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首页> 外文期刊>Plant and Soil >Litter decomposition rate and nutrient dynamics of giant ragweed (Ambrosia trifida L.) in the non-native habitat of South Korea
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Litter decomposition rate and nutrient dynamics of giant ragweed (Ambrosia trifida L.) in the non-native habitat of South Korea

机译:在韩国非本土栖息地的巨型豚草(Ambrosia Trifida L.)的凋落物分解率和营养动态

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摘要

Aim Ambrosia trifida L. is designated as an invasive exotic plants in South Korea. Despite its widespread distribution in South Korea, research on A. trifida is limited. Organic matter input by A. trifida litter decomposition is predicted to change the soil environment. In this study, we investigated the effects of A. trifida litter decomposition on soil nutrient status. Methods We used the litterbag method to investigate the decomposition rate, decay constant (k), carbon/nitrogen (C/N) ratio, and nutrient dynamics of A. trifida litter during decomposition. Results The decay constants (k) of leaf, stem, and root litter after 11 months of decomposition were 1.93, 1.47, and 1.28, respectively. After 22 months of decomposition, the decay constants (k) of leaf, stem, and root litter were 1.01, 0.99 and 1.84, respectively. After 22 months, approximately 85% of organic matter, 79% of nitrogen (N), 98% of phosphorus (P), 96% of potassium (K), 96% of magnesium (Mg), and 69% of calcium (Ca) were returned to the soil. Conclusion Our results provide key insights into the nutrients exchange between A. trifida and soil. Given the biological characteristics of A. trifida, the input of a large amount of organic matter to the soil and the nutrients released through the decomposition of this organic matter are expected to enhance the growth and nutrient absorption of A. trifida in invaded areas.
机译:AIM Ambrosia Trifida L.被指定为韩国的侵入性异国情调的植物。尽管在韩国广泛分布,但对A. Trifida的研究有限。通过A的有机质输入。预测Trifida凋落物分解改变土壤环境。在这项研究中,我们研究了A. Trifida凋落物分解对土壤养分状况的影响。方法采用垃圾箱方法研究分解期间A. Trifida凋落物的分解速率,衰减常数(k),碳/氮(C / N)比和营养动态。结果11个月分解后叶,茎和根凋落物的衰变常数(k)分别为1.93,1.47和1.28。 22个月的分解后,叶片,茎和根垫片的衰变常数(k)分别为1.01,0.99和1.84。 22个月后,约85%的有机物,79%的氮(n),磷(p)的98%,钾(k)的96%,镁(mg)的96%(mg)和69%的钙(Ca )返回土壤。结论我们的结果提供了对A. Trifida和土壤之间的营养物质交换的关键见解。鉴于A. Trifida的生物学特征,预期通过分解该有机物质释放的土壤的大量有机物的输入和释放的营养物质增强A. Trifida在入侵地区的生长和营养吸收。

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