Enríquez S, Duarte C M, Sand-Jensen K
Centro de Estudios Avanzados de Blanes, CSIC, Camí de Santa Bárbara, 17300, Blanes, Girona, Spain.
Freshwater Biological Laboratory, University of Copenhagen, 51 Helsingørsgade, 3400, Hillerød, Denmark.
Oecologia. 1993 Jul;94(4):457-471. doi: 10.1007/BF00566960.
The strength and generality of the relationship between decomposition rates and detritus carbon, nitrogen, and phosphorus concentrations was assessed by comparing published reports of decomposition rates of detritus of photosynthetic organisms, from unicellular algae to trees. The results obtained demonstrated the existence of a general positive, linear relationship between plant decomposition rates and nitrogen and phosphorus concentrations. Differences in the carbon, nitrogen, and phosphorus concentrations of plant detritus accounted for 89% of the variance in plant decomposition rates of detritus orginating from photosynthetic organisms ranging from unicellular microalgae to trees. The results also demonstrate that moist plant material decomposes substantially faster than dry material with similar nutrient concentrations. Consideration of lignin, instead of carbon, concentrations did not improve the relationships obtained. These results reflect the coupling of phosphorus and nitrogen in the basic biochemical processes of both plants and their microbial decomposers, and stress the importance of this coupling for carbon and nutrient flow in ecosystems.
通过比较已发表的关于从单细胞藻类到树木等光合生物残体分解速率的报告,评估了分解速率与残体碳、氮、磷浓度之间关系的强度和普遍性。所获得的结果表明,植物分解速率与氮和磷浓度之间存在普遍的正线性关系。植物残体中碳、氮和磷浓度的差异占来自单细胞微藻到树木等光合生物的植物残体分解速率变化的89%。结果还表明,具有相似养分浓度的潮湿植物材料比干燥材料分解得快得多。考虑木质素而非碳的浓度并没有改善所获得的关系。这些结果反映了植物及其微生物分解者基本生化过程中磷和氮的耦合,并强调了这种耦合对生态系统中碳和养分流动的重要性。