首页> 外文期刊>Marine ecology progress series >Nitrogen uptake by the shoots of smooth cordgrass Spartina alterniflora
【24h】

Nitrogen uptake by the shoots of smooth cordgrass Spartina alterniflora

机译:光滑草苔互花米草的芽对氮的吸收

获取原文
           

摘要

ABSTRACT: The smooth cordgrass Spartina alterniflora is the foundation species in intertidal salt marshes of the North American Atlantic coast. Depending on its elevation within the marsh, S. alterniflora may be submerged for several hours per day. Previous ecosystem-level studies have demonstrated that S. alterniflora marshes are a net sink for nitrogen (N), and that removal of N from flooding tidal water can provide enough N to support the aboveground biomass. However, studies have not specifically investigated whether S. alterniflora plants assimilate nutrients through their aboveground tissue. We determined in situ foliar and stem N uptake kinetics for 15NH4, 15NO3, and  15N-glycine by artificially flooding plants in a mid-Atlantic salt marsh. To determine the ecological importance of shoot uptake, a model was created to estimate the time of inundation of S. alterniflora in 20 cm height intervals during the growing season. Estimates of inundation time, shoot mass, N uptake rates, and N availability from long-term data sets were used to model seasonal shoot N uptake. Rates of aboveground N uptake rates (leaves + stems) were ranked as follows: NH4+ glycine NO3–. Our model suggests that shoot N uptake may satisfy up to 15% of the growing season N demand in mid-Atlantic salt marshes, with variation depending on plant elevation and water column N availability. However, in eutrophic estuaries, our model indicates the potential of the plant canopy as a nutrient filter, with shoot uptake contributing 66 to 100% of plant N demand.
机译:摘要:光滑的草食草互花米草是北美大西洋沿岸潮间带盐沼的基础物种。根据其在沼泽中的海拔, S。互花米草可能每天浸没几个小时。先前的生态系统级研究表明, S。互花米草沼泽是氮(N)的净汇,从潮汐洪水中去除氮可以提供足够的氮来支撑地上的生物量。但是,研究还没有专门研究是否存在S。互花米草植物通过其地上的组织吸收养分。我们确定了 15 NH 4 , 15 NO 3 < / sub>和 15 N-甘氨酸通过在大西洋中部盐沼中人工淹没植物来实现。为了确定枝条吸收的生态重要性,创建了一个模型来估计 S的淹没时间。在生长期以20厘米的高度间隔生插花。长期数据集中的淹没时间,枝条质量,氮素吸收率和氮素利用率的估算值用于模拟季节性氮素吸收量。地上氮吸收率(叶+茎)的排名如下:NH 4 + NO 3 – < / sup>。我们的模型表明,在大西洋中部盐沼中,枝条氮的吸收量最多可满足生长季氮素需求的15%,其变化取决于植物的海拔高度和水柱中氮的有效性。但是,在富营养化河口,我们的模型表明了植物冠层作为养分过滤器的潜力,枝条的吸收占植物N需求的66%至100%。

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