Guo Xuelian, Lu Xianguo, Tong Shouzheng, Dai Guohua
College of Urban and Environmental Sciences, Northeast Normal University, Changchun 130024, China.
J Environ Sci (China). 2008;20(12):1445-52. doi: 10.1016/s1001-0742(08)62547-4.
The litterbag method was used to study the decomposition of wetland plant root in three wetlands along a water level gradient in the Sanjiang Plain, Northeast China. These wetlands are Calamagrostis angustifolia (C.aa), Carex meyeriana (C.ma) and Carex lasiocarpa (C.la). The objective of our study is to evaluate the influence of environment and substrate quality on decomposition rates in the three wetlands. Calico material was used as a standard substrate to evaluate environmental influences. Roots native to each wetland were used to evaluate decomposition dynamics and substrate quality influences. Calico mass loss was statistically different among the three wetlands in the upper soil profile (0-10 cm) and in the lower depth range (10-20 cm). Hydrology, temperature and pH all influence calico decomposition rates in different ways at different depths of the soil profiles. The decomposition rates of native roots declined differentially with the increase of depth in the soil profiles. The mass loss of native roots showed a statistical decrease among the three wetlands in the upper soil profile (0-10 cm) and in the lower depth range (10-20 cm) as C.ma wetland > C.aa wetland > C.la wetland. Both the C:P ratio and N:P ratio were positively interrelated with decomposition rates. Decomposition rates were negatively related to initial P concentration in all three wetlands, indicating that P concentration seems to be an important factor controlling the litter loss.
采用凋落物袋法研究了中国东北三江平原沿水位梯度的三个湿地中湿地植物根系的分解情况。这些湿地分别是狭叶甜茅(C.aa)、乌拉苔草(C.ma)和毛果苔草(C.la)。本研究的目的是评估环境和底物质量对这三个湿地分解速率的影响。用白布作为标准底物来评估环境影响。每个湿地的原生根系用于评估分解动态和底物质量影响。在土壤上层(0 - 10厘米)和下层深度范围(10 - 20厘米),三个湿地中白布的质量损失存在统计学差异。水文、温度和pH值在土壤剖面的不同深度以不同方式影响白布的分解速率。原生根系的分解速率随土壤剖面深度增加而不同程度下降。在土壤上层(0 - 10厘米)和下层深度范围(10 - 20厘米),三个湿地中原生根系的质量损失呈现统计学上的下降,顺序为C.ma湿地 > C.aa湿地 > C.la湿地。C:P比和N:P比均与分解速率呈正相关。在所有三个湿地中,分解速率与初始P浓度呈负相关,这表明P浓度似乎是控制凋落物损失的一个重要因素。