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Relationships of Biomass with Environmental Factors in the Grassland Area of Hulunbuir China

机译:呼伦贝尔草原地区生物量与环境因子的关系

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摘要

Many studies have focused on the relationship between vegetation biomass and environmental factors in grassland. However, several questions remain to be answered, especially with regards to the spatial pattern of vegetation biomass. Thus, the distributed mechanism will be explored in the present study. Here, plant biomass was measured at 23 sites along a transect survey during the peak growing season in 2006. The data were analyzed with a classification and regression tree (CART) model. The structural equation modeling (SEM) was conducted to explicitly evaluate the both direct and indirect effects of these critical environmental elements on vegetation biomass. The results demonstrated that mean annual temperature (MAT) affected aboveground biomass (AGB) scored at −0.811 (P<0.05). The direct effect of MAT on belowground biomass (BGB) was −0.490 (P<0.05). The results were determined by SEM. Our results indicate that AGB and BGB in semi-arid ecosystems is strongly affected by precipitation and temperature. Future work shall attempt to take into account the integrated effects of precipitation and temperature. Meanwhile, partitioning the influences of environmental variations and vegetation types are helpful in illuminating the internal mechanism of biomass distribution.
机译:许多研究集中在草地生物量与环境因子之间的关系上。但是,还有几个问题有待解决,特别是关于植被生物量的空间格局。因此,在本研究中将探讨分布式机制。在这里,在2006年高峰生长季节的横断面调查中,在23个地点测量了植物生物量。使用分类和回归树(CART)模型分析了数据。进行了结构方程模型(SEM),以明确评估这些关键环境元素对植被生物量的直接和间接影响。结果表明,年平均温度(MAT)对地上生物量(AGB)的影响为-0.811(P <0.05)。 MAT对地下生物量(BGB)的直接影响是-0.490(P <0.05)。结果通过SEM确定。我们的结果表明,半干旱生态系统中的AGB和BGB受降水和温度的强烈影响。未来的工作应尝试考虑降水和温度的综合影响。同时,划分环境变化和植被类型的影响有助于阐明生物量分布的内部机制。

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