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Management effects on composition and dynamics of cutin and suberin in topsoil under agricultural use
Summary We identified and quantified specific biomarkers of shoots and roots (cutin and suberin‐derived compounds, respectively) of three grassland species (Dactylis glomerata L., Festuca arundinacea Schreb. and Lolium perenne L.) in soil under different land use (grass, crop and bare soil) of the S...
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Published in: | European journal of soil science 2016-07, Vol.67 (4), p.360-373 |
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creator | Armas-Herrera, C. M. Dignac, M.-F. Rumpel, C. Arbelo, C. D. Chabbi, A. |
description | Summary
We identified and quantified specific biomarkers of shoots and roots (cutin and suberin‐derived compounds, respectively) of three grassland species (Dactylis glomerata L., Festuca arundinacea Schreb. and Lolium perenne L.) in soil under different land use (grass, crop and bare soil) of the SOERE‐ACBB experimental site in Lusignan (France). We also investigated the fate of these markers in soil after conversion from grassland (C3 plants) to Zea mays L. (maize) (C4 plant) with natural 13C isotope abundances. Our results indicated that 9‐hydroxy hexadecanedioic acid and 8(9)(10),16‐dihydroxy hexadecanoic acid may be used as biomarkers for above‐ground biomass, whereas 1,22‐docosandioic acid, 22‐hydroxy docosanoic acid and 24‐hydroxy tetracosanoic acid might be the best below‐ground biomarkers for the plants investigated under the experimental conditions studied. The presence, concentration and shoot–root allocation pattern of these markers were different from those described for other species, which demonstrates the importance of verifying biomarker specificity for each species. Concentrations of cutin and suberin were largest in soil under maize and smallest under bare soil; this corresponded to the biomass added to the two soils. Suberin decreased by 40–64% and cutin by 24–40% during a 6‐year bare fallow, which indicates that root markers were more sensitive than shoot markers to degradation. Changes in 13C isotopic signatures of specific biomarkers after 6 years of maize showed a faster turnover of root than shoot biomarkers, in spite of the much smaller root inputs from maize than from grasses. The sequestration of suberin in soil was more rapid but less durable than that of cutin. |
doi_str_mv | 10.1111/ejss.12328 |
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We identified and quantified specific biomarkers of shoots and roots (cutin and suberin‐derived compounds, respectively) of three grassland species (Dactylis glomerata L., Festuca arundinacea Schreb. and Lolium perenne L.) in soil under different land use (grass, crop and bare soil) of the SOERE‐ACBB experimental site in Lusignan (France). We also investigated the fate of these markers in soil after conversion from grassland (C3 plants) to Zea mays L. (maize) (C4 plant) with natural 13C isotope abundances. Our results indicated that 9‐hydroxy hexadecanedioic acid and 8(9)(10),16‐dihydroxy hexadecanoic acid may be used as biomarkers for above‐ground biomass, whereas 1,22‐docosandioic acid, 22‐hydroxy docosanoic acid and 24‐hydroxy tetracosanoic acid might be the best below‐ground biomarkers for the plants investigated under the experimental conditions studied. The presence, concentration and shoot–root allocation pattern of these markers were different from those described for other species, which demonstrates the importance of verifying biomarker specificity for each species. Concentrations of cutin and suberin were largest in soil under maize and smallest under bare soil; this corresponded to the biomass added to the two soils. Suberin decreased by 40–64% and cutin by 24–40% during a 6‐year bare fallow, which indicates that root markers were more sensitive than shoot markers to degradation. Changes in 13C isotopic signatures of specific biomarkers after 6 years of maize showed a faster turnover of root than shoot biomarkers, in spite of the much smaller root inputs from maize than from grasses. The sequestration of suberin in soil was more rapid but less durable than that of cutin.