Effects of clonal integration on microbial community composition and processes in the rhizosphere of the stoloniferous herb Glechoma longituba (Nakai) Kuprian.

The effects of rhizodeposition on soil C and N availabilities lead to substantial changes of microbial community composition and processes in the rhizosphere of plants. Under heterogeneous light, photosynthates can be translocated or shared between exposed and shaded ramets by clonal integration. Cl...

Full description

Bibliographic Details
Main Authors: Ningfei Lei, Jun Li, Shijun Ni, Jinsong Chen
Format: Article
Language:English
Published: Public Library of Science (PLoS) 2014-01-01
Series:PLoS ONE
Online Access:http://europepmc.org/articles/PMC4171514?pdf=render
id doaj-dd0bf93d5b4e4f569900a35b3fc35c55
record_format Article
spelling doaj-dd0bf93d5b4e4f569900a35b3fc35c552020-11-24T22:08:08ZengPublic Library of Science (PLoS)PLoS ONE1932-62032014-01-0199e10825910.1371/journal.pone.0108259Effects of clonal integration on microbial community composition and processes in the rhizosphere of the stoloniferous herb Glechoma longituba (Nakai) Kuprian.Ningfei LeiJun LiShijun NiJinsong ChenThe effects of rhizodeposition on soil C and N availabilities lead to substantial changes of microbial community composition and processes in the rhizosphere of plants. Under heterogeneous light, photosynthates can be translocated or shared between exposed and shaded ramets by clonal integration. Clonal integration may enhance the rhizodeposition of the shaded ramets, which further influences nutrient recycling in their rhizosphere. To test the hypothesis, we conducted a pot experiment by the stoloniferous herb Glechoma longituba subjected to heterogeneous light. Microbial biomass and community composition in the rhizosphere of shaded offspring ramets, assessed by phospholipid fatty acids (PLFAs) analysis, were markedly altered by clonal integration. Clonal integration positively affected C, N availabilities, invertase and urease activities, N mineralization (Nmin) and nitrification rates (Nnitri) in the rhizosphere of shaded offspring ramets. However, an opposite pattern was also observed in phenoloxidase (POXase) and peroxidase (PODase) activities. Our results demonstrated that clonal integration facilitated N assimilation and uptake in the rhizosphere of shaded offspring ramets. The experiment provides insights into the mechanism of nutrient recycling mediated by clonal integration.http://europepmc.org/articles/PMC4171514?pdf=render
collection DOAJ
language English
format Article
sources DOAJ
author Ningfei Lei
Jun Li
Shijun Ni
Jinsong Chen
spellingShingle Ningfei Lei
Jun Li
Shijun Ni
Jinsong Chen
Effects of clonal integration on microbial community composition and processes in the rhizosphere of the stoloniferous herb Glechoma longituba (Nakai) Kuprian.
PLoS ONE
author_facet Ningfei Lei
Jun Li
Shijun Ni
Jinsong Chen
author_sort Ningfei Lei
title Effects of clonal integration on microbial community composition and processes in the rhizosphere of the stoloniferous herb Glechoma longituba (Nakai) Kuprian.
title_short Effects of clonal integration on microbial community composition and processes in the rhizosphere of the stoloniferous herb Glechoma longituba (Nakai) Kuprian.
title_full Effects of clonal integration on microbial community composition and processes in the rhizosphere of the stoloniferous herb Glechoma longituba (Nakai) Kuprian.
title_fullStr Effects of clonal integration on microbial community composition and processes in the rhizosphere of the stoloniferous herb Glechoma longituba (Nakai) Kuprian.
title_full_unstemmed Effects of clonal integration on microbial community composition and processes in the rhizosphere of the stoloniferous herb Glechoma longituba (Nakai) Kuprian.
title_sort effects of clonal integration on microbial community composition and processes in the rhizosphere of the stoloniferous herb glechoma longituba (nakai) kuprian.
publisher Public Library of Science (PLoS)
series PLoS ONE
issn 1932-6203
publishDate 2014-01-01
description The effects of rhizodeposition on soil C and N availabilities lead to substantial changes of microbial community composition and processes in the rhizosphere of plants. Under heterogeneous light, photosynthates can be translocated or shared between exposed and shaded ramets by clonal integration. Clonal integration may enhance the rhizodeposition of the shaded ramets, which further influences nutrient recycling in their rhizosphere. To test the hypothesis, we conducted a pot experiment by the stoloniferous herb Glechoma longituba subjected to heterogeneous light. Microbial biomass and community composition in the rhizosphere of shaded offspring ramets, assessed by phospholipid fatty acids (PLFAs) analysis, were markedly altered by clonal integration. Clonal integration positively affected C, N availabilities, invertase and urease activities, N mineralization (Nmin) and nitrification rates (Nnitri) in the rhizosphere of shaded offspring ramets. However, an opposite pattern was also observed in phenoloxidase (POXase) and peroxidase (PODase) activities. Our results demonstrated that clonal integration facilitated N assimilation and uptake in the rhizosphere of shaded offspring ramets. The experiment provides insights into the mechanism of nutrient recycling mediated by clonal integration.
url http://europepmc.org/articles/PMC4171514?pdf=render
work_keys_str_mv AT ningfeilei effectsofclonalintegrationonmicrobialcommunitycompositionandprocessesintherhizosphereofthestoloniferousherbglechomalongitubanakaikuprian
AT junli effectsofclonalintegrationonmicrobialcommunitycompositionandprocessesintherhizosphereofthestoloniferousherbglechomalongitubanakaikuprian
AT shijunni effectsofclonalintegrationonmicrobialcommunitycompositionandprocessesintherhizosphereofthestoloniferousherbglechomalongitubanakaikuprian
AT jinsongchen effectsofclonalintegrationonmicrobialcommunitycompositionandprocessesintherhizosphereofthestoloniferousherbglechomalongitubanakaikuprian
_version_ 1725817541826183168