.•Reconstruction of total grain productivity based on dendrochronology.•To explore the relationship between total grain sown area and climat...

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Veröffentlicht in:Ecological indicators 2023-10, Vol.154, p.110608, Article 110608
Hauptverfasser: Peng, Jianfeng, Peng, Kunyu, Li, Jinbao, Peng, Meng, Liu, Yameng, Wei, Xiaoxu, Li, Jinkuan, Li, Xuan, Cui, Jiayue, Li, Jiaxin
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Sprache:eng
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Zusammenfassung:•Tree ring is an ideal indicator of annual total grain production parameters.•Tree growth synchronized with grain production, and concurrent response to climate.•Reconstruction of total grain productivity based on dendrochronology.•To explore the relationship between total grain sown area and climate change. Climate change affects the growth of regional vegetation; both trees and grain crops often change concurrently, such that the annual radial growth of trees shows consistent inter-annual variations with the total grain crop productivity. However, it remains unclear whether they exhibit concurrent responses to climate factors, and that there lacks of the study on long-term high-resolution variations of grain crops productivity. This paper employs a Pinus massoniana tree-ring series from the Tongbai Mountains to analyze the correlations between tree-ring chronology, local climate data and grain productivity indicators (i.e., total sown grain areas (TSA), total grain outputs (TGO), and average grain yield per hectare (YPH)) of Henan Province in central China. The results indicate that temperature in March and August was the main limiting factor on tree growth, and the best concurrent relationship with tree growth was TSA, which has a correlation of 0.747 (p 
ISSN:1470-160X
DOI:10.1016/j.ecolind.2023.110608