</description><identifier>ISSN: 1351-0754</identifier><identifier>EISSN: 1365-2389</identifier><identifier>DOI: 10.1111/ejss.12328</identifier><language>eng</language><publisher>Oxford, UK: Blackwell Publishing Ltd</publisher><subject>Agricultural sciences ; Biodiversity and Ecology ; Dactylis glomerata ; Environmental Sciences ; Festuca arundinacea ; Life Sciences ; Lolium perenne ; Soil study ; Zea mays</subject><ispartof>European journal of soil science, 2016-07, Vol.67 (4), p.360-373</ispartof><rights>2016 British Society of Soil Science</rights><rights>Distributed under a Creative Commons Attribution 4.0 International License</rights><lds50>peer_reviewed</lds50><oa>free_for_read</oa><woscitedreferencessubscribed>false</woscitedreferencessubscribed><citedby>FETCH-LOGICAL-c4148-cc8f478796977f8deb90dee8cdd00a83834a6921d57400cec1bd8d5b41dabcf03</citedby><cites>FETCH-LOGICAL-c4148-cc8f478796977f8deb90dee8cdd00a83834a6921d57400cec1bd8d5b41dabcf03</cites><orcidid>0000-0001-6566-6944 ; 0000-0003-2131-9451</orcidid></display><links><openurl>$$Topenurl_article</openurl><openurlfulltext>$$Topenurlfull_article</openurlfulltext><thumbnail>$$Tsyndetics_thumb_exl</thumbnail><link.rule.ids>230,314,776,780,881,27903,27904</link.rule.ids><backlink>$$Uhttps://hal.sorbonne-universite.fr/hal-01306768$$DView record in HAL$$Hfree_for_read</backlink></links><search><creatorcontrib>Armas-Herrera, C. M.</creatorcontrib><creatorcontrib>Dignac, M.-F.</creatorcontrib><creatorcontrib>Rumpel, C.</creatorcontrib><creatorcontrib>Arbelo, C. D.</creatorcontrib><creatorcontrib>Chabbi, A.</creatorcontrib><title>Management effects on composition and dynamics of cutin and suberin in topsoil under agricultural use</title><title>European journal of soil science</title><addtitle>Eur J Soil Sci</addtitle><description>Summary
We identified and quantified specific biomarkers of shoots and roots (cutin and suberin‐derived compounds, respectively) of three grassland species (Dactylis glomerata L., Festuca arundinacea Schreb. and Lolium perenne L.) in soil under different land use (grass, crop and bare soil) of the SOERE‐ACBB experimental site in Lusignan (France). We also investigated the fate of these markers in soil after conversion from grassland (C3 plants) to Zea mays L. (maize) (C4 plant) with natural 13C isotope abundances. Our results indicated that 9‐hydroxy hexadecanedioic acid and 8(9)(10),16‐dihydroxy hexadecanoic acid may be used as biomarkers for above‐ground biomass, whereas 1,22‐docosandioic acid, 22‐hydroxy docosanoic acid and 24‐hydroxy tetracosanoic acid might be the best below‐ground biomarkers for the plants investigated under the experimental conditions studied. The presence, concentration and shoot–root allocation pattern of these markers were different from those described for other species, which demonstrates the importance of verifying biomarker specificity for each species. Concentrations of cutin and suberin were largest in soil under maize and smallest under bare soil; this corresponded to the biomass added to the two soils. Suberin decreased by 40–64% and cutin by 24–40% during a 6‐year bare fallow, which indicates that root markers were more sensitive than shoot markers to degradation. Changes in 13C isotopic signatures of specific biomarkers after 6 years of maize showed a faster turnover of root than shoot biomarkers, in spite of the much smaller root inputs from maize than from grasses. The sequestration of suberin in soil was more rapid but less durable than that of cutin.</description><subject>Agricultural sciences</subject><subject>Biodiversity and Ecology</subject><subject>Dactylis glomerata</subject><subject>Environmental Sciences</subject><subject>Festuca arundinacea</subject><subject>Life Sciences</subject><subject>Lolium perenne</subject><subject>Soil study</subject><subject>Zea mays</subject><issn>1351-0754</issn><issn>1365-2389</issn><fulltext>true</fulltext><rsrctype>article</rsrctype><creationdate>2016</creationdate><recordtype>article</recordtype><recordid>eNp9kM1OhDAUhYnRxPFn4xOwVBO0pUDL0jHqqDO6GI3LprSXsQoUW1Dn7S2iLm2a9OT0Oze5JwgOMDrB_pzCi3MnOCYx2wgmmGRpFBOWbw46xRGiabId7Dj3ghAmOM8nASxEI1ZQQ9OFUJYgOxeaJpSmbo3TnfZaNCpU60bUWvq_MpR9p0fX9QVYr_3tTOuMrsK-UWBDsbJa9lXXW-EtB3vBVikqB_s_727weHnxcD6L5vdX1-dn80gmOGGRlKxMKKN5llNaMgVFjhQAk0ohJBhhJBFZHmOV0gQhCRIXiqm0SLAShSwR2Q2OxrnPouKt1bWwa26E5rOzOR88vzbKaMbesWcPR7a15q0H1_FaOwlVJRowveOYIUYRYzj36PGISmucs1D-zcaID73zoXf-3buH8Qh_6ArW_5D84ma5_M1EY0a7Dj7_MsK-8owSmvKnuys-ZYvZkk4pvyVfrh-V0Q</recordid><startdate>201607</startdate><enddate>201607</enddate><creator>Armas-Herrera, C. M.</creator><creator>Dignac, M.-F.</creator><creator>Rumpel, C.</creator><creator>Arbelo, C. D.</creator><creator>Chabbi, A.</creator><general>Blackwell Publishing Ltd</general><general>Wiley</general><scope>BSCLL</scope><scope>AAYXX</scope><scope>CITATION</scope><scope>7ST</scope><scope>7UA</scope><scope>C1K</scope><scope>F1W</scope><scope>H96</scope><scope>L.G</scope><scope>SOI</scope><scope>1XC</scope><scope>VOOES</scope><orcidid>https://orcid.org/0000-0001-6566-6944</orcidid><orcidid>https://orcid.org/0000-0003-2131-9451</orcidid></search><sort><creationdate>201607</creationdate><title>Management effects on composition and dynamics of cutin and suberin in topsoil under agricultural use</title><author>Armas-Herrera, C. M. ; Dignac, M.