Effects of wildfire and logging on soil functionality in the short-term in Pinus halepensis M. forests
Salvage logging is thought to have negative impacts on soil functionality because it may increase soil compaction and reduce vegetation cover and soil organic matter content. We investigated whether and to what extent burning and subsequent logging initially altered soil functionality of a Mediterra...
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Published in | European journal of forest research Vol. 139; no. 6; pp. 935 - 945 |
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Main Authors | , , , , , , , , , |
Format | Journal Article |
Language | English |
Published |
Berlin/Heidelberg
Springer Berlin Heidelberg
01.12.2020
Springer Nature B.V |
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Abstract | Salvage logging is thought to have negative impacts on soil functionality because it may increase soil compaction and reduce vegetation cover and soil organic matter content. We investigated whether and to what extent burning and subsequent logging initially altered soil functionality of a Mediterranean forest of
Pinus halepensis
M. Soil functionality indicators (e.g. soil enzyme activities, basal soil respiration, glomalin-related soil protein, and microbial carbon) were measured in March and October 2017 in unburned forest plots, nearby plots severely burned by wildfire in July 2016, and nearby burned plots severely burned by wildfire and then logged in December 2016 using a lightweight agricultural tractor. The results showed significant differences among three groups: unburned soils sampled in spring (1) and autumn (2), and burned soils (not subject or subject to logging) sampled in spring and autumn. In unburned plots, seasonality had a significant effect, which disappeared in burned plots regardless of whether they had been logged. The burned plots had higher content of organic matter and total nitrogen than the unburned soils but they were not correlated to higher soil respiration or microbial biomass. There were not any differences in any of the soil functionality indicators between the unlogged and logged burned plots. In addition, the burned plots had a higher glomalin-related soil protein content than the unburned soil in the autumn measurement. Overall, the results suggest a short-term wildfire impact of soil properties whereas logging using a lightweight tractor produced no significant impacts in this sparse Mediterranean pine forest. |
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AbstractList | Salvage logging is thought to have negative impacts on soil functionality because it may increase soil compaction and reduce vegetation cover and soil organic matter content. We investigated whether and to what extent burning and subsequent logging initially altered soil functionality of a Mediterranean forest of Pinus halepensis M. Soil functionality indicators (e.g. soil enzyme activities, basal soil respiration, glomalin-related soil protein, and microbial carbon) were measured in March and October 2017 in unburned forest plots, nearby plots severely burned by wildfire in July 2016, and nearby burned plots severely burned by wildfire and then logged in December 2016 using a lightweight agricultural tractor. The results showed significant differences among three groups: unburned soils sampled in spring (1) and autumn (2), and burned soils (not subject or subject to logging) sampled in spring and autumn. In unburned plots, seasonality had a significant effect, which disappeared in burned plots regardless of whether they had been logged. The burned plots had higher content of organic matter and total nitrogen than the unburned soils but they were not correlated to higher soil respiration or microbial biomass. There were not any differences in any of the soil functionality indicators between the unlogged and logged burned plots. In addition, the burned plots had a higher glomalin-related soil protein content than the unburned soil in the autumn measurement. Overall, the results suggest a short-term wildfire impact of soil properties whereas logging using a lightweight tractor produced no significant impacts in this sparse Mediterranean pine forest. Salvage logging is thought to have negative impacts on soil functionality because it may increase soil compaction and reduce vegetation cover and soil organic matter content. We investigated whether and to what extent burning and subsequent logging initially altered soil functionality of a Mediterranean forest of Pinus halepensis M. Soil functionality indicators (e.g. soil enzyme activities, basal soil respiration, glomalin-related