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首页> 外文期刊>Global change biology >Soil microbial and nutrient responses to 7 years of seasonally altered precipitation in a Chihuahuan Desert grassland.
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Soil microbial and nutrient responses to 7 years of seasonally altered precipitation in a Chihuahuan Desert grassland.

机译:奇瓦瓦沙漠草原土壤微生物和养分对7年季节性变化降水的响应。

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摘要

Soil microbial communities in Chihuahuan Desert grasslands generally experience highly variable spatiotemporal rainfall patterns. Changes in precipitation regimes can affect belowground ecosystem processes such as decomposition and nutrient cycling by altering soil microbial community structure and function. The objective of this study was to determine if increased seasonal precipitation frequency and magnitude over a 7-year period would generate a persistent shift in microbial community characteristics and soil nutrient availability. We supplemented natural rainfall with large events (one/winter and three/summer) to simulate increased precipitation based on climate model predictions for this region. We observed a 2-year delay in microbial responses to supplemental precipitation treatments. In years 3-5, higher microbial biomass, arbuscular mycorrhizae abundance, and soil enzyme C and P acquisition activities were observed in the supplemental water plots even during extended drought periods. In years 5-7, available soil P was consistently lower in the watered plots compared to control plots. Shifts in soil P corresponded to higher fungal abundances, microbial C utilization activity, and soil pH. This study demonstrated that 25% shifts in seasonal rainfall can significantly influence soil microbial and nutrient properties, which in turn may have long-term effects on nutrient cycling and plant P uptake in this desert grassland.
机译:奇瓦瓦沙漠草原的土壤微生物群落通常经历时空变化很大的降雨模式。降水制度的变化会通过改变土壤微生物群落的结构和功能来影响地下生态系统过程,例如分解和养分循环。这项研究的目的是确定7年内季节性降水频率和幅度的增加是否会导致微生物群落特征和土壤养分利用率的持续变化。我们根据大型气候事件(一个/冬季和三个/夏季)补充了自然降雨,以根据该地区的气候模型预测来模拟降水的增加。我们观察到微生物对补充降水处理的反应延迟了2年。在3-5年间,即使在长期干旱期间,在补充水区也观察到较高的微生物生物量,丛枝菌根丰度以及土壤酶C和P的采集活动。在第5-7年,浇水区的可利用土壤P始终低于对照区。土壤P的变化对应于较高的真菌丰度,微生物C的利用活性和土壤的pH值。这项研究表明,季节性降雨变化25%可以显着影响土壤微生物和养分特性,进而可能对该荒漠草原养分循环和植物P吸收产生长期影响。

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