Response of ecosystem respiration to warming and grazing during the growing seasons in the alpine meadow on the Tibetan plateau

► We conducted a first of field-manipulative warming and grazing experiment from 2006 to 2008. ► Warming and grazing did not affect seasonal average ecosystem respiration (Re). ► Warming significantly increased seasonal average soil respiration (Rs) by 9.2% in 2007. ► Soil temperature explained 63-8...

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Published inAgricultural and forest meteorology Vol. 151; no. 7; pp. 792 - 802
Main Authors Lin, Xingwu, Zhang, Zhenhua, Wang, Shiping, Hu, Yigang, Xu, Guangping, Luo, Caiyun, Chang, Xiaofeng, Duan, Jichuang, Lin, Qiaoyan, Xu, Burenbayin, Wang, Yanfen, Zhao, Xinquan, Xie, Zubin
Format Journal Article
LanguageEnglish
Published Amsterdam Elsevier B.V 15.07.2011
Elsevier
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Abstract ► We conducted a first of field-manipulative warming and grazing experiment from 2006 to 2008. ► Warming and grazing did not affect seasonal average ecosystem respiration (Re). ► Warming significantly increased seasonal average soil respiration (Rs) by 9.2% in 2007. ► Soil temperature explained 63-83% of seasonal Re variations and 19-34% of Rs variations. ► Warming and grazing reduced the Q 10 value of Re in 2007 and 2008 but did not affect the Q 10 value of Rs. Intensive studies reveal that there is much uncertainty regarding how ecosystem and soil respiration will respond to warming and grazing, especially in the alpine meadow ecosystem. We conducted a first of its kind field-manipulative warming and grazing experiment in an alpine meadow on the Tibetan plateau to determine the effects of warming and grazing on ecosystem and soil respiration for 3-years, from 2006 to 2008. Generally, warming and grazing did not affect seasonal average ecosystem respiration (Re), and there was no interaction between grazing and warming. However, they significantly affected the Re early in the growing season and by the end of the growing season. Warming significantly increased seasonal average soil respiration (Rs) by 9.2%, whereas the difference mainly resulted from data gathered early in the growing season, before June 2007. Positive correlations between soil temperature and Re and Rs were observed, and soil temperature explained 63–83% of seasonal Re variations during the 3-year study and 19–34% of Rs variations in 2007. Seasonal Re in 2008 and Rs in 2007 were slightly negatively correlated to soil moisture, but interannual average Re decreased with a decrease in precipitation for all treatments. Warming and grazing reduced the Q 10 value of Re in 2007 and 2008 but did not affect the Q 10 value of Rs. The Q 10 values of Rs were much lower than the Q 10 values of Re in 2007. These results suggest that grazing may reduce the temperature sensitivity of Re and that Re was mainly controlled by soil temperature rather than moisture which varied with timescale in the alpine meadow.
AbstractList Intensive studies reveal that there is much uncertainty regarding how ecosystem and soil respiration will respond to warming and grazing, especially in the alpine meadow ecosystem. We conducted a first of its kind field-manipulative warming and grazing experiment in an alpine meadow on the Tibetan plateau to determine the effects of warming and grazing on ecosystem and soil respiration for 3-years, from 2006 to 2008. Generally, warming and grazing did not affect seasonal average ecosystem respiration (Re), and there was no interaction between grazing and warming. However, they significantly affected the Re early in the growing season and by the end of the growing season. Warming significantly increased seasonal average soil respiration (Rs) by 9.2%, whereas the difference mainly resulted from data gathered early in the growing season, before June 2007. Positive correlations between soil temperature and Re and Rs were observed, and soil temperature explained 63-83% of seasonal Re variations during the 3-year study and 19-34% of Rs variations in 2007. Seasonal Re in 2008 and Rs in 2007 were slightly negatively correlated to soil moisture, but interannual average Re decreased with a decrease in precipitation for all treatments. Warming and grazing reduced the Q 10 value of Re in 2007 and 2008 but did not affect the Q 10 value of Rs. The Q 10 values of Rs were much lower than the Q 10 values of Re in 2007. These results suggest that grazing may reduce the temperature sensitivity of Re and that Re was mainly controlled by soil temperature rather than moisture which varied with timescale in the alpine meadow.
