首页> 外文期刊>Journal of soil & sediments >Links between vegetation patterns, soil C and N pools and respiration rate under three different land uses in a dry Mediterranean ecosystem
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Links between vegetation patterns, soil C and N pools and respiration rate under three different land uses in a dry Mediterranean ecosystem

机译:地中海干旱生态系统中三种不同土地利用方式下植被格局,土壤碳氮循环与呼吸速率之间的联系

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Purpose Soil respiration (R_s) is controlled by abiotic soil parameters interacting with characteristics of the vegetation and the soil microbial community. Few studies have attempted a comprehensive approach that simultaneously addresses the roles of all the major factors known to influence R_s. Our goal was to explore the links between heterogeneity in R_s, above-ground plant biomass and belowground properties in three representative land-use types in a dry Mediterranean ecosystem: (1) a 150-year-old mixed Aleppo pine-kermes oak open forest, (2) an abandoned agricultural field, which was cultivated with cereal for several years until abandonment in 1980, when establishment of typical Mediterranean shrubland vegetation started and (3) a rain-fed olive grove, which has been cultivated for 100 years. Materials and methods We selected two distinctive sampling periods coinciding with annual minimum or near minimum (December) and maximum (April) rates of R_s in this dry Mediterranean ecosystem. In each sampling period, R_s, temperature and moisture, aboveground plant biomass, carbon (C) and nitrogen (N) contents in both light and heavy soil organic matter fractions, extractable dissolved organic C (EDOC), as well as microbial and fine root biomass were measured within each land-use type. Results and discussion Across sites, R_s rates were significantly higher in April (3.07±0.1 μmolm~2s~(-1)) than in December (1.30±0.1 μmolm~(-2)s~(-1)). The labile soil organic matter fractions (light fraction C and N contents, microbial biomass C and EDOC) were consistently and strongly related to one another, and to a lesser extent, to the C and N contents in the heavy fraction across sites and seasons. Linear models adequately explained a large proportion of the within-site variability in R_s (R~2 values ranged from 41 to 91 % depending on land use and season) but major controls on R_s differed considerably between sites and seasons. Primary controls on spatial patterns in R_s were linked to recent plant-derived C inputs in both forest and olive grove sites. However, in the abandoned agricultural field site R_s appeared to be mainly driven by microbial activity, which could be sustained by intermediate or recalcitrant C and N pools derived from previous land use. Conclusions Conversion of native woodland to agricultural land and subsequent land abandonment leads to profound changes in the relationships between R_s, aboveground biomass and belowground properties in this dry Mediterranean ecosystem. While above- and belowground vegetation are the primary controls on spatial variability in labile soil C pools and R_s in the open forest and olive grove sites, a complete lack of influence of current vegetation patterns on soil C pools and respiration rates in the abandoned agricultural field was observed.
机译:目的土壤呼吸(R_s)由非生物性土壤参数与植被和土壤微生物群落的特征相互作用来控制。很少有研究尝试采用一种综合方法同时解决所有已知影响R_s的主要因素的作用。我们的目标是探索干旱的地中海生态系统中三种代表性土地利用类型中R_s的异质性,地上植物生物量和地下特性之间的联系:(1)已有150年历史的阿勒颇松树-凯梅斯混合栎开放林,(2)一个废弃的农田,用谷物种植了数年,直到1980年被废弃,那时典型的地中海灌木丛植被开始建立;(3)雨养的橄榄树已经栽培了100年。材料和方法我们选择了两个独特的采样期,分别对应于这个干燥的地中海生态系统中R_s的年最小或接近最小(12月)和最大(4月)速率。在每个采样期间,R_s,温度和湿度,地上植物生物量,轻和重土壤有机物组分中的碳(C)和氮(N)含量,可提取的溶解有机碳(EDOC)以及微生物和细根在每种土地利用类型中测量生物量。结果与讨论在整个站点,R_s率在4月(3.07±0.1μmolm〜2s〜(-1))明显高于12月(1.30±0.1μmolm〜(-2)s〜(-1))。不稳定的土壤有机质组分(轻组分C和N含量,微生物生物量C和EDOC)彼此之间始终存在密切关系,并且在不同地点和季节都与重组分中的C和N含量保持一致且程度较小。线性模型充分解释了R_s的场地内变异的很大一部分(R〜2值范围从41%到91%,取决于土地使用和季节),但是R_s的主要控制因场地和季节而异。 R_s中空间格局的主要控制与森林和橄榄树林中最近植物衍生的碳输入有关。然而,在废弃的农田中,R_s似乎主要是由微生物活动驱动的,微生物活动可以由先前土地利用产生的中间或顽固的碳和氮库维持。结论在这种干燥的地中海生态系统中,将原始林地转变为农业用地并随后放弃土地导致了R_s,地上生物量和地下特性之间关系的深刻变化。地上和地下植被是裸露的森林和橄榄树林中不稳定土壤C池和R_s的空间变异的主要控制因素,完全缺乏当前植被模式对土壤C池和废弃农业领域呼吸速率的影响被观测到。

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