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Biomass N : P ratios as indicators of nutrient limitation for plant populations in wetlands

机译:生物质氮比磷作为湿地植物种群营养限制的指标

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The conservation or restoration of seminatural vegetation often involves measures that influence the availability of nutrients and consequently the plant species composition., The ability to predict effects of modified nutrient availability on species composition would therefore help to choose appropriate management strategies. The aim of this study was to test whether short-term effects of nitrogen or phosphorus enrichment can be predicted from nutrient ratios in plant biomass. At 11 species-rich sites in,Dutch fens and dune slacks, small plots Were fertilized with N, P, N + P, or not fertilized (control). The aboveground biomass, N and P concentrations, and N:P ratios, were compared between fertilized and control plots for all sufficiently abundant plant populations in the summers preceding and following fertilization. Of 121 populations, only 45 had their biomass enhanced significantly by fertilization. Populations enhanced by P fertilization had on average higher biomass N:P ratios than those enhanced by N,. due to higher N and lower P concentrations. However, N:P ratios did not differ among populations enhanced by N, N + P, or neither nutrient. High biomass N:P ratios (>20) therefore indicated that a plant population would probably respond to P-fertilization, but low or intermediate N:P ratios (<20) did not indicate whether the population would respond to N or N + P fertilization. The predictive value of N:P ratios was not higher if only species from one site or only species with the same growth form were considered. It is concluded that N:P ratios are not suitable to predict how changed nutrient supply will affect plant species composition, especially in the long term. However, results suggest that biomass N:P ratios do reflect the relative availability of N and P to plants and may indicate the degree of N or P deficiency experienced by a plant population even more reliably than fertilization experiments. N:P ratios can be used to investigate how the relative availability of N and P influences various ecological processes and how it is affected by human. impacts or management. [References: 89]
机译:半自然植被的保护或恢复通常涉及影响养分利用率以及植物物种组成的措施。因此,预测改良养分利用率对物种组成的影响的能力将有助于选择适当的管理策略。这项研究的目的是检验是否可以通过植物生物量中的营养比预测氮或磷富集的短期效应。在荷兰和沙丘的11个物种丰富的地点,对小块土地施以N,P,N + P或不施肥(对照)。在施肥之前和之后的夏季,对所有足够丰富的植物种群在施肥区和对照区之间比较了地上生物量,N和P浓度以及N:P比率。在121个种群中,只有45个通过施肥显着提高了生物量。通过磷肥提高的种群的生物量氮磷比平均高于通过氮肥提高的种群。由于较高的氮和较低的P浓度。但是,氮,磷,磷或两种养分增加的人群中氮磷比没有差异。因此,高生物量氮磷比(> 20)表明植物种群可能对磷肥有反应,但是低氮磷比率或中等氮磷比(<20)却没有表明种群是否对氮肥或磷氮磷有反应。受精。如果仅考虑一个地点的物种或仅具有相同生长形式的物种,则N:P比值的预测值不会更高。结论是:N:P比不适合预测养分供应的变化将如何影响植物物种组成,尤其是从长期来看。但是,结果表明,生物量的N:P比值确实反映了N和P对植物的相对利用率,并且可能表明植物种群经历的N或P缺乏程度甚至比施肥实验更为可靠。 N:P比率可用于调查N和P的相对利用率如何影响各种生态过程以及它如何受到人类的影响。影响或管理。 [参考:89]

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