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Water vapor from deep soil reservoirs as a viable water source for plants in sandy soils

土壤水分 水蒸气 环境科学 土层 水文学(农业) 辐射 农学 蒸腾作用 蒸汽压 水流 含水量 护根物 地表水 化学 水源 土壤科学 DNS根区域 限制 孔隙水压力 环境化学 阶段(地层学) 用水效率 用水 包气带 焊剂(冶金)
作者
Simran Sekhri,Volker Kleinschmidt,Annette Eschenbach,Joscha N. Becker
出处
期刊:Soil & Tillage Research [Elsevier BV]
卷期号:256: 106887-106887
标识
DOI:10.1016/j.still.2025.106887
摘要

In sandy soils, the formation of a dry soil layer creates a capillary barrier that restricts the upward flow of water, thereby limiting its availability to plants. Under such conditions, the water from deeper soil reservoirs may reach the root zone primarily as vapor. It is currently unknown if plants can utilize this water vapor and if there are management possibilities that could enhance the respective water vapor uptake. This study investigates the potential for water vapor uptake in Vigna radiata under controlled drought conditions. Ten-to-fifteen-day old saplings were introduced into columns with sandy soil, that was separated from a water reservoir by a capillary barrier and a root impermeable mesh (50 µm). Treatments included unplanted and planted columns (with and without mulch), with an additional set of planted columns comparing plant survival in the presence or absence of the water vapor source. Cryo-extraction and liquid water isotopic analysis ( δ 2 H ) of saplings, soil layers (0–5, 5–10 and 10–15 cm) and vapor condensates revealed differential deuterium enrichment, indicating upward vapor flux and plant uptake of water vapor. Plants with access to water vapor source exhibited an extended survival of ∼ 2.7 days under drought. Mulching further amplified the effectiveness of vapor availability by 38.2 % through reduced surface evaporation, thereby extending the plant survival by ∼4.5 days, compared to planted treatment with no vapor source. These findings provide evidence that plants can access water from a spatially separated water reservoir under conditions permitting only water vapor movement and suggest that agronomic practices such as mulching could enhance this process in semi-arid regions. • Vigna radiata saplings survived longer when exposed to a spatially separated water vapor source. • Mulch reduced surface evaporation while enhancing top soil moisture, influencing plant water availability and survival. • Differential deuterium distribution across the soil column indicates the upward flux of water vapor originating from the spatially separated deep water reservoir and its potential uptake by saplings.
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