[口头报告]Contrasting desert species-specific response mechanisms of deep roots water uptake pattern to groundwater depth and precipitation

Contrasting desert species-specific response mechanisms of deep roots water uptake pattern to groundwater depth and precipitation
编号:1519 稿件编号:181 访问权限:私有 更新:2023-04-10 17:40:49 浏览:650次 口头报告

报告开始:2023年05月07日 10:42 (Asia/Shanghai)

报告时间:10min

所在会议:[15C] 15C、水文地球科学 » [15C-1] 15C-1 水文地球科学

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摘要
Water transport processes and multiple feedbacks within the groundwater-soil-vegetation-atmosphere (climate) continuum in arid ecosystems is a worldwide frontier hotspot in eco-hydrological field particularly under the global warming. Within, how the deep (fine) roots of desert vegetation with high plasticity response to deep soil water status and groundwater depth when facing excepted increasing available water stress is remain unclear. Focusing on this and using multivariate linear mixing method based on natural 2H isotope, we examined species-specific entire roots water uptake behaviors (stretching the whole unsaturated zone) along the groundwater depth gradient within the critic range of 2 m to 4 m, and tested the performance and suitability of natural water isotopes for quantitatively partitioning vegetation water sources.
   The observations showed that the three desert species investigated physically develop contrasting roots water uptake patterns, making a certain compromise of niche, which allow for their coexistence. The grass species Phragmites prefers to tap GW as well as deep soil moisture and tends to take the lead in launching deeper roots water uptake activities in response to poor available water conditions, while the shrub species favor meteorological water and shallow soil water and do in shallower roots. Among, shrub Kalidium’s ecological plasticity and adaption and environmental tradeoff are the most.
   This study has implications for further disentangling the surface eco-hydrological processes and feedbacks in arid regions, and of raised significance under the global change and the double carbon goal.
关键字
Deep roots water uptake,Groundwater,Arid desert ecosystem,Ecological plasticity,Natural water isotope
报告人
董海彪
中国地质科学院水文地质环境地质研究所

稿件作者
董海彪 中国地质科学院水文地质环境地质研究所
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徐 鹏(13554674258;xupengwhu@whu.edu.cn)
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王伦澈(13349889828;wang@cug.edu.cn)
庄艳华(13349889826;zhuang@apm.ac.cn)
李星华(15527964369;lixinghua5540@whu.edu.cn)
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赵 林(18071070948;linzhao@whu.edu.cn)
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