Intensive studies reveal that there is much uncertainty regarding how ecosystem and soil respiration will respond to warming and grazing, especially in the alpine meadow ecosystem. We conducted a first of its kind field-manipulative warming and grazing experiment in an alpine meadow on the Tibetan plateau to determine the effects of warming and grazing on ecosystem and soil respiration for 3-years, from 2006 to 2008. Generally, warming and grazing did not affect seasonal average ecosystem respiration (Re), and there was no interaction between grazing and warming. However, they significantly affected the Re early in the growing season and by the end of the growing season. Warming significantly increased seasonal average soil respiration (Rs) by 9.2%, whereas the difference mainly resulted from data gathered early in the growing season, before June 2007. Positive correlations between soil temperature and Re and Rs were observed, and soil temperature explained 63–83% of seasonal Re variations during the 3-year study and 19–34% of Rs variations in 2007. Seasonal Re in 2008 and Rs in 2007 were slightly negatively correlated to soil moisture, but interannual average Re decreased with a decrease in precipitation for all treatments. Warming and grazing reduced the Q₁₀ value of Re in 2007 and 2008 but did not affect the Q₁₀ value of Rs. The Q₁₀ values of Rs were much lower than the Q₁₀ values of Re in 2007. These results suggest that grazing may reduce the temperature sensitivity of Re and that Re was mainly controlled by soil temperature rather than moisture which varied with timescale in the alpine meadow.
► We conducted a first of field-manipulative warming and grazing experiment from 2006 to 2008. ► Warming and grazing did not affect seasonal average ecosystem respiration (Re). ► Warming significantly increased seasonal average soil respiration (Rs) by 9.2% in 2007. ► Soil temperature explained 63-83% of seasonal Re variations and 19-34% of Rs variations. ► Warming and grazing reduced the Q 10 value of Re in 2007 and 2008 but did not affect the Q 10 value of Rs. Intensive studies reveal that there is much uncertainty regarding how ecosystem and soil respiration will respond to warming and grazing, especially in the alpine meadow ecosystem. We conducted a first of its kind field-manipulative warming and grazing experiment in an alpine meadow on the Tibetan plateau to determine the effects of warming and grazing on ecosystem and soil respiration for 3-years, from 2006 to 2008. Generally, warming and grazing did not affect seasonal average ecosystem respiration (Re), and there was no interaction between grazing and warming. However, they significantly affected the Re early in the growing season and by the end of the growing season. Warming significantly increased seasonal average soil respiration (Rs) by 9.2%, whereas the difference mainly resulted from data gathered early in the growing season, before June 2007. Positive correlations between soil temperature and Re and Rs were observed, and soil temperature explained 63–83% of seasonal Re variations during the 3-year study and 19–34% of Rs variations in 2007. Seasonal Re in 2008 and Rs in 2007 were slightly negatively correlated to soil moisture, but interannual average Re decreased with a decrease in precipitation for all treatments. Warming and grazing reduced the Q 10 value of Re in 2007 and 2008 but did not affect the Q 10 value of Rs. The Q 10 values of Rs were much lower than the Q 10 values of Re in 2007. These results suggest that grazing may reduce the temperature sensitivity of Re and that Re was mainly controlled by soil temperature rather than moisture which varied with timescale in the alpine meadow.
Author Xu, Guangping
Lin, Xingwu
Wang, Yanfen
Hu, Yigang
Wang, Shiping
Zhao, Xinquan
Duan, Jichuang
Lin, Qiaoyan
Zhang, Zhenhua
Chang, Xiaofeng
Luo, Caiyun
Xie, Zubin
Xu, Burenbayin
Author_xml – sequence: 1
  givenname: Xingwu
  surname: Lin
  fullname: Lin, Xingwu
  organization: State Key Laboratory of Soil and Sustainable Agriculture, Institute of Soil Science, Chinese Academy of Sciences, Nanjing 210008, China
– sequence: 2
  givenname: Zhenhua
  surname: Zhang
  fullname: Zhang, Zhenhua
  organization: Key Laboratory of Adaptation and Evolution of Plateau Biota, Northwest Institute of Plateau Biology, Chinese Academy of Sciences, Xining 810008, China
– sequence: 3
  givenname: Shiping
  surname: Wang
  fullname: Wang, Shiping
  email: wangship2008@yahoo.cn
