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首页> 外文期刊>Biology and fertility of soils: Cooperating Journal of the International Society of Soil Science >Legacy effect of previous residue addition-influence of length of the moist period between residue additions on soil respiration, microbial biomass and nutrient availability
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Legacy effect of previous residue addition-influence of length of the moist period between residue additions on soil respiration, microbial biomass and nutrient availability

机译:先前添加残留物的传统影响-添加残留物之间的潮湿时间长度对土壤呼吸,微生物生物量和养分利用率的影响

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摘要

In previous studies, we showed that microbial activity and nutrient availability after the second residue addition are influenced by the C/N ratio of the previously added residue, referred to as legacy effect. The aim of this experiment was to assess the influence of soil water content after the first residue addition on the legacy effect. A silt loam was amended with high C/N residue (mature wheat shoots, C/N 120, H) or low C/N residue (young kikuyu shoots, C/N 22, L) at 10 g kg(-1) twice, on day 0 and on day 29 with low C/N residue following high C/N residue or vice versa (HL or LH). After the first residue addition, the soil was maintained either constantly moist for 4 weeks or dried immediately after residue addition or after 1, 2 or 3 weeks. All dried treatments were rewetted on day 28 and the second residue added on day 29 after which all soils were maintained moist until end of the experiment (day 57). Respiration was measured over 57 days and microbial biomass C (MBC), N (MBN) and P (MBP) and available N and P were determined on days 0, 29 (before second residue addition), 43 and 57. Compared to constantly moist soil, only soil drying immediately after the first residue addition reduced cumulative respiration and increased MBC on day 29, and with low C/N residue, increased available N concentration. After the second residue addition, the previous moisture treatment influenced the legacy effect in HL, but not LH. Compared to the treatment that was maintained moist after the first residue addition, cumulative respiration and MBC and available N concentration were higher in the treatment that was dried immediately after the first amendment. This can be explained by the greater amount of the previously added H residue left in the soil when the L residue was added compared to the treatment that had been moist throughout the experiment. It can be concluded that soil drying influences the legacy effect only when it occurs shortly after addition of the first residue, which is when decomposition rates are high.
机译:在以前的研究中,我们显示了第二次添加残留物后的微生物活性和养分利用率受先前添加的残留物的C / N比的影响,这称为遗留效应。该实验的目的是评估第一次添加残留物后土壤含水量对遗留效应的影响。用10 g kg(-1)的高C / N残留量(成熟的小麦芽,C / N 120,H)或低C / N残留量(年轻的菊久芽,C / N 22,L)修改淤泥壤土,在第0天和第29天时,C / N残留量较低,C / N残留量较低,反之亦然(HL或LH)。第一次添加残留物后,将土壤保持恒定潮湿4周,或在添加残留物后立即或在1、2或3周后干燥。所有干燥的处理都在第28天重新湿润,并在第29天添加第二个残留物,此后所有土壤保持湿润直至实验结束(第57天)。在57天内测量了呼吸,并在第0、29天(第二次添加残留物之前),43和57天确定了微生物生物量C(MBC),N(MBN)和P(MBP)以及有效氮和磷。在土壤中,仅在第一次添加残留物后立即干燥土壤,这会减少累积呼吸并在第29天增加MBC,而C / N残留物较低时,则可利用的N浓度会增加。在第二次添加残留物后,先前的水分处理影响了HL的传统效果,但没有影响LH。与第一次添加残留物后保持湿润的处理相比,第一次修饰后立即干燥的处理中的累积呼吸和MBC以及有效氮浓度更高。这可以解释为,与整个实验中潮湿的处理相比,添加L残留物时残留在土壤中的H残留量更大。可以得出结论,土壤干燥仅在添加第一个残渣后不久即分解率高时才影响传统效果。

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