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Earthworm impacts on soil organic matter and fertilizer dynamics in tropical hillside agroecosystems of Honduras

机译:tropical对洪都拉斯热带山坡农业生态系统中土壤有机质和肥料动态的影响

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摘要

Earthworms are important processors of soil organic matter (SOM) and nutrient turnover in terrestrial ecosystems. In agroecosystems, they are often seen as beneficial organisms to crop growth and are actively promoted by farmers and extension agents, yet their contribution to agroecosystem services is uncertain and depends largely on management. The Quesungual slash-and-mulch agroforestry system (QSMAS) of western Honduras has been proposed as a viable alternative to traditional slash-and-burn (SB) practices and has been shown to increase earthworm populations, yet the effect of earthworms on soil fertility and SOM in QSMAS is poorly understood. This study examined the role of Pontoscolex corethrurus in QSMAS by comparing their influence on aggregate-associated SOM and fertilizer dynamics with their effects under SB and secondary forest in a replicated field trial. Both the fertilized QSMAS and SB treatments had plots receiving additions of inorganic ~(15)N and P, as well as plots with no inorganic N additions. Earthworm populations were manipulated in field microcosms at the beginning of the rainy season within each management treatment via additions of P. corethrurus or complete removal of existing earthworm populations. Microcosms were destructively sampled at harvest of Zea mays and soils were wet-sieved (using 53, 250 and 2000γm mesh sizes) to isolate different aggregate size fractions, which were analyzed for total C, N and ~(15)N. The effects of management system were smaller than expected, likely due to disturbance associated with the microcosm installation. Contrary to our hypothesis that earthworms would stabilize organic matter in soil aggregates, P. corethrurus decreased total soil C by 3% in the surface layer (0-15cm), predominantly through a decrease in the C concentration of macroaggregates (>250γm) and a corresponding depletion of C in coarse particulate organic matter occluded within macroaggregates. Earthworms also decreased bulk density by over 4%, but had no effect on aggregate size distribution. Within the two fertilized treatments, the QSMAS appeared to retain slightly more fertilizer derived N in smaller aggregate fractions (<250γm) than did SB, while earthworms greatly reduced the recovery of fertilizer N (34% decrease) in both systems. Although management system did not appear to influence the impact of P. corethrurus on SOM or nutrient dynamics, we suggest the lack of differences may be due to artificially low inputs of fresh residue C to microcosms within all management treatments. Our findings highlight the potential for P. corethrurus to have deleterious impacts on soil C and fertilizer N dynamics, and emphasize the need to fully consider the activities of soil fauna when evaluating agroecosystem management options.
机译:are是陆地生态系统中土壤有机质(SOM)和养分转化的重要加工者。在农业生态系统中,它们通常被视为对作物生长有益的生物,并由农民和推广人员积极促进,但它们对农业生态系统服务的贡献尚不确定,并且在很大程度上取决于管理。洪都拉斯西部的Quesungual刀耕火种农林业系统(QSMAS)已被提议作为传统刀耕火种(SB)做法的可行替代方案,并已证明可增加population种群,但on对土壤肥力的影响对QSMAS中的SOM知之甚少。这项研究通过重复田间试验,通过比较其对骨料相关SOM和肥料动力学的影响以及其在SB和次生林下的影响,研究了Pontoscolex corethrurus在QSMAS中的作用。受精的QSMAS和SB处理都具有接受无机〜(15)N和P添加的地块,以及不添加无机N的地块。在雨季开始时,在每个管理处理措施中,通过添加景天对虾或彻底清除现有earth种群,在田间缩影中操纵worm种群。在收获玉米时破坏性地采样了微观世界,并对土壤进行了湿筛(使用53、250和2000γm筛目大小)以分离出不同的骨料级分,并对总C,N和〜(15)N进行了分析。管理系统的效果小于预期,可能是由于与缩影安装相关的干扰。与我们的worm使土壤团聚体中的有机物稳定的假设相反,P。corethrurus在表层(0-15cm)内将土壤总碳降低了3%,主要是通过降低大集料的C浓度(>250γm)和降低了大团聚体中所含的粗颗粒有机物中C的相应消耗量。 also也使堆积密度降低了4%以上,但对骨料粒度分布没有影响。在两种施肥处理中,QSMAS似乎在较小的骨料含量(<250γm)中比SB保留了更多的肥料衍生氮,而earth在两个系统中都大大减少了肥料N的回收(减少了34%)。尽管管理系统似乎并未影响对虾的SOM或养分动态,但我们认为缺乏差异可能是由于在所有管理方法中人为地将新鲜残留物C的人为输入量较低。我们的研究结果突出显示了体育假单胞菌对土壤碳和肥料氮动态产生有害影响的潜力,并强调在评估农业生态系统管理方案时需要充分考虑土壤动物的活动。

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