  organization: Key Laboratory of Tibetan Environment Changes and Land Surface Processes, Institute of Tibetan Plateau Research, Chinese Academy of Sciences, Beijing 100085, China
– sequence: 4
  givenname: Yigang
  surname: Hu
  fullname: Hu, Yigang
  organization: Cold and Arid Regions Environmental and Engineering Research Institute, Chinese Academy of Sciences, Lanzhou 730000, China
– sequence: 5
  givenname: Guangping
  surname: Xu
  fullname: Xu, Guangping
  organization: Guangxi Institute of Botany, Chinese Academy of Sciences, Guangxi 541006, China
– sequence: 6
  givenname: Caiyun
  surname: Luo
  fullname: Luo, Caiyun
  organization: Key Laboratory of Adaptation and Evolution of Plateau Biota, Northwest Institute of Plateau Biology, Chinese Academy of Sciences, Xining 810008, China
– sequence: 7
  givenname: Xiaofeng
  surname: Chang
  fullname: Chang, Xiaofeng
  organization: Key Laboratory of Adaptation and Evolution of Plateau Biota, Northwest Institute of Plateau Biology, Chinese Academy of Sciences, Xining 810008, China
– sequence: 8
  givenname: Jichuang
  surname: Duan
  fullname: Duan, Jichuang
  organization: Key Laboratory of Adaptation and Evolution of Plateau Biota, Northwest Institute of Plateau Biology, Chinese Academy of Sciences, Xining 810008, China
– sequence: 9
  givenname: Qiaoyan
  surname: Lin
  fullname: Lin, Qiaoyan
  organization: Key Laboratory of Adaptation and Evolution of Plateau Biota, Northwest Institute of Plateau Biology, Chinese Academy of Sciences, Xining 810008, China
– sequence: 10
  givenname: Burenbayin
  surname: Xu
  fullname: Xu, Burenbayin
  organization: Key Laboratory of Adaptation and Evolution of Plateau Biota, Northwest Institute of Plateau Biology, Chinese Academy of Sciences, Xining 810008, China
– sequence: 11
  givenname: Yanfen
  surname: Wang
  fullname: Wang, Yanfen
  organization: Graduate University, Chinese Academy of Sciences, Beijing 100049, China
– sequence: 12
  givenname: Xinquan
  surname: Zhao
  fullname: Zhao, Xinquan
  organization: Key Laboratory of Adaptation and Evolution of Plateau Biota, Northwest Institute of Plateau Biology, Chinese Academy of Sciences, Xining 810008, China
– sequence: 13
  givenname: Zubin
  surname: Xie
  fullname: Xie, Zubin
  organization: State Key Laboratory of Soil and Sustainable Agriculture, Institute of Soil Science, Chinese Academy of Sciences, Nanjing 210008, China
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ContentType Journal Article
Copyright 2011 Elsevier B.V.
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Issue 7
Keywords Warming
Climate change
Ecosystem respiration
Tibetan plateau
Grazing
Soil respiration
Soil temperature and moisture
Alpine meadow
Grassland
Biometeorology
Growing season
Physical environment
Alpine grasslands
Temperate zone
Ecosystem
Humidity
Soil science
Property of soil
Physical properties
Biological activity
Dynamical climatology
Thermal properties
Response
Alpine vegetation
Thermal condition
Qinghai-Xizang Plateau
Soil temperature
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Snippet ► We conducted a first of field-manipulative warming and grazing experiment from 2006 to 2008. ► Warming and grazing did not affect seasonal average ecosystem...
Intensive studies reveal that there is much uncertainty regarding how ecosystem and soil respiration will respond to warming and grazing, especially in the...
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SubjectTerms Agricultural and forest climatology and meteorology. Irrigation. Drainage
Agronomy. Soil science and plant productions
Alpine meadow
alpine meadows
Animal and plant ecology
Animal, plant and microbial ecology
Biochemistry and biology
Biological and medical sciences
Chemical, physicochemical, biochemical and biological properties
Climate change
correlation
Ecosystem respiration
Ecosystems
Forests
Fundamental and applied biological sciences. Psychology
General agronomy. Plant production
Grazing
growing season
Physics, chemistry, biochemistry and biology of agricultural and forest soils
plateaus
Precipitation
Respiration
seasonal variation
Seasons
Soil (material)
Soil respiration
Soil science
Soil temperature
Soil temperature and moisture
soil water
Synecology
Tibetan plateau
uncertainty
Warming
Title Response of ecosystem respiration to warming and grazing during the growing seasons in the alpine meadow on the Tibetan plateau
URI https://dx.doi.org/10.1016/j.agrformet.2011.01.009
https://www.proquest.com/docview/1420122151
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Volume 151
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