Warming and nitrogen addition increase litter decomposition in a temperate meadow ecosystem.

Litter decomposition greatly influences soil structure, nutrient content and carbon sequestration, but how litter decomposition is affected by climate change is still not well understood.A field experiment with increased temperature and nitrogen (N) addition was established in April 2007 to examine...

Full description

Bibliographic Details
Main Authors: Shiwei Gong, Rui Guo, Tao Zhang, Jixun Guo
Format: Article
Language:English
Published: Public Library of Science (PLoS) 2015-01-01
Series:PLoS ONE
Online Access:http://europepmc.org/articles/PMC4361180?pdf=render
id doaj-ad67b167a79f454a91a64df5c0b60ce2
record_format Article
spelling doaj-ad67b167a79f454a91a64df5c0b60ce22020-11-24T21:49:08ZengPublic Library of Science (PLoS)PLoS ONE1932-62032015-01-01103e011601310.1371/journal.pone.0116013Warming and nitrogen addition increase litter decomposition in a temperate meadow ecosystem.Shiwei GongRui GuoTao ZhangJixun GuoLitter decomposition greatly influences soil structure, nutrient content and carbon sequestration, but how litter decomposition is affected by climate change is still not well understood.A field experiment with increased temperature and nitrogen (N) addition was established in April 2007 to examine the effects of experimental warming, N addition and their interaction on litter decomposition in a temperate meadow steppe in northeastern China. Warming, N addition and warming plus N addition reduced the residual mass of L. chinensis litter by 3.78%, 7.51% and 4.53%, respectively, in 2008 and 2009, and by 4.73%, 24.08% and 16.1%, respectively, in 2010. Warming, N addition and warming plus N addition had no effect on the decomposition of P. communis litter in 2008 or 2009, but reduced the residual litter mass by 5.58%, 15.53% and 5.17%, respectively, in 2010. Warming and N addition reduced the cellulose percentage of L. chinensis and P. communis, specifically in 2010. The lignin percentage of L. chinensis and P. communis was reduced by warming but increased by N addition. The C, N and P contents of L. chinensis and P. communis litter increased with time. Warming and N addition reduced the C content and C:N ratios of L. chinensis and P. communis litter, but increased the N and P contents. Significant interactive effects of warming and N addition on litter decomposition were observed (P<0.01).The litter decomposition rate was highly correlated with soil temperature, soil water content and litter quality. Warming and N addition significantly impacted the litter decomposition rate in the Songnen meadow ecosystem, and the effects of warming and N addition on litter decomposition were also influenced by the quality of litter. These results highlight how climate change could alter grassland ecosystem carbon, nitrogen and phosphorus contents in soil by influencing litter decomposition.http://europepmc.org/articles/PMC4361180?pdf=render
collection DOAJ
language English
format Article
sources DOAJ
author Shiwei Gong
Rui Guo
Tao Zhang
Jixun Guo
spellingShingle Shiwei Gong
Rui Guo
Tao Zhang
Jixun Guo
Warming and nitrogen addition increase litter decomposition in a temperate meadow ecosystem.
PLoS ONE
author_facet Shiwei Gong
Rui Guo
Tao Zhang
Jixun Guo
author_sort Shiwei Gong
title Warming and nitrogen addition increase litter decomposition in a temperate meadow ecosystem.
title_short Warming and nitrogen addition increase litter decomposition in a temperate meadow ecosystem.
title_full Warming and nitrogen addition increase litter decomposition in a temperate meadow ecosystem.
title_fullStr Warming and nitrogen addition increase litter decomposition in a temperate meadow ecosystem.
title_full_unstemmed Warming and nitrogen addition increase litter decomposition in a temperate meadow ecosystem.
title_sort warming and nitrogen addition increase litter decomposition in a temperate meadow ecosystem.
publisher Public Library of Science (PLoS)
series PLoS ONE
issn 1932-6203
publishDate 2015-01-01
description Litter decomposition greatly influences soil structure, nutrient content and carbon sequestration, but how litter decomposition is affected by climate change is still not well understood.A field experiment with increased temperature and nitrogen (N) addition was established in April 2007 to examine the effects of experimental warming, N addition and their interaction on litter decomposition in a temperate meadow steppe in northeastern China. Warming, N addition and warming plus N addition reduced the residual mass of L. chinensis litter by 3.78%, 7.51% and 4.53%, respectively, in 2008 and 2009, and by 4.73%, 24.08% and 16.1%, respectively, in 2010. Warming, N addition and warming plus N addition had no effect on the decomposition of P. communis litter in 2008 or 2009, but reduced the residual litter mass by 5.58%, 15.53% and 5.17%, respectively, in 2010. Warming and N addition reduced the cellulose percentage of L. chinensis and P. communis, specifically in 2010. The lignin percentage of L. chinensis and P. communis was reduced by warming but increased by N addition. The C, N and P contents of L. chinensis and P. communis litter increased with time. Warming and N addition reduced the C content and C:N ratios of L. chinensis and P. communis litter, but increased the N and P contents. Significant interactive effects of warming and N addition on litter decomposition were observed (P<0.01).The litter decomposition rate was highly correlated with soil temperature, soil water content and litter quality. Warming and N addition significantly impacted the litter decomposition rate in the Songnen meadow ecosystem, and the effects of warming and N addition on litter decomposition were also influenced by the quality of litter. These results highlight how climate change could alter grassland ecosystem carbon, nitrogen and phosphorus contents in soil by influencing litter decomposition.
url http://europepmc.org/articles/PMC4361180?pdf=render
work_keys_str_mv AT shiweigong warmingandnitrogenadditionincreaselitterdecompositioninatemperatemeadowecosystem
AT ruiguo warmingandnitrogenadditionincreaselitterdecompositioninatemperatemeadowecosystem
AT taozhang warmingandnitrogenadditionincreaselitterdecompositioninatemperatemeadowecosystem
AT jixunguo warmingandnitrogenadditionincreaselitterdecompositioninatemperatemeadowecosystem
_version_ 1725889321165127680