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Changes in Ecological characteristic and Soil Carbon Sequestration along the Retrogressive Succession of Grassland Ecosystem on Western Songnen Plain

机译:沿草原生态系统的生态特征和土壤碳依赖的变化沿着草原生态系统沿宋嫩植物

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Grassland degradation is one of the major ecological problems in western Jilin province. Grassland degradation changes the carbon balance of grassland ecosystem. During the degradation, different plant communities of grassland ecosystem formed along the retrogressive succession in western Songnen Plain, such as Leymus chinensis→Chloris virgata→Puccinellia tenuiflora→ Suaeda glauca, then saline-alkali land. The experimental sites were located in Jiang-jia-dian meadow, which is one of the largest three natural Leymus chinensis steppe in China. The chronosequence approach (space-for-time substitution) is a viable tool for obtaining integrated information on successional studies, the primary objective of this study was to certain the impact of retrogressive succession on the soil carbon sequestration of grassland ecosystem. Six sampling strips (50cm×50cm) and four profiles were selected in each experimental sites for measuring plant species, cover, aboveground biomass, soil bulk density, total N and soil organic carbon. The results showed that the plant community composition changed, and the number of plant species and the cover decreased. Moreover, SOC were positively related to soil moisture and soil total nitrogen (P<0.05), retrogressive succession caused by grassland degradation affected not only in the surface layer, but also notably in the deeper layers. It is not a simple carbon source, moderate grassland degradation had a positive effect on carbon reserve while excessive degradation would accelerate the loss of grassland carbon reserve.
机译:草原退化是吉林省西部的主要生态问题之一。草地退化改变草地生态系统的碳平衡。在降解,沿着在西部松嫩平原,如羊草→虎尾草→碱茅→碱蓬,然后盐碱地的逆向演替形成草地生态系统的不同群落。实验地点位于江嘉甸草原,这是中国最大的三个自然羊草草原之一。的年代序列的方法(空间换时间替换)是获得演替研究综合信息的可行的工具,本研究的主要目的是一定的逆向演替对草地生态系统的土壤固碳的影响。六个采样带(50厘米×50厘米)和四个型材在每个试验点,用于测量植物物种,盖,地上生物量,容重,总N和土壤有机碳中选择。结果表明,植物群落的组成发生变化,植物种类数量和盖下降。此外,SOC呈正相关土壤湿度与土壤总氮(P <0.05),所造成的草地退化逆向演替不仅影响在表面层中,而且特别是在深层。这不是一个简单的碳源,中度草地退化对碳储量产生积极影响,而过度地下降将加速草地碳储量的损失。

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