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期刊名:Global change biology

缩写:GLOBAL CHANGE BIOL

ISSN:1354-1013

e-ISSN:1365-2486

IF/分区:12.0/Q1

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共收录本刊相关文章索引5946
Clinical Trial Case Reports Meta-Analysis RCT Review Systematic Review
Classical Article Case Reports Clinical Study Clinical Trial Clinical Trial Protocol Comment Comparative Study Editorial Guideline Letter Meta-Analysis Multicenter Study Observational Study Randomized Controlled Trial Review Systematic Review
Alice S A Johnston Alice S A Johnston
Restoring biodiversity-based resilience and ecosystem multi-functionality needs to be informed by more accurate predictions of animal biodiversity responses to environmental change. Ecological models make a substantial contribution to this ...
Evan J Parker,Sarah R Weiskopf,Ruth Y Oliver et al. Evan J Parker et al.
The geographic redistributions of species due to a rapidly changing climate are poised to perturb ecological communities and significantly impact ecosystems and human livelihoods. Effectively managing these biological impacts requires a tho...
Maitane Erdozain,Adrián Cardil,Sergio de-Miguel Maitane Erdozain
Freshwater ecosystems host disproportionately high biodiversity and provide unique ecosystem services, yet they are being degraded at an alarming rate. Fires, which are becoming increasingly frequent and intense due to global change, can af...
Xiangyi Li,Chris Huntingford,Kai Wang et al. Xiangyi Li et al.
Temperature extremes exert a significant influence on terrestrial ecosystems, but the precise levels at which these extremes trigger adverse shifts in vegetation productivity have remained elusive. In this study, we have derived two critica...
Torrey Stephenson,Tara Hudiburg,Justin M Mathias et al. Torrey Stephenson et al.
Tasmanian eucalypt forests are among the most carbon-dense in the world, but projected climate change could destabilize this critical carbon sink. While the impact of abiotic factors on forest ecosystem carbon dynamics have received conside...
Quanhong Lin,Jianxing Zhu,Qiufeng Wang et al. Quanhong Lin et al.
Forests are the largest carbon sink in terrestrial ecosystems, and the impact of nitrogen (N) deposition on this carbon sink depends on the fate of external N inputs. However, the patterns and driving factors of N retention in different for...
Bo Tang,Jing Man,Anika Lehmann et al. Bo Tang et al.
Although positive effects of arbuscular mycorrhizal (AM) fungi on plant performance under drought have been well documented, how AM fungi regulate soil functions and multifunctionality requires further investigation. In this study, we first...
Huadong Zang,Imran Mehmood,Yakov Kuzyakov et al. Huadong Zang et al.
Anthropogenic activities have raised nitrogen (N) input worldwide with profound implications for soil carbon (C) cycling in ecosystems. The specific impacts of N input on soil organic matter (SOM) pools differing in microbial availability r...