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Exogenous phosphorus compounds interact with nitrogen availability to regulate dynamics of soil inorganic phosphorus fractions in a meadow steppe

机译:外源性磷化合物与氮可用性相互作用,以调节土壤干草原中土壤无机磷馏分的动态

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Here we investigated the effects of P compounds (KH2PO4 and Ca(H2PO4)2) with different addition rates of 0, 20, 40, 60, 80, and 100 kg P ha?1 yr?1 and NH4NO3 addition (0 and 100 kg N ha?1 yr?1) on soil labile inorganic phosphorus (IP) (dicalcium phosphate, Ca2-P), moderate-cycling IP, and recalcitrant IP fractions in a calcareous grassland of northeastern China. Soil moderate-cycling IP fractions, not readily available to plants but transforming into soil-available P quickly, include variscite (Al-P), strengite (Fe-P) and octacalcium phosphate (Ca8-P); recalcitrant IP fractions include hydroxylapatite (Ca10-P) and occluded P (O-P). Soil labile and moderate-cycling IP fractions and total P significantly increased with increasing P addition rates, with higher concentrations detected for KH2PO4 than for Ca(H2PO4)2 addition. Combined N and P treatments showed lower soil labile IP and moderate-cycling IP fractions compared to ambient N conditions, due to enhanced plant productivity. Moderate-cycling IP was mainly regulated by P addition and plant P uptake to further enhance labile IP and total P concentrations with KH2PO4 and Ca(H2PO4)2 addition. Soil labile IP was also directly and negatively affected by soil pH and plant P uptake with Ca(H2PO4)2 addition. Ca(H2PO4)2 addition significantly increased the soil recalcitrant IP (Ca10-P) fraction, while KH2PO4 addition showed no impact on it. A significant positive correlation was detected between soil labile IP, moderate-cycling IP fractions and soil Olsen-P which illustrated that labile IP and moderate-cycling IP fractions were important sources for soil-available P. Our results suggest that moderate-cycling IP fractions are essential for grassland P biogeochemical cycling and the chemical form of P fertilizer should be considered during fertilization management for maintaining soil-available P.
机译:在这里,我们研究了P化合物(KH2PO4和Ca(H2PO4)2)的影响,不同的添加速率为0,20,40,60,80和100kg P ha = 1Yr≤1和NH4NO3加入(0和100kg N HA?1 YR?1)在土壤不受机无机磷(IP)(磷酸二钙,CA2-P),中等循环IP和顽皮的IP分数在中国东北部的钙质草原。土壤中等循环IP分数,植物不易获得,但快速转化为土壤可用的P,包括瓦楞纸(AL-P),苦参(Fe-P)和磷酸叔钯(CA8-P);顽抗IP级分包括羟基磷灰石(CA10-P)和闭塞P(O-P)。土壤不稳定和中度循环IP分数和总P随着P添加速率的增加而显着增加,较高浓度为KH2PO4而不是Ca(H2PO4)2加入。与环境N条件相比,组合N和P治疗表现出降低的土壤不稳定IP和中等循环IP分馏,由于植物生产率增强。中等循环IP主要受到P添加和植物P吸收的调节,以进一步增强kH2PO4和Ca(H2PO4)2添加的不稳定IP和全P浓度。土壤不稳定IP也直接且受土壤pH和植物P吸收与Ca(H2PO4)2添加的负面影响。 Ca(H2PO4)2添加显着增加土壤顽固IP(CA10-P)分数,而KH2PO4添加对其没有影响。土壤不稳定IP,中等循环IP分数和土壤OLSEN-P之间检测到显着的正相关性,其说明了不稳定的IP和中度循环IP分数是土壤可用的重要来源。我们的结果表明中等循环IP分数对于草原P.生物地球化学循环,应在施肥管理期间考虑P肥料的化学形式,以维持土壤可用的P.

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