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中国西北沙漠地区沿降水梯度的灌丛沙丘水分利用策略的变化

Variations in water use strategies of at coppice dunes along a precipitation gradient in desert regions of northwest China.

作者信息

Xu Yanqin, Zhao Hui, Zhou Binqian, Dong Zhengwu, Li Guangying, Li Shengyu

机构信息

School of Life Sciences, Xinjiang Normal University, Urumqi, China.

Xinjiang Key Laboratory of Special Species Conservation and Regulatory Biology, School of Life Sciences, Xinjiang Normal University, Urumqi, China.

出版信息

Front Plant Sci. 2024 Jul 31;15:1408943. doi: 10.3389/fpls.2024.1408943. eCollection 2024.

Abstract

INTRODUCTION

The precipitation pattern has changed significantly in arid desert areas, yet it is not clear how the water use strategies of Tamarix ramosissima Ledeb. on coppice dunes along a natural precipitation gradient are affected.

METHODS

In this study, the hydrogen and oxygen isotope compositions of xylem water, soil water, precipitation, and groundwater were measured by stable isotope techniques in Huocheng, Mosuowan, and Tazhong. Additionally, the water use strategies of natural precipitation gradient were investigated in conjunction with the MixSIAR model.

RESULTS

The results indicated that the water sources of T. ramosissima exhibited significant variation from semi-arid to hyper-arid areas. In semi-arid areas, T. ramosissima mainly absorbed shallow, shallow-middle, and middle soil water; however, T. ramosissima shifted its primary water sources to middle and deep soil water in arid areas. In hyper-arid areas, it mainly utilized deep soil water and groundwater. In contrast, the water source contribution rate of T. ramosissima exhibited relative uniformity across each layer in an arid area. Notably, in hyper-arid areas, the proportion of groundwater by T. ramosissima was significantly high, reaching 60.2%. This is due to the relatively shallow groundwater supplementing the deep soil water content in the area. In conclusion, the proportion of shallow soil water decreased by 14.7% for T. ramosissima from semi-arid to hyper-arid areas, illustrating the occurrence of a gradual shift in potential water sources utilized by T. ramosissima from shallow to deep soil water and groundwater.

DISCUSSION

Therefore, T. ramosissima on coppice dunes shows flexible water use strategies in relation to precipitation and groundwater, reflecting its strong environmental adaptability. The findings hold significant implications for the conservation of water resources and vegetation restoration in arid areas.

摘要

引言

干旱沙漠地区的降水模式已发生显著变化,但尚不清楚多枝柽柳(Tamarix ramosissima Ledeb.)在沿自然降水梯度的灌丛沙丘上的水分利用策略是如何受到影响的。

方法

在本研究中,采用稳定同位素技术,在霍城、莫索湾和塔中测量了木质部水、土壤水、降水和地下水的氢氧同位素组成。此外,结合MixSIAR模型研究了自然降水梯度下的水分利用策略。

结果

结果表明,多枝柽柳的水源在半干旱区到极端干旱区呈现出显著变化。在半干旱区,多枝柽柳主要吸收浅层、浅中层和中层土壤水;然而,在干旱区,多枝柽柳的主要水源转向中层和深层土壤水。在极端干旱区,它主要利用深层土壤水和地下水。相比之下,多枝柽柳在干旱区各层的水源贡献率表现出相对均匀性。值得注意的是,在极端干旱区,多枝柽柳利用的地下水比例显著较高,达到60.2%。这是由于该地区相对浅层的地下水补充了深层土壤水分。总之,多枝柽柳从半干旱区到极端干旱区利用的浅层土壤水比例下降了14.7%,说明多枝柽柳利用的潜在水源从浅层土壤水逐渐转向深层土壤水和地下水。

讨论

因此,灌丛沙丘上的多枝柽柳在降水和地下水方面表现出灵活的水分利用策略,反映了其较强的环境适应性。这些发现对干旱地区水资源保护和植被恢复具有重要意义。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8dac/11325590/907d9469b13e/fpls-15-1408943-g001.jpg

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