-F. ; Rumpel, C. ; Arbelo, C. D. ; Chabbi, A.</author></sort><facets><frbrtype>5</frbrtype><frbrgroupid>cdi_FETCH-LOGICAL-c4148-cc8f478796977f8deb90dee8cdd00a83834a6921d57400cec1bd8d5b41dabcf03</frbrgroupid><rsrctype>articles</rsrctype><prefilter>articles</prefilter><language>eng</language><creationdate>2016</creationdate><topic>Agricultural sciences</topic><topic>Biodiversity and Ecology</topic><topic>Dactylis glomerata</topic><topic>Environmental Sciences</topic><topic>Festuca arundinacea</topic><topic>Life Sciences</topic><topic>Lolium perenne</topic><topic>Soil study</topic><topic>Zea mays</topic><toplevel>peer_reviewed</toplevel><toplevel>online_resources</toplevel><creatorcontrib>Armas-Herrera, C. M.</creatorcontrib><creatorcontrib>Dignac, M.-F.</creatorcontrib><creatorcontrib>Rumpel, C.</creatorcontrib><creatorcontrib>Arbelo, C. D.</creatorcontrib><creatorcontrib>Chabbi, A.</creatorcontrib><collection>Istex</collection><collection>CrossRef</collection><collection>Environment Abstracts</collection><collection>Water Resources Abstracts</collection><collection>Environmental Sciences and Pollution Management</collection><collection>ASFA: Aquatic Sciences and Fisheries Abstracts</collection><collection>Aquatic Science & Fisheries Abstracts (ASFA) 2: Ocean Technology, Policy & Non-Living Resources</collection><collection>Aquatic Science & Fisheries Abstracts (ASFA) Professional</collection><collection>Environment Abstracts</collection><collection>Hyper Article en Ligne (HAL)</collection><collection>Hyper Article en Ligne (HAL) (Open Access)</collection><jtitle>European journal of soil science</jtitle></facets><delivery><delcategory>Remote Search Resource</delcategory><fulltext>fulltext</fulltext></delivery><addata><au>Armas-Herrera, C. M.</au><au>Dignac, M.-F.</au><au>Rumpel, C.</au><au>Arbelo, C. D.</au><au>Chabbi, A.</au><format>journal</format><genre>article</genre><ristype>JOUR</ristype><atitle>Management effects on composition and dynamics of cutin and suberin in topsoil under agricultural use</atitle><jtitle>European journal of soil science</jtitle><addtitle>Eur J Soil Sci</addtitle><date>2016-07</date><risdate>2016</risdate><volume>67</volume><issue>4</issue><spage>360</spage><epage>373</epage><pages>360-373</pages><issn>1351-0754</issn><eissn>1365-2389</eissn><abstract>Summary
We identified and quantified specific biomarkers of shoots and roots (cutin and suberin‐derived compounds, respectively) of three grassland species (Dactylis glomerata L., Festuca arundinacea Schreb. and Lolium perenne L.) in soil under different land use (grass, crop and bare soil) of the SOERE‐ACBB experimental site in Lusignan (France). We also investigated the fate of these markers in soil after conversion from grassland (C3 plants) to Zea mays L. (maize) (C4 plant) with natural 13C isotope abundances. Our results indicated that 9‐hydroxy hexadecanedioic acid and 8(9)(10),16‐dihydroxy hexadecanoic acid may be used as biomarkers for above‐ground biomass, whereas 1,22‐docosandioic acid, 22‐hydroxy docosanoic acid and 24‐hydroxy tetracosanoic acid might be the best below‐ground biomarkers for the plants investigated under the experimental conditions studied. The presence, concentration and shoot–root allocation pattern of these markers were different from those described for other species, which demonstrates the importance of verifying biomarker specificity for each species. Concentrations of cutin and suberin were largest in soil under maize and smallest under bare soil; this corresponded to the biomass added to the two soils. Suberin decreased by 40–64% and cutin by 24–40% during a 6‐year bare fallow, which indicates that root markers were more sensitive than shoot markers to degradation. Changes in 13C isotopic signatures of specific biomarkers after 6 years of maize showed a faster turnover of root than shoot biomarkers, in spite of the much smaller root inputs from maize than from grasses. The sequestration of suberin in soil was more rapid but less durable than that of cutin.</abstract><cop>Oxford, UK</cop><pub>Blackwell Publishing Ltd</pub><doi>10.1111/ejss.12328</doi><tpages>14</tpages><orcidid>https://orcid.org/0000-0001-6566-6944</orcidid><orcidid>https://orcid.org/0000-0003-2131-9451</orcidid><oa>free_for_read</oa></addata></record> |
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subjects | Agricultural sciences Biodiversity and Ecology Dactylis glomerata Environmental Sciences Festuca arundinacea Life Sciences Lolium perenne Soil study Zea mays |
title | Management effects on composition and dynamics of cutin and suberin in topsoil under agricultural use |
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