Literature DB >> 34030316

Legacy effects of temporary grassland in annual crop rotation on soil ecosystem services.

Kevin Hoeffner1, Anneke Beylich2, Abad Chabbi3, Daniel Cluzeau4, Dumitrita Dascalu5, Ulfert Graefe2, Gema Guzmán6, Vincent Hallaire7, Jörg Hanisch8, Blanca B Landa6, Deborah Linsler9, Safya Menasseri7, Maarja Öpik10, Martin Potthoff9, Mignon Sandor5, Stefan Scheu8, Rüdiger M Schmelz2, Ilka Engell9, Stefan Schrader11, Tanel Vahter10, Martin Banse12, Annegret Nicolaï13, Elke Plaas14, Tania Runge12, Tomas Roslin15, Marie-Laure Decau16, Siim-Kaarel Sepp10, Luis F Arias-Giraldo6, Sylvain Busnot7, Marc Roucaute7, Guénola Pérès7.   

Abstract

The introduction of temporary grassland into an annual crop rotation is recognized to improve soil ecosystem services, and resulting legacies can be beneficial for the following crops. In this context, the aim of the present study was to evaluate legacy effects of introducing temporary grassland into an annual crop rotation on five ecosystem services (i) soil structure maintenance (aggregate stability), (ii) water regulation (saturated hydraulic conductivity), (iii) biodiversity conservation (microbial biomass and microbial metabolic activity, as well as microorganism, enchytraeid, springtail and earthworm communities), (iv) pathogen regulation (soil suppressiveness to Verticillium dahliae), and (v) forage production and quality. Three crop rotation schemes, maintained for twelve years, were compared in four random blocks, one being an annual crop rotation without grassland (0%), another with a medium percentage of grassland (50%, corresponding to 3 years of continuous grassland in the crop rotation), and a third one with a high percentage of grassland in the crop rotation (75%, corresponding to 6 years of continuous grassland in the crop rotation). The results showed that the grassland introduction into an annual crop rotation improved, whatever the duration of the grassland, soil structure maintenance and biodiversity conservation, while it decreased pathogen regulation and did not modify water regulation. Comparing the two crop rotations that included grassland, indicated a stronger beneficial grassland legacy effect for the higher proportion of grassland concerning soil structure maintenance and biodiversity conservation. By contrast, water regulation, pathogen regulation and forage production were not affected by the legacy of the 75% grassland during the rotation. Overall, our findings demonstrated the extent to which grassland legacies are affecting the current state of soil properties and possible ecosystem services provided. To improve ecosystem services, soil management should take legacy effects into account and consider longer timeframes to apply beneficial practices.
Copyright © 2021 Elsevier B.V. All rights reserved.

Entities:  

Keywords:  Aggregate stability; Ecosystem functioning; Saturated hydraulic conductivity; Soil biota; Soil suppressiveness; Yield

Year:  2021        PMID: 34030316     DOI: 10.1016/j.scitotenv.2021.146140

Source DB:  PubMed          Journal:  Sci Total Environ        ISSN: 0048-9697            Impact factor:   7.963


  1 in total

1.  Mapping vegetation species succession in a mountainous grassland ecosystem using Landsat, ASTER MI, and Sentinel-2 data.

Authors:  Efosa Gbenga Adagbasa; Geofrey Mukwada
Journal:  PLoS One       Date:  2022-01-26       Impact factor: 3.240

  1 in total

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