Water Retention by Superabsorbent Polymers Enhances Tree Seedling Establishment but Is Insufficient for Survival Under Drought Conditions

苗木 萎蔫 农学 环境科学 含水量 土壤水分 高吸水性高分子 柏树 蒸散量 用水 永久萎蔫点 水分 保水性 耐旱性 播种 水势 农业 根系 灌溉 园艺 磁场容量 用水效率 蓄水
作者
Masamichi Takahashi,Hiroshi Tanaka,Moriyoshi Ishizuka,Seiichi Ohta,Akio Akama,Izumi Kosaka
出处
期刊:Ecohydrology [Wiley]
卷期号:18 (7)
标识
DOI:10.1002/eco.70118
摘要

ABSTRACT Amid worsening drought conditions driven by climate change, water‐retaining soil amendments are increasingly needed. This study aimed to examine the characteristics of plant‐available water in soil amended with a superabsorbent polymer (SAP) under two distinct treatments: (1) seedling growth with intermittent watering after planting (watering period) and (2) time to wilting and death following the cessation of watering (drought period). Japanese cedar ( Cryptomeria japonica ), a water‐demanding species, and drought‐tolerant Japanese cypress ( Chamaecyparis obtusa) were planted in pots containing sandy soil mixed with four levels of SAP. During the watering period, higher SAP addition rates led to increased soil moisture content and water potential. Seedlings exhibited elevated evapotranspiration rates and enhanced growth, particularly in fine root development. In the drought treatment, soil moisture and water potential declined rapidly. The median time to death was extended by up to 12 days for cedar and 3 days for cypress compared to the control. SAP effects were more pronounced in cedar than in cypress. Most of the water retained in SAP‐amended soils was categorised as high‐potential, immediately available water (> −38 kPa). Conversely, the amount of readily available water (−38 to −98 kPa) decreased, whereas hardly available water (< −98 kPa) remained unchanged. In conclusion, SAP amendments promoted fine root development and improved survival in water‐demanding cedar but had limited effects on the drought‐tolerant cypress. To better address drought risks in seedling planting, the development of SAPs with enhanced water retention, especially at lower water potentials, is necessary to meet practical expectations.

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