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Temperature Sensitivity of Topsoil Organic Matter Decomposition Does Not Depend on Vegetation Types in Mountains

Rising air temperatures caused by global warming affects microbial decomposition rate of soil organic matter (SOM). The temperature sensitivity of SOM decomposition (Q(10)) may depend on SOM quality determined by vegetation type. In this study, we selected a long transect (3.6 km) across the five ec...

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Autores principales: Komarova, Alexandra, Ivashchenko, Kristina, Sushko, Sofia, Zhuravleva, Anna, Vasenev, Vyacheslav, Blagodatsky, Sergey
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9611105/
https://www.ncbi.nlm.nih.gov/pubmed/36297788
http://dx.doi.org/10.3390/plants11202765
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author Komarova, Alexandra
Ivashchenko, Kristina
Sushko, Sofia
Zhuravleva, Anna
Vasenev, Vyacheslav
Blagodatsky, Sergey
author_facet Komarova, Alexandra
Ivashchenko, Kristina
Sushko, Sofia
Zhuravleva, Anna
Vasenev, Vyacheslav
Blagodatsky, Sergey
author_sort Komarova, Alexandra
collection PubMed
description Rising air temperatures caused by global warming affects microbial decomposition rate of soil organic matter (SOM). The temperature sensitivity of SOM decomposition (Q(10)) may depend on SOM quality determined by vegetation type. In this study, we selected a long transect (3.6 km) across the five ecosystems and short transects (0.1 km) from grazed and ungrazed meadows to forests in the Northwest Caucasus to consider different patterns in Q(10) changes at shift of the vegetation belts. It is hypothesized that Q(10) will increase along altitudinal gradient in line with recalcitrance of SOM according to kinetics-based theory. The indicators of SOM quality (BR:C, respiration per unit of soil C; MBC:C, ratio of microbial biomass carbon to soil carbon; soil C:N ratio) were used for checking the hypothesis. It was shown that Q(10) did not differ across vegetation types within long and short transects, regardless differences in projective cover (14–99%) and vegetation species richness (6–12 units per plot). However, Q(10) value differed between the long and short transects by almost two times (on average 2.4 vs. 1.4). Such a difference was explained by environmental characteristics linked with terrain position (slope steepness, microclimate, and land forms). The Q(10) changes across studied slopes were driven by BR:C for meadows (R(2) = 0.64; negative relationship) and pH value for forests (R(2) = 0.80; positive relationship). Thus, proxy of SOM quality explained Q(10) variability only across mountain meadows, whereas for forests, soil acidity was the main driver of microbial activity.
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spelling pubmed-96111052022-10-28 Temperature Sensitivity of Topsoil Organic Matter Decomposition Does Not Depend on Vegetation Types in Mountains Komarova, Alexandra Ivashchenko, Kristina Sushko, Sofia Zhuravleva, Anna Vasenev, Vyacheslav Blagodatsky, Sergey Plants (Basel) Communication Rising air temperatures caused by global warming affects microbial decomposition rate of soil organic matter (SOM). The temperature sensitivity of SOM decomposition (Q(10)) may depend on SOM quality determined by vegetation type. In this study, we selected a long transect (3.6 km) across the five ecosystems and short transects (0.1 km) from grazed and ungrazed meadows to forests in the Northwest Caucasus to consider different patterns in Q(10) changes at shift of the vegetation belts. It is hypothesized that Q(10) will increase along altitudinal gradient in line with recalcitrance of SOM according to kinetics-based theory. The indicators of SOM quality (BR:C, respiration per unit of soil C; MBC:C, ratio of microbial biomass carbon to soil carbon; soil C:N ratio) were used for checking the hypothesis. It was shown that Q(10) did not differ across vegetation types within long and short transects, regardless differences in projective cover (14–99%) and vegetation species richness (6–12 units per plot). However, Q(10) value differed between the long and short transects by almost two times (on average 2.4 vs. 1.4). Such a difference was explained by environmental characteristics linked with terrain position (slope steepness, microclimate, and land forms). The Q(10) changes across studied slopes were driven by BR:C for meadows (R(2) = 0.64; negative relationship) and pH value for forests (R(2) = 0.80; positive relationship). Thus, proxy of SOM quality explained Q(10) variability only across mountain meadows, whereas for forests, soil acidity was the main driver of microbial activity. MDPI 2022-10-19 /pmc/articles/PMC9611105/ /pubmed/36297788 http://dx.doi.org/10.3390/plants11202765 Text en © 2022 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Communication
Komarova, Alexandra
Ivashchenko, Kristina
Sushko, Sofia
Zhuravleva, Anna
Vasenev, Vyacheslav
Blagodatsky, Sergey
Temperature Sensitivity of Topsoil Organic Matter Decomposition Does Not Depend on Vegetation Types in Mountains
title Temperature Sensitivity of Topsoil Organic Matter Decomposition Does Not Depend on Vegetation Types in Mountains
title_full Temperature Sensitivity of Topsoil Organic Matter Decomposition Does Not Depend on Vegetation Types in Mountains
title_fullStr Temperature Sensitivity of Topsoil Organic Matter Decomposition Does Not Depend on Vegetation Types in Mountains
title_full_unstemmed Temperature Sensitivity of Topsoil Organic Matter Decomposition Does Not Depend on Vegetation Types in Mountains
title_short Temperature Sensitivity of Topsoil Organic Matter Decomposition Does Not Depend on Vegetation Types in Mountains
title_sort temperature sensitivity of topsoil organic matter decomposition does not depend on vegetation types in mountains
topic Communication
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9611105/
https://www.ncbi.nlm.nih.gov/pubmed/36297788
http://dx.doi.org/10.3390/plants11202765
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