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首页> 外文期刊>Soil Biology & Biochemistry >Inter-annual and seasonal dynamics of soil microbial biomass and nutrients in wet and dry low-Arctic sedge meadows.
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Inter-annual and seasonal dynamics of soil microbial biomass and nutrients in wet and dry low-Arctic sedge meadows.

机译:低和北极低矮莎草草甸土壤微生物生物量和养分的年际和季节动态。

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Biogeochemical activity occurs year-round in arctic soils, and previous studies from both alpine and arctic tundra sites have revealed that soil microbial biomass (MB) in the active layer reaches an annual peak in winter, and decreases during or shortly after soil thaw. This decline occurs concurrently with, or is followed by, a peak in soil nutrients that provide an important nutritional resource for plant growth. We documented both intra- and inter-annual MB and nutrient patterns in wet and dry sedge meadows near Churchill, Manitoba, Canada between June 2004 and June 2008. Intensive sampling occurred during the winter-spring transition and soils were analyzed for MB, microbial nitrogen, dissolved organic carbon and nitrogen, and inorganic nitrogen. A consistent seasonal pattern was observed wherein large winter MB pools responded negatively to winter warming event, and decreased steeply during soil thaw, suggesting that soil physical factors drive the observed microbial declines. Nutrient pools showed similar seasonal fluctuations, however a post-thaw nitrogen increase was observed in 2006, but not in other years. Inter-annual patterns were similar between wet and dry sedge meadows, including relatively low peak values of all variables by 2008 in both ecotypes, which could be related to observed hydrological changes. As northern climates continue to change, seasonal biogeochemical events that affect the timing and magnitude of nutrient pulses will be altered, with important implications for primary productivity and ecosystem functioning.
机译:生物地球化学活性全年发生在北极土壤中,先前的高山和北极苔原站点研究都表明,活性层​​中的土壤微生物生物量(MB)在冬季达到年度峰值,并在融化期间或融化后不久下降。这种下降与土壤养分的峰值同时发生,或者紧随其后,为植物生长提供了重要的营养资源。我们记录了2004年6月至2008年6月之间加拿大马尼托巴省丘吉尔附近的干湿莎草草甸的年际和年际MB和养分模式。在冬春季过渡期间进行了密集采样,并对土壤中的MB,微生物氮进行了分析。 ,溶解的有机碳和氮以及无机氮。观察到一致的季节模式,其中大型冬季MB池对冬季变暖事件产生负面响应,并在土壤融化期间急剧下降,这表明土壤物理因素推动了观察到的微生物数量下降。养分池显示出相似的季节性波动,但是在2006年观察到解冻后氮素增加,而在其他年份则没有。干湿莎草草甸的年际格局相似,包括两种生态类型的所有变量到2008年的峰值均相对较低,这可能与观测到的水文变化有关。随着北部气候的不断变化,影响营养素脉冲时间和强度的季节性生物地球化学事件将改变,这对初级生产力和生态系统功能具有重要意义。

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