The fate of primed soil carbon between biomass immobilization and respiration is controlled by nutrient availability

被引:7
作者
Vain, Anne-Cecile [1 ]
Rakotondrazafy, Nancy [1 ]
Razanamalala, Kanto [2 ]
Trap, Jean [1 ]
Marsden, Claire [1 ]
Blanchart, Eric [1 ]
Bernard, Laetitia [1 ]
机构
[1] Univ Montpellier, Eco & Sols, IRD, INRAe,CIRAD,Inst Agro, Montpellier, France
[2] Univ Antananarivo, Lab Radioisotopes, Antananarivo, Madagascar
关键词
Soil organic matter; Fresh organic matter; Priming effect; Microbial biomass; Specific respiration; ORGANIC-MATTER; USE EFFICIENCY; STOICHIOMETRIC DECOMPOSITION; MICROBIAL BIOMASS; NITROGEN; MINERALIZATION; MODEL; SEQUESTRATION; STABILIZATION; COMMUNITIES;
D O I
10.1016/j.ejsobi.2021.103332
中图分类号
Q14 [生态学(生物生态学)];
学科分类号
071012 ; 0713 ;
摘要
A positive Priming Effect (PE) is defined as an acceleration of the decomposition of soil organic matter (SOM) by a fresh organic matter (FOM) input. But in the literature many studies present this phenomenon as an extra loss of carbon from SOM to the atmosphere. SOM is actually a mixture of pools with different turnover rates, and microorganisms generating PE are heterotrophic. Therefore, whether PE is in fact an extra loss of C depends on the targeted SOM pool (high or low turnover) and the ratio between the incorporation of the primed carbon into microbial biomass vs its mineralization. A13 nutrient-poor tropical soil (enriched or not with a cocktail of nutrients) was incubated and submitted to two successive wheat-straw inputs with differential 13C enrichment, in order to observe the PE of one straw on the other, and to measure the specific respiration of the different carbon pools. In our nutrient-poor soil, nutrient enrichment intensified soil basal respiration while it lowered straw mineralization. Our study showed that, fresh and primed C allocation between microbial biomass and CO2 were similar and depended on the nutrient status of the soil. We did not observe any impact of freshly amended C on the fate of the previous amendment, but conversely we observed an impact of the previous organic input on the decomposition rate of the following one, as well as the allocation of the liberated C toward biomass rather than CO2.
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页数:8
相关论文
共 48 条
[1]   Soil-carbon response to warming dependent on microbial physiology [J].
Allison, Steven D. ;
Wallenstein, Matthew D. ;
Bradford, Mark A. .
NATURE GEOSCIENCE, 2010, 3 (05) :336-340
[2]   THE METABOLIC QUOTIENT FOR CO2 (QCO2) AS A SPECIFIC ACTIVITY PARAMETER TO ASSESS THE EFFECTS OF ENVIRONMENTAL-CONDITIONS, SUCH AS PH, ON THE MICROBIAL BIOMASS OF FOREST SOILS [J].
ANDERSON, TH ;
DOMSCH, KH .
SOIL BIOLOGY & BIOCHEMISTRY, 1993, 25 (03) :393-395
[3]   Endogeic earthworms shape bacterial functional communities and affect organic matter mineralization in a tropical soil [J].
Bernard, Laetitia ;
Chapuis-Lardy, Lydie ;
Razafimbelo, Tantely ;
Razafindrakoto, Malalatiana ;
Pablo, Anne-Laure ;
Legname, Elvire ;
Poulain, Julie ;