首页> 外文期刊>Plant and Soil >Shoot pruning of a hedgerow perennial legume alters the availability and temporal dynamics of root-derived nitrogen in a subtropical setting
【24h】

Shoot pruning of a hedgerow perennial legume alters the availability and temporal dynamics of root-derived nitrogen in a subtropical setting

机译:在亚热带环境中,修剪多年生树篱的树篱可改变根源氮的有效性和时间动态

获取原文
获取原文并翻译 | 示例
           

摘要

There is increasing interest in the ecology of tree-based intercropping systems, particularly alley cropping, in temperate settings. Shoot pruning of the tree component is an integral practice to alley cropping. Shoot pruning likely results in an input of belowground C and N to soil, with potential, but unknown impacts on the time pattern of N availability. We evaluated the impacts of pruning of Amorpha fruticosa L. on (a) its root dynamics; (b) mineral N and microbial N, and (c) the fate of root-derived N and its importance in determining N availability. For this, we conducted repeated partial pruning and foliar labeling with 15N under field conditions in Georgia, USA. Pruning altered root dynamics by initially decreasing biomass and later preventing increases, likely due to root death. Pruning modified the time pattern of mineral N by substantially increasing concentrations during the 3 months following pruning. 15N labeling indicated that root-derived N was an important source of this extra N and that pruning caused the availability of root-derived N to microbes to be extended until the following growing season. Greater concentrations of mineral N, a greater pool of microbial N and prolonged microbial access and storage of root-derived N with pruning has the potential to positively impact system productivity.
机译:在温带地区,人们对基于树的间作系统(尤其是小巷种植)的生态学越来越感兴趣。修剪树木部分是胡同种植的必要方法。枝条修剪可能会导致土壤中地下C和N的输入,这可能会影响N可用性的时间模式,但影响未知。我们评估了修剪紫穗槐(Amorpha fruticosa L.)对其根系动力学的影响; (b)矿质氮和微生物氮,以及(c)根源氮的命运及其在确定氮利用率中的重要性。为此,我们在美国佐治亚州的田间条件下进行了重复的部分修剪和15 N的叶面标记。修剪通过最初减少生物量并随后防止增加(可能是由于根系死亡)而改变了根系动态。修剪通过在修剪后的三个月内大幅增加浓度来改变矿质氮的时间模式。 15 N标记表明,根源氮是这种额外氮的重要来源,并且修剪使根源氮对微生物的可用性延长到下一个生长季节。更高的矿质氮浓度,更大的微生物氮库以及延长的微生物获取和根系修剪氮的存储时间,对修剪有潜在的积极影响。

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