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Projected impacts of climate change on regional capacities for global plant species richness

机译:气候变化对全球植物物种丰富性区域能力的预计影响

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摘要

Climate change represents a major challenge to the maintenance of global biodiversity. To date, the direction and magnitude of net changes in the global distribution of plant diversity remain elusive. We use the empirical multi-variate relationships between contemporary water-energy dynamics and other non-climatic predictor variables to model the regional capacity for plant species richness (CSR) and its projected future changes. We find that across all analysed Intergovernmental Panel on Climate Change emission scenarios, relative changes in CSR increase with increased projected temperature rise. Between now and 2100, global average CSR is projected to remain similar to today (+0.3%) under the optimistic B1/+1.8°C scenario, but to decrease significantly (−9.4%) under the ‘business as usual’ A1FI/+4.0°C scenario. Across all modelled scenarios, the magnitude and direction of CSR change are geographically highly non-uniform. While in most temperate and arctic regions, a CSR increase is expected, the projections indicate a strong decline in most tropical and subtropical regions. Countries least responsible for past and present greenhouse gas emissions are likely to incur disproportionately large future losses in CSR, whereas industrialized countries have projected moderate increases. Independent of direction, we infer that all changes in regional CSR will probably induce on-site species turnover and thereby be a threat to native floras.
机译:气候变化是维护全球生物多样性的主要挑战。迄今为止,植物多样性全球分布中净变化的方向和幅度仍然难以捉摸。我们使用当代水能动力学与其他非气候预测变量之间的经验多元关系来对植物物种丰富度(CSR)的区域容量及其未来的预期变化进行建模。我们发现,在所有经过分析的政府间气候变化专门委员会排放情景中,企业社会责任的相对变化都随着预计温度升高的增加而增加。从现在到2100年,在乐观的B1 / + 1.8°C情景下,全球平均CSR预计将保持与今天相似(+ 0.3%),但在“一切照旧”的A1FI / +下将显着下降(-9.4%) 4.0°C的情况。在所有建模的场景中,企业社会责任变化的幅度和方向在地理上都是高度不一致的。尽管在大多数温带和北极地区,预期企业社会责任会增加,但这些预测表明,在大多数热带和亚热带地区,企业社会责任将大幅下降。对过去和现在的温室气体排放最不负责任的国家,可能在未来的企业社会责任中造成不成比例的巨大损失,而工业化国家则预计会适度增加。不受方向影响,我们推断区域CSR的所有变化都可能会导致现场物种更新,从而对本地植物区系构成威胁。

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