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Element cycling in the dominant plant community in the Alpine tundra zone of Changbai Mountains, China

机译:中国长白山寒带苔原带优势植物群落中的元素循环

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摘要

Element cycling in the dominant plant communities including Rh. aureum, Rh. redowskianum and Vaccinium uliginosum in the Alpine tundra zone of Changbai Mountains in northeast China was studied. The results indicate that the amount of elements from litter decomposition was less than that of the plant uptake from soil, but that from plant uptake was higher than that in soil with mineralization process released. On the other hand, in the open system including precipitation input and soil leaching output, because of great number of elements from precipitation into the open system, the element cycling (except N, P) in the Alpine tundra ecosystem was in a dynamic balance. In this study, it was also found that different organ of plants had significant difference in accumulating elements. Ca, Mg, P and N were accumulated more obviously in leaves, while Fe was in roots. The degree of concentration of elements in different tissues of the same organ of the plants also was different, a higher concentration of Ca, Mg, P and N in mesophyll than in nerve but Fe was in a reversed order. The phenomenon indicates (1) a variety of biochemical functions of different elements, (2) the elements in mesophyll were with a shorter turnover period than those in nerve or fibre, but higher utilization rate for plant. Therefore, this study implies the significance of keeping element dynamic balance in the alpine tundra ecosystem of Changbai Mountains.
机译:包括Rh在内的主要植物群落中的元素循环。金黄色研究了中国东北长白山高山冻原带中的红草和越桔。结果表明,凋落物分解的元素数量少于植物从土壤中吸收的元素,但是植物吸收的元素含量却高于矿化过程释放的土壤。另一方面,在包括降水输入和土壤淋溶输出的开放系统中,由于降水中有大量元素进入开放系统,高山冻原生态系统中的元素循环(N,P除外)处于动态平衡。在这项研究中,还发现植物的不同器官在积累元素方面存在显着差异。钙,镁,磷和氮在叶中的积累更为明显,而铁在根中。植物的同一器官的不同组织中元素的浓度程度也不同,叶肉中的钙,镁,磷和氮的浓度高于神经,而铁则相反。这种现象表明:(1)不同元素的生化功能多种多样;(2)叶肉中的元素的转换周期比神经或纤维中的元素更短,但对植物的利用率更高。因此,这项研究暗示了在长白山的高山冻原生态系统中保持元素动态平衡的重要性。

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