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Patch Dynamics Of Soil Biotic Feedbacks In The Sonoran Desert

机译:索诺兰沙漠中土壤生物反馈的斑块动力学

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Soil fertility in arid ecosystems is spatially and temporally heterogeneous,due primarily to biotic feedbacks from perennial plants.While the "island of fertility" effect is well-established,little is known about the influence of plant functional characteristics on soil nutrients,or changes in nutrient levels following mortality or microsite succession.To assess these patterns,we studied a functionally diverse Sonoran Desert ecosystem in which all microsite state transitions were determined.The woody species (Ambrosia deltoidea,Larrea tridentata,Parkinsonia microphylla) significantly enhanced soil organic matter,nitrogen and phosphorous levels (referred to generally as fertility) to varying degrees.Effect sizes differed significantly among species but were surprisingly similar.However,following mortality,fertility remained constant beneath Ambrosia and increased significantly beneath decaying Parkinsonia,contrary to expected declines.These results suggest that nutrients are recycled within a microsite,resulting in similar pool sizes beneath live plants across species,regardless of morphological or phonological differences.Microsites occupied by cacti exhibited no differences from bare soil,indicating that cacti may erase islands of fertility.However,nitrate and phosphate levels spiked following mortality of the large cactus,Carnegiea gigantea.In general,fertility effects were correlated with morphological characteristics that should be applicable across most arid systems.
机译:干旱生态系统中的土壤肥力在空间和时间上是异质的,这主要归因于多年生植物的生物反馈。虽然“肥力岛”效应已广为人知,但人们几乎不了解植物功能特征对土壤养分或土壤养分变化的影响。为了评估这些模式,我们研究了功能多样的Sonoran沙漠生态系统,确定了所有微站点的状态转换。木质物种(Ambrosia deltoidea,Larrea tridentata,Parkinsonia microphylla)显着增强了土壤有机质,氮效果大小在物种之间差异很大,但出乎意料地相似。但是,在死亡率以下,在安布罗西亚以下,肥力保持不变,在腐烂的帕金森病下,生育力显着增加,与预期的下降相反。这些结果表明营养物质被无线回收稀薄的一个微型站点,无论物种在形态或语音上的差异如何,在物种间的活动植物下都具有相似的池大小。仙人掌所占据的微型站点与裸露的土壤没有差异,表明仙人掌可能抹去了肥沃的小岛。一般而言,生育力影响与形态特征相关,应当适用于大多数干旱系统。

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