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首页> 外文期刊>Agronomy Journal >Grazing Intensity and Nitrogen Fertilization Affect Litter Responses in 'Tifton 85' Bermudagrass Pastures: II. Decomposition and Nitrogen Mineralization
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Grazing Intensity and Nitrogen Fertilization Affect Litter Responses in 'Tifton 85' Bermudagrass Pastures: II. Decomposition and Nitrogen Mineralization

机译:放牧强度和氮肥影响'Tifton 85'百慕大草牧场的凋落物响应:II。分解和氮矿化

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摘要

In many grassland ecosystems, nutrient cycling via plant litter is important for plant growth and persistence. Understanding dynamics of litter decomposition and nutrient release under different management practices is critical to understanding nutrient cycling in grasslands, but this topic has received relatively little attention in C-4 grass pastures. The objective of this study was to determine the effects of grazing intensity (defined as postgraze stubble height, SH) and N fertilization on litter decomposition and N release in 'Tift on 85' bermudagrass (Cynodon spp.) pastures. Three levels of SH (8, 16, 24 cm) were compared at the same interval between grazing events (28 d) and amount of N fertilization (250 kg N ha(-1) yr(-1)). Three levels of N fertilization (50, 150, and 250 kg N ha(-1) yr(-1)) were compared when SH (24 cm) and regrowth interval were constant (28 d). Loss of litter mass was most rapid early in the decomposition period. Pasture SH had no effect on decomposition of litter mass, but increasing N fertilization increased decomposition rate. Immobilization of litter N began almost immediately aft er placement in the field regardless of treatment, did not reach its maximum for up to 60 d, and lasted more than 128 d for most treatments. Increasing SH and N fertilization increased N immobilization in plant litter. Nitrogen immobilization in bermudagrass litter occurs across a wide range of pasture management practices, impacting N availability for plant growth.
机译:在许多草原生态系统中,通过植物凋落物进行养分循环对于植物生长和持久性很重要。了解不同管理方式下凋落物分解和养分释放的动态对于了解草原养分循环至关重要,但是这个话题在C-4草场中受到的关注相对较少。这项研究的目的是确定放牧强度(定义为放牧后茬高度,SH)和氮肥对“ 85纹百慕大草(Cynodon spp。)”草场中凋落物分解和氮释放的影响。在放牧事件(28 d)和施氮量(250 kg N ha(-1)yr(-1))相同的时间间隔内比较了三个水平的SH(8、16、24 cm)。当SH(24 cm)和再生间隔恒定(28 d)时,比较了三个水平的氮肥水平(50、150和250 kg N ha(-1)yr(-1))。分解初期,凋落物的损失最为迅速。牧场SH对凋落物的分解没有影响,但是增加氮肥的施用会增加分解速率。无论如何处理,垫料N的固定几乎立即开始在田间后进行,直到长达60 d都没有达到最大值,大多数处理持续超过128 d。 SH和N施肥的增加增加了植物凋落物中N的固定化。百慕大草垫料中的固氮作用发生在广泛的牧场管理实践中,影响了植物生长所需的氮素利用率。

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