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Climate-dependent plant responses to earthworms in two land-use types

Qun Liu; Nico Eisenhauer; Stefan Scheu; Gerrit Angst; Miriam Bücker; Yuanyuan Huang; Travis B. Meador; Martin Schädler
Oecologia · Vol. 204, Issue 1 · pp. 133-146 · 2024

Abstract

Plant nutrient uptake and productivity are driven by a multitude of factors that have been modified by human activities, like climate change and the activity of decomposers. However, interactive effects of climate change and key decomposer groups like earthworms have rarely been studied. In a field microcosm experiment, we investigated the effects of a mean future climate scenario with warming (+ 0.50 °C to + 0.62 °C) and altered precipitation (+ 10% in spring and autumn, − 20% in summer) and earthworms (anecic—two Lumbricus terrestris , endogeic—four Allolobophora chlorotica and both together within 10 cm diameter tubes) on plant biomass and stoichiometry in two land-use types (intensively used meadow and conventional farming). We found little evidence for earthworm effects on aboveground biomass. However, future climate increased above- (+40.9%) and belowground biomass (+44.7%) of grass communities, which was mainly driven by production of the dominant Festulolium species during non-summer drought periods, but decreased the aboveground biomass (− 36.9%) of winter wheat. Projected climate change and earthworms interactively affected the N content and C:N ratio of grasses. Earthworms enhanced the N content (+1.2%) thereby decreasing the C:N ratio (− 4.1%) in grasses, but only under ambient climate conditions. The future climate treatment generally decreased the N content of grasses (aboveground: − 1.1%, belowground: − 0.15%) and winter wheat (− 0.14%), resulting in an increase in C:N ratio of grasses (aboveground: + 4.2%, belowground: +6.3%) and wheat (+5.9%). Our results suggest that climate change diminishes the positive effects of earthworms on plant nutrient uptakes due to soil water deficit, especially during summer drought.

Bibliographic Information

JournalOecologia
PublisherSpringer
Publication Date2024-01-01
Publication Year2024
Volume204
Issue1
Pages133-146
Document TypeJournal Article
Print ISSN0029-8549
eISSN1432-1939
DOI10.1007/s00442-023-05493-9

Access Information

NARA Access Coverage1968-01-01~Current
Journal Homepagehttps://www.springer.com/journal/442
Publisher PageOpen Publisher Page
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