Literature DB >> 32562506

Rhizosphere control of soil nitrogen cycling: a key component of plant economic strategies.

Ludovic Henneron1,2,3, Paul Kardol2, David A Wardle2,4, Camille Cros1, Sébastien Fontaine1.   

Abstract

Understanding how plant species influence soil nutrient cycling is a major theme in terrestrial ecosystem ecology. However, the prevailing paradigm has mostly focused on litter decomposition, while rhizosphere effects on soil organic matter (SOM) decomposition have attracted little attention. Using a dual 13 C/15 N labeling approach in a 'common garden' glasshouse experiment, we investigated how the economic strategies of 12 grassland plant species (graminoids, forbs and legumes) drive soil nitrogen (N) cycling via rhizosphere processes, and how this in turn affects plant N acquisition and growth. Acquisitive species with higher photosynthesis, carbon rhizodeposition and N uptake than conservative species induced a stronger acceleration of soil N cycling through rhizosphere priming of SOM decomposition. This allowed them to take up larger amounts of N and allocate it above ground to promote photosynthesis, thereby sustaining their faster growth. The N2 -fixation ability of legumes enhanced rhizosphere priming by promoting photosynthesis and rhizodeposition. Our study demonstrates that the economic strategies of plant species regulate a plant-soil carbon-nitrogen feedback operating through the rhizosphere. These findings provide novel mechanistic insights into how plant species with contrasting economic strategies sustain their nutrition and growth through regulating the cycling of nutrients by soil microbes in their rhizosphere.
© 2020 The Authors. New Phytologist © 2020 New Phytologist Foundation.

Entities:  

Keywords:  decomposition; leaf and root traits; nutrient cycling; photosynthesis; plant economics spectrum; plant-soil interactions; rhizodeposition; rhizosphere priming effect

Mesh:

Substances:

Year:  2020        PMID: 32562506     DOI: 10.1111/nph.16760

Source DB:  PubMed          Journal:  New Phytol        ISSN: 0028-646X            Impact factor:   10.151


  8 in total

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5.  Dual inoculation of dark septate endophytes and Trichoderma viride drives plant performance and rhizosphere microbiome adaptations of Astragalus mongholicus to drought.

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7.  Selection pressure on the rhizosphere microbiome can alter nitrogen use efficiency and seed yield in Brassica rapa.

Authors:  Joshua Garcia; Maria Gannett; LiPing Wei; Liang Cheng; Shengyuan Hu; Jed Sparks; James Giovannoni; Jenny Kao-Kniffin
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8.  Thawing Yedoma permafrost is a neglected nitrous oxide source.

Authors:  M E Marushchak; J Kerttula; K Diáková; A Faguet; J Gil; G Grosse; C Knoblauch; N Lashchinskiy; P J Martikainen; A Morgenstern; M Nykamb; J G Ronkainen; H M P Siljanen; L van Delden; C Voigt; N Zimov; S Zimov; C Biasi
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  8 in total

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