soil protein, and microbial carbon) were measured in March and October 2017 in unburned forest plots, nearby plots severely burned by wildfire in July 2016, and nearby burned plots severely burned by wildfire and then logged in December 2016 using a lightweight agricultural tractor. The results showed significant differences among three groups: unburned soils sampled in spring (1) and autumn (2), and burned soils (not subject or subject to logging) sampled in spring and autumn. In unburned plots, seasonality had a significant effect, which disappeared in burned plots regardless of whether they had been logged. The burned plots had higher content of organic matter and total nitrogen than the unburned soils but they were not correlated to higher soil respiration or microbial biomass. There were not any differences in any of the soil functionality indicators between the unlogged and logged burned plots. In addition, the burned plots had a higher glomalin-related soil protein content than the unburned soil in the autumn measurement. Overall, the results suggest a short-term wildfire impact of soil properties whereas logging using a lightweight tractor produced no significant impacts in this sparse Mediterranean pine forest. |
Author | Ortega, R. Miralles, I. Plaza-Álvarez, P. A. Zema, D. A. González-Romero, J. Lucas-Borja, Manuel E. Peña-Molina, E. Moya, D. Wagenbrenner, J. W. de las Heras, J. |
Author_xml | – sequence: 1 givenname: Manuel E. orcidid: 0000-0001-6270-8408 surname: Lucas-Borja fullname: Lucas-Borja, Manuel E. email: ManuelEsteban.Lucas@uclm.es organization: Higher Technical School of Agricultural and Forestry Engineering, Castilla-La Mancha University – sequence: 2 givenname: R. surname: Ortega fullname: Ortega, R. organization: Department of Agronomy and Centre for Intensive Mediterranean Agrosystems and Agri-Food Biotechnology (CIAIMBITAL), University of Almeria – sequence: 3 givenname: I. surname: Miralles fullname: Miralles, I. organization: Department of Agronomy and Centre for Intensive Mediterranean Agrosystems and Agri-Food Biotechnology (CIAIMBITAL), University of Almeria – sequence: 4 givenname: P. A. surname: Plaza-Álvarez fullname: Plaza-Álvarez, P. A. organization: Higher Technical School of Agricultural and Forestry Engineering, Castilla-La Mancha University – sequence: 5 givenname: J. surname: González-Romero fullname: González-Romero, J. organization: Higher Technical School of Agricultural and Forestry Engineering, Castilla-La Mancha University – sequence: 6 givenname: E. surname: Peña-Molina fullname: Peña-Molina, E. organization: Higher Technical School of Agricultural and Forestry Engineering, Castilla-La Mancha University – sequence: 7 givenname: D. surname: Moya fullname: Moya, D. organization: Higher Technical School of Agricultural and Forestry Engineering, Castilla-La Mancha University – sequence: 8 givenname: D. A. surname: Zema fullname: Zema, D. A. organization: Department AGRARIA, Mediterranean University of Reggio Calabria – sequence: 9 givenname: J. W. surname: Wagenbrenner fullname: Wagenbrenner, J. W. organization: USDA Forest Service, Pacific Southwest Research Station – sequence: 10 givenname: J. surname: de las Heras fullname: de las Heras, J. organization: Higher Technical School of Agricultural and Forestry Engineering, Castilla-La Mancha University |
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Keywords | High-severity fire Salvage logging Soil organic matter Soil respiration Soil enzyme Mediterranean forest |
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Snippet | Salvage logging is thought to have negative impacts on soil functionality because it may increase soil compaction and reduce vegetation cover and soil organic... |
SourceID | proquest crossref springer |
SourceType | Aggregation Database Enrichment Source Index Database Publisher |
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SubjectTerms | Agricultural equipment Autumn Biomedical and Life Sciences Burning Coniferous forests Enzymatic activity Forestry Forests Indicators Life Sciences Lightweight Logging microbial biomass microbial carbon Microorganisms Organic matter Original Paper Pinus halepensis Plant Ecology Plant Sciences protein content Proteins Respiration Seasonal variations Soil compaction soil enzymes Soil investigations Soil organic matter Soil properties soil respiration Spring Spring (season) total nitrogen tractors Vegetation cover Wildfires |
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Title | Effects of wildfire and logging on soil functionality in the short-term in Pinus halepensis M. forests |
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