Impacts of Weather Anomalies and Climate on Plant Disease

IF 7.6 1区 环境科学与生态学 Q1 ECOLOGY Ecology Letters Pub Date : 2025-01-20 DOI:10.1111/ele.70062
Devin Kirk, Jeremy M. Cohen, Vianda Nguyen, Marissa L. Childs, Johannah E. Farner, T. Jonathan Davies, S. Luke Flory, Jason R. Rohr, Mary I. O'Connor, Erin A. Mordecai
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Abstract

Predicting the effects of climate change on plant disease is critical for protecting ecosystems and food production. Here, we show how disease pressure responds to short-term weather, historical climate and weather anomalies by compiling a global database (4339 plant–disease populations) of disease prevalence in both agricultural and wild plant systems. We hypothesised that weather and climate would play a larger role in disease in wild versus agricultural plant populations, which the results supported. In wild systems, disease prevalence peaked when the temperature was 2.7°C warmer than the historical average for the same time of year. We also found evidence of a negative interactive effect between weather anomalies and climate in wild systems, consistent with the idea that climate maladaptation can be an important driver of disease outbreaks. Temperature and precipitation had relatively little explanatory power in agricultural systems, though we observed a significant positive effect of current temperature. These results indicate that disease pressure in wild plants is sensitive to nonlinear effects of weather, weather anomalies and their interaction with historical climate. In contrast, warmer temperatures drove risks for agricultural plant disease outbreaks within the temperature range examined regardless of historical climate, suggesting vulnerability to ongoing climate change.

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天气异常和气候对植物病害的影响
预测气候变化对植物病害的影响对于保护生态系统和粮食生产至关重要。在这里,我们通过编译农业和野生植物系统中疾病流行的全球数据库(4339种植物疾病种群),展示了疾病压力如何响应短期天气、历史气候和天气异常。我们假设天气和气候将在野生植物种群与农业植物种群的疾病中发挥更大的作用,结果支持了这一假设。在野生系统中,当气温比历史同期平均温度高2.7℃时,疾病流行率达到峰值。我们还发现了野生系统中天气异常和气候之间负交互作用的证据,这与气候不适应可能是疾病爆发的重要驱动因素的观点一致。温度和降水在农业系统中的解释力相对较小,尽管我们观察到当前温度的显著正影响。这些结果表明,野生植物病害压力对天气、天气异常及其与历史气候的相互作用的非线性效应非常敏感。相比之下,在研究的温度范围内,无论历史气候如何,气温升高都增加了农业植物疾病爆发的风险,这表明对持续气候变化的脆弱性。
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来源期刊
Ecology Letters
Ecology Letters 环境科学-生态学
CiteScore
17.60
自引率
3.40%
发文量
201
审稿时长
1.8 months
期刊介绍: Ecology Letters serves as a platform for the rapid publication of innovative research in ecology. It considers manuscripts across all taxa, biomes, and geographic regions, prioritizing papers that investigate clearly stated hypotheses. The journal publishes concise papers of high originality and general interest, contributing to new developments in ecology. Purely descriptive papers and those that only confirm or extend previous results are discouraged.
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