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首页> 外文期刊>Trees. Structure and Function >Dwarf pine invasion in an alpine tundra of discontinuous permafrost area: effects on fine root and soil carbon dynamics
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Dwarf pine invasion in an alpine tundra of discontinuous permafrost area: effects on fine root and soil carbon dynamics

机译:不连续冻土区高寒苔原上的矮松入侵:对细根和土壤碳动态的影响

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Climate warming may directly and indirectly affect the large carbon stock in discontinuous permafrost soil at high latitudes. In recent decades, Siberian dwarf pine [Pinus pumila (Pall.) Regel] has been invading dry heath alpine tundra in the northern Amur region of Far East Russia. Siberian dwarf pine is known to have high aboveground productivity, comparable to that of tall coniferous trees. We hypothesised that the invasion of Siberian dwarf pine into alpine tundra could increase soil carbon stocks via an increase in fine roots. Contrary to our expectations, the invasion of dwarf pine did not significantly increase the fine root biomass and productivity of the tundra, probably due to the belowground competitive exclusion between the dwarf pine and alpine tundra plants. Furthermore, the invasion of the dwarf pine did not affect soil carbon in the alpine tundra ecosystem. These results show that the recent invasion of Siberian dwarf pine into tundra did not influence the fine root dynamics or the soil carbon stock in the study site. Together, these results implied that (1) it takes a long time for pine invasion to change the belowground ecosystem properties of tundra vegetation to that of pine thickets and therefore (2) the lack of an increase in soil carbon from recent tree invasion should be taken into account when modelling future carbon dynamics in alpine tundra.
机译:气候变暖可能直接和间接影响高纬度不连续多年冻土中大量的碳储量。近几十年来,西伯利亚矮松[Pinus pumila(Pall。)Regel]入侵了远东俄罗斯北部阿穆尔地区的干旱荒漠高山冻原。已知西伯利亚矮松具有较高的地上生产力,与高大的针叶树相当。我们假设西伯利亚矮松侵入高山冻原可以通过增加细根来增加土壤碳储量。与我们的预期相反,矮松的入侵并没有显着增加苔原的细根生物量和生产力,这可能是由于矮松和高山苔原植物在地下竞争排斥所致。此外,矮松的入侵并没有影响高山苔原生态系统中的土壤碳。这些结果表明,最近西伯利亚矮松侵入苔原并没有影响研究地点的细根动态或土壤碳储量。总之,这些结果表明:(1)松树入侵需要很长的时间才能将苔原植被的地下生态系统特性改变为松树林,因此(2)近期树木入侵所引起的土壤碳缺乏应该是由于在对高山冻原的未来碳动力学建模时要考虑到这一点。

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