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Altitudinal Gradient of Microbial Biomass Phosphorus and Its Relationship with Microbial Biomass Carbon Nitrogen and Rhizosphere Soil Phosphorus on the Eastern Slope of Gongga Mountain SW China

机译:中国贡嘎山东坡微生物生物量磷的海拔梯度变化及其与微生物碳氮和根际土壤磷的关系

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摘要

Microbial biomass phosphorus (MBP) is one of the most active forms of phosphorus (P) in soils. MBP plays an important role in the biogeochemical P cycle. To explore MBP distribution and its relationship with other factors, the MBP and rhizosphere soil P concentrations and fractions in six vegetation zones on the eastern slope of Gongga Mountain in SW China were investigated. The MBP distribution followed a parabolic pattern with altitude and the concentration was highest in the subalpine dark coniferous forest (SDC) zone, which was approximately 3500 m above sea level (asl). Below 3500 m asl, the MBP distribution was controlled by precipitation and vegetation type. In addition, temperature, precipitation and vegetation type controlled the MBP distribution at elevations above 3500 m asl. No specific distribution pattern was determined regarding rhizosphere soil P fractions. However, MBP was significantly correlated with the unavailable P fraction in the rhizosphere rather than with the available P fraction. This result suggests that the relationships between the rhizosphere soil P fractions and the MBP depend on time. The microbial biomass element ratios were relatively consistent on the eastern slope of Gongga Mountain. However, variations in the microbial biomass element rations were observed in six of the vegetation zones. The mean C:N:P ratio was 9.0∶1.3∶1. Overall, vegetation type resulted in the observed fluctuations of the microbial biomass element ratio.
机译:微生物生物量磷(MBP)是土壤中最活跃的磷(P)形式之一。 MBP在生物地球化学P循环中起着重要作用。为了探讨MBP的分布及其与其他因素的关系,研究了中国西南贡嘎山东坡6个植被带的MBP和根际土壤磷含量及其组成。 MBP分布随海拔呈抛物线型分布,其浓度在亚高山暗针叶林(SDC)区最高,其海拔约3500 m。在3500 m asl以下,MBP分布受降水和植被类型控制。此外,温度,降水和植被类型控制了海拔海拔3500 m以上的MBP分布。对于根际土壤中的P含量,没有确定具体的分布模式。但是,MBP与根际中不可用的P分数显着相关,而不是与可用的P分数显着相关。该结果表明,根际土壤P含量与MBP之间的关系取决于时间。贡嘎山东坡微生物量元素比值相对一致。然而,在六个植被区中观察到微生物生物量元素比率的变化。 C:N:P平均比为9.0∶1.3∶1。总体而言,植被类型导致观察到的微生物生物量元素比率的波动。

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  • 期刊名称 other
  • 作者单位
  • 年(卷),期 -1(8),9
  • 年度 -1
  • 页码 e72952
  • 总页数 10
  • 原文格式 PDF
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  • 入库时间 2022-08-21 11:21:04

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