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首页> 外文期刊>Global change biology >Fungal community responses to precipitation.
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Fungal community responses to precipitation.

机译:真菌群落对降水的反应。

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摘要

Understanding how fungal communities are affected by precipitation is an essential aspect of predicting soil functional responses to future climate change and the consequences of those responses for the soil carbon cycle. We tracked fungal abundance, fungal community composition, and soil carbon across 4 years in long-term field manipulations of rainfall in northern California. Fungi responded directly to rainfall levels, with more abundant, diverse, and consistent communities predominating under drought conditions, and less abundant, less diverse, and more variable communities emerging during wetter periods and in rain-addition treatments. Soil carbon storage itself did not vary with rainfall amendments, but increased decomposition rates foreshadow longer-term losses of soil carbon under conditions of extended seasonal rainfall. The repeated recovery of fungal diversity and abundance during periodic drought events suggests that species with a wide range of environmental tolerances coexist in this community, consistent with a storage effect in soil fungi. Increased diversity during dry periods further suggests that drought stress moderates competition among fungal taxa. Based on the responses observed here, we suggest that there may be a relationship between the timescale at which soil microbial communities experience natural environmental fluctuations and their ability to respond to future environmental change.
机译:了解降雨对真菌群落的影响是预测土壤对未来气候变化的功能响应以及这些响应对土壤碳循环的影响的重要方面。在北加州的长期降雨实地操作中,我们跟踪了4年的真菌丰度,真菌群落组成和土壤碳。真菌直接响应降雨水平,在干旱条件下,群落更为丰富,多样性和一致的社区占主导地位,而在潮湿时期和加雨处理中出现的群落则不那么丰富,多样性和可变性更高。土壤碳储量本身并没有随降雨的增加而变化,但是分解速率的增加预示了在季节性降雨增加的情况下土壤碳的长期损失。周期性干旱事件中真菌多样性和丰度的反复恢复表明,具有广泛环境耐受性的物种在该群落中共存,与土壤真菌中的存储效应一致。干旱时期多样性的增加进一步表明干旱胁迫减轻了真菌类群之间的竞争。根据此处观察到的响应,我们建议土壤微生物群落经历自然环境波动的时间尺度与其对未来环境变化的响应能力之间可能存在某种关系。

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