Spatially-Uneven Observations Cause Overestimation of Global Soil Respiration [0.03%]
空间异质性观测导致全球土壤呼吸量高估
Li Cao,Tao Zhou,Jingyu Zeng et al.
Li Cao et al.
Spatial unevenness in observation sites may hinder accurate global soil respiration (RS) quantification. We quantified site representativeness using Voronoi volumes within an environmental feature space and implemented an iterative pruning ...
Leveraging Extremophyte Adaptations as a Roadmap for Crop Design for Arid Lands [0.03%]
极端环境植物适应机制在干旱地区作物设计中的应用前景
Mohsin Tanveer,Lei Wang,Hamza Tariq et al.
Mohsin Tanveer et al.
Anthropogenic climate change is driving a convergence of rapid soil aridification and secondary salinization that threatens to degrade over half of the world's arable land. As conventional glycophytic crops reach their physiological limits,...
Observation-Constrained Agroecosystem Model Inversion Reveals Continental-Scale Variation of Winter Wheat Traits [0.03%]
基于观测的作物模型率定揭示冬小麦性状的大陆尺度变异
Zhenyu Zhang,Kaiyu Guan,Robert F Grant et al.
Zhenyu Zhang et al.
Understanding how crop trait variability shapes genotype × environment × management (G × E × M) interactions remains a key uncertainty in predicting agricultural performance under a changing climate. Continental-scale crop models common...
Beyond the Enzyme-Latch: A Narrative and Systematic Review of Enzymic Controls on Carbon Cycling in Peatlands [0.03%]
酶控碳循环:泥炭地故事与系统回顾之外enzyme-latchenzymeic.controls.carbon.cyclingpeatlandsbeyond.enzyme-latch narrative.systematic.review
Eleanor K M Birch,Nicholle G A Bell
Eleanor K M Birch
Peatlands are globally important carbon stores, because carbon cycling of plant matter in peat soils is impaired leading to accumulation. The mechanisms that underlie this impairment are not clear, nor why damaging peatlands leads to carbon...
Negative Responses of Understory Plant Communities to Nitrogen and Phosphorus Enrichments in Forests: Tests From a Field Experiment and a Meta-Analysis [0.03%]
基于野外控制实验和元分析的森林 understory 植被对氮磷添加的负向响应机制研究
Kai Dong,Suhui Ma,Wenjing Fang et al.
Kai Dong et al.
Anthropogenic nitrogen (N) and phosphorus (P) inputs have significant effects on plant community composition and diversity in forest ecosystems. Compared to canopy layers, understory communities are more sensitive to exogenous nutrient inpu...
Meta-Analysis
Global change biology. 2026 May;32(5):e70948. DOI:10.1111/gcb.70948 2026
Centurial Degradation of Insect Diversity in Lowland Rivers: Partial Recovery but Restructuration [0.03%]
低地河流中昆虫多样性的百年退化:部分恢复但结构重组
Jindřiška Bojková,Selma de Donnová,Alžbeta Devánová et al.
Jindřiška Bojková et al.
Global biodiversity is increasingly threatened by widespread anthropogenic impacts, which have accelerated since the First Industrial Revolution. Lowland rivers rank among the most affected ecosystems, having undergone centuries of hydromor...
Shifting Biological Drivers Govern Drought and Wetting Legacies on Soil Respiration [0.03%]
干旱和湿润遗留效应影响下土壤呼吸的转换生物学驱动因素
Yanan Cui,Stefano Manzoni,Zhiyuan Quan et al.
Yanan Cui et al.
Climate change is intensifying precipitation extremes, yet how historical drought and wetting shape post-event soil carbon fluxes remains poorly understood. Using a seven-year precipitation manipulation experiment (-70% to +50%) followed by...
Zheng-Rong Kan,Johannes Lehmann,Feng-Min Li et al.
Zheng-Rong Kan et al.
Using Landscape Genomics to Define Species Distributions, Delineate Seed Zones, and Predict Genomic Offset to Future Climate for the Interior Spruce Hybrid Complex (Picea glauca, Picea engelmannii, and Their Hybrids) [0.03%]
利用景观基因组学定义物种分布、界定种子区域及对未来气候下的基因组偏移进行预测——以白 spruce-恩格伦 spruce 杂交群为例(Picea glauca,Picea engelmannii 及其杂交种)
Zhengyang Ye,Sally N Aitken,Loren H Rieseberg et al.
Zhengyang Ye et al.
Understanding how tree species adapt to climate is crucial for forest management under climate change. This study employs landscape genomics to investigate climate adaptation in the interior spruce complex (Picea glauca, P. engelmannii, and...