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Earthworm Burrowing Activity and Its Effects on Soil Hydraulic Properties under Different Soil Moisture Conditions from the Loess Plateau, China

Shuhai Wen, Mingan Shao, Jiao Wang

2020Sustainability18 citationsDOIOpen Access PDF

Abstract

Earthworm activity has become more important in the Loess Plateau, where hydrological processes are crucial for ecosystem sustainability. In this study, we conducted a laboratory microcosm experiment to determine the various burrowing activities of Eisenia fetida and their impact on the soil hydraulic properties in response to different levels of soil moisture (50%, 70%, 90% of field capacity) in two common soil types (loessial and Lou soil) obtained from the Loess Plateau. Burrowing activity of E. fetida increased with higher soil moisture and was greater in loessial than in Lou soil. Most burrowing activities occurred within the top 5 cm and decreased with increasing soil depth. Macropores and burrow branching, which are highly related to the earthworm burrowing, were more prevalent in wetter soil. Earthworms significantly altered the formation of large soil aggregates (AGL, diameter >2 mm) under different soil moistures and depths. Distinct earthworm burrowing activities, controlled by soil moisture, altered soil hydraulic properties. However, soil saturated hydraulic conductivity (Ks) showed little differences between different treatments due to the horizontal and high–branched burrows of E. fetida, although higher burrowing activities were found in wetter soil. Soil field capacity was highest in drier soil due to the less macropores and burrowing activities.

Topics & Concepts

MacroporeEarthwormEnvironmental scienceHydraulic conductivityWater contentSoil scienceSoil waterBurrowInfiltration (HVAC)Field capacityPedotransfer functionEcologyGeologyChemistryGeotechnical engineeringBiologyGeographyCatalysisMesoporous materialBiochemistryMeteorologySoil Carbon and Nitrogen DynamicsRangeland and Wildlife ManagementInvertebrate Taxonomy and Ecology
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