Publication:
Responses of Soil Water Potential and Plant Physiological Status to Pulsed Rainfall Events in Arid Northwestern China: Implications for Disclosing the Water-use Strategies of Desert Plants

Loading...
Thumbnail Image

Institution Authors

Item type:Person,
Yetemen, Ömer
Doktor Ogretim uyesi

Advisor

Department

Journal Title

Journal ISSN

Volume Title

Publisher

Springer Science and Business Media LLC

Type

Research Projects

Organizational Units

Journal Issue

Abstract

<title>Abstract</title> <p>Soil water potential (SWP) strongly influences plant productivity and ecosystem functioning, particularly in arid regions characterized by sporadic and pulsed rainfall. This work aims to improve understanding of the response of SWP to varied rainfall pulses, and of the water-use strategies of a typical desert plant (<italic>Haloxylon ammodendron</italic>, HA) in arid northwestern China. Rainfall manipulation experiments and field measurements on HA were undertaken to explore the response features of SWP and plant physiological status to pulsed rainfall events of varied magnitudes and durations. The response value of SWP increased with rainfall magnitude, and was most affected by three vital factors (antecedent SWP, total rainfall, and rainfall intensity). Low antecedent SWP amplifies SWP's sensitivity to subsequent events, accelerating its response to smaller rainfalls (&lt; 5 mm) compared to larger ones (&gt; 15 mm). Small rainfall can increase SWP by 0.5-2 MPa in the 20-cm layer, sustaining plant physiological activities under high antecedent SWP conditions (&gt; 3.5 MPa), and thus improving the water use efficiency and drought resistance of HA. Therefore, small events play a vital role in maintaining SWP and promoting water use of desert plants. Given the nature of plants' utilization of small rainfall events, re-examining ecologically valid SWP thresholds of HA and other similar desert plants is critical.</p>

Description

Journal or Series

Ecohydrology

ISSN

1936-0584

ISBN

Rights

OPEN

Keywords

Arid, Soil Moisture, FOS: Mechanical engineering, Plant Science, Soil Reinforcement, Mechanical Effects of Plant Roots on Slope Stability, Agricultural and Biological Sciences, Engineering, Soil water, Global and Planetary Change, Water content, Geography, Desert climate, Ecology, Soil Water Retention, Life Sciences, Geology, Hydrology (agriculture), Water resource management, FOS: Philosophy, ethics and religion, Habitat, Archaeology, Plant Responses to Flooding Stress, Physical Sciences, China, Mechanics and Transport in Unsaturated Soils, Environmental Engineering, Ecosystem Resilience, Epistemology, Thermal Effects on Soil, Environmental science, Deserts and xeric shrublands, Haloxylon ammodendron, Soil Water Characteristic, Agroforestry, Biology, Ecosystem, Civil and Structural Engineering, Soil science, Global Forest Drought Response and Climate Change, Mechanical Engineering, FOS: Environmental engineering, Desert (philosophy), FOS: Earth and related environmental sciences, Remote Sensing of Soil Moisture, Agronomy, Philosophy, Geotechnical engineering, Soil Hydraulic Properties, FOS: Biological sciences, Environmental Science

Citation

Collections

Endorsement

Review

Supplemented By

Referenced By

Related Patent

Related Goal

Altmetric
Dimensions
PlumX Metrikleri
BIP! Indicators
Google Scholar
Scholar'da Ara ↗