首页> 外文期刊>Soil Biology & Biochemistry >The distribution of volatile isoprenoids in the soil horizons around Pinus halepensis trees
【24h】

The distribution of volatile isoprenoids in the soil horizons around Pinus halepensis trees

机译:松树周围土壤层中挥发性类异戊二烯的分布

获取原文
获取原文并翻译 | 示例
           

摘要

We measured the terpene concentration in pentane and water extracts from soil horizons (litter, organic, top and low mineral) and from roots growing in top and low mineral horizons on a distance gradient from Pinus halepensis L. trees growing alone on a grassland. Terpene concentrations in pentane were higher than in water extracts, although beta -caryophyllene showed relatively high solubility in water. The litter and roots were important sources of terpenes in soil. Alpha-pinene dominated in roots growing in both "top" (A1) and "low" (B) mineral horizons (123 +/- 36 mu g g super(-1) or 14 +/- 5 mg m super(-2)) and roots in low mineral horizon (270 +/- 91 mu g g super(-1) or 7 +/- 2 mg m super(-2)). Beta-caryophyllene dominated in litter (1469 +/- 331 mu g g super(- 1) or 2004 +/- 481 mg m super(-2)). Terpene concentration in soil decreased with increasing distance to the trunk. This is likely to be related to changes in litter and roots type on the distance gradient from pine to grass and herbs. The relative contributions of all compounds, except alpha -pinene, were similar in the mineral soils and litter. This suggests that litter of P. halepensis is probably the main source of major terpene compounds. However, long-term emissions of alpha -pinene from P. halepensis roots might also contribute to alpha -pinene concentrations in rhizosphere soils.
机译:我们测量了从土壤层(凋落物,有机层,顶部和低矿层)以及在顶部和较低矿层中生长的根的戊烷和水提取物中的萜烯浓度,该根距与单独生长在草地上的松树的距离梯度。戊烷中的萜烯浓度高于水提取物中的萜烯浓度,尽管β-石竹烯在水中的溶解度较高。凋落物和根是土壤中萜烯的重要来源。在“顶部”(A1)和“底部”(B)矿层(123 +/- 36 mu gg super(-1)或14 +/- 5 mg m super(-2))中生长的根中,α-pine烯占主导地位)和低矿物水平(270 +/- 91 mu gg super(-1)或7 +/- 2 mg m super(-2))的根。 β-石竹烯在垃圾中占主导地位(1469 +/- 331μg超级(-1)或2004 +/- 481 mg m超级(-2))。土壤中的萜烯浓度随着到树干距离的增加而降低。这可能与从松树到草木和草药的距离梯度上的凋落物和根系类型的变化有关。除α-pine烯外,所有化合物在矿物土壤和枯枝落叶中的相对贡献均相似。这表明P. halepensis的凋落物可能是主要萜化合物的主要来源。但是,长期从P. halepensis根中排放的α-pine烯也可能有助于根际土壤中的α-pine烯浓度。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号