...
首页> 外文期刊>Biogeosciences >Soil microbial nutrient constraints along a tropical forest elevation gradient: a belowground test of a biogeochemical paradigm
【24h】

Soil microbial nutrient constraints along a tropical forest elevation gradient: a belowground test of a biogeochemical paradigm

机译:热带森林海拔梯度上的土壤微生物养分约束:生物地球化学范式的地下测试

获取原文
获取原文并翻译 | 示例

摘要

Aboveground primary productivity is widely considered to be limited by phosphorus (P) availability in lowland tropical forests and by nitrogen (N) availability in montane tropical forests. However, the extent to which this paradigm applies to belowground processes remains unresolved. We measured indices of soil microbial nutrient status in lowland, sub-montane and montane tropical forests along a natural gradient spanning 3400m in elevation in the Peruvian Andes. With increasing elevation there were marked increases in soil concentrations of total N, total P, and readily exchangeable P, but a decrease in N mineralization determined by in situ resin bags. Microbial carbon (C) and N increased with increasing elevation, but microbial C : N: P ratios were relatively constant, suggesting homeostasis. The activity of hydrolytic enzymes, which are rich in N, decreased with increasing elevation, while the ratio of enzymes involved in the acquisition of N and P increased with increasing elevation, further indicating an increase in the relative demand for N compared to P with increasing elevation. We conclude that soil microorganisms shift investment in nutrient acquisition from P to N between lowland and montane tropical forests, suggesting that different nutrients regulate soil microbial metabolism and the soil carbon balance in these ecosystems.
机译:人们普遍认为,地上初级生产力受到低地热带森林中磷(P)的可用性和山地热带森林中氮(N)可用性的限制。但是,这种范例在地下过程中的适用范围仍未解决。我们在秘鲁安第斯山脉海拔3400m的自然梯度上测量了低地,山地和山地热带森林中土壤微生物养分的状况。随着海拔的升高,土壤中的总氮,总磷和易于交换的磷的浓度显着增加,但通过原位树脂袋测定的氮矿化度降低。微生物碳(C)和氮随着海拔的升高而增加,但微生物C:N:P的比例相对恒定,表明体内平衡。富含N的水解酶的活性随着海拔的升高而降低,而参与获取N和P的酶的比例则随着海拔的升高而增加,这进一步表明与P相比,与P相比,对N的相对需求量有所增加海拔。我们得出结论,在低地和山地热带森林之间,土壤微生物将养分获取的投资从P转移到N,这表明在这些生态系统中,不同的养分调节土壤微生物的代谢和土壤碳平衡。

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