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首页> 外文期刊>Journal of forest research >Fine-root production in response to nutrient application at three forest plantations in Sabah, Malaysia: higher nitrogen and phosphorus demand by Acacia mangium
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Fine-root production in response to nutrient application at three forest plantations in Sabah, Malaysia: higher nitrogen and phosphorus demand by Acacia mangium

机译:马来西亚沙巴的三个人工林根系对养分施用的细根生产:马占相思对氮和磷的需求增加

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摘要

We measured fine-root production at Acacia mangium (AM), Swietenia macrophylla (SM), and Araucaria cunninghamii (AC) sites in response to nitrogen (N) and phosphorus (P) application using the root-ingrowth core method for a period of 5 months in Sabah, Malaysia. Root growth increased significantly using a combined N and P application at the AM site, whereas it did not increase at the SM and AC sites. The number of nodules at the AM site increased significantly following N application and the combined application of N and P. Root production was not significantly enhanced by nutrient application at the SM and AC sites. At the AM site, both P and N were in high demand despite a larger N pool compared with at the SM and AC sites. These results can be explained by the larger nutrient demand by legumes. We conclude that both N and P is limiting for AM plantations under natural conditions and that N fertilization may be more effective than expected, depending on the site conditions.
机译:我们使用根生长核心方法测量了相思树(AM),大叶Swietenia macrophylla(SM)和Araucaria cunninghamii(AC)站点响应氮(N)和磷(P)施用后的细根生产。在马来西亚沙巴州停留5个月。在AM施用N和P组合施用后,根的生长显着增加,而在SM和AC施用下根的生长没有增加。施氮和联合施氮和磷后,AM部位的根瘤数量显着增加。在SM和AC部位施用养分不会显着提高根系产量。在AM站点,尽管N库比SM和AC站点大,但对P和N的需求都很高。这些结果可以解释为豆类对营养的需求更大。我们得出的结论是,氮和磷都限制了自然条件下的AM种植,而氮肥的施肥可能比预期的更有效,具体取决于现场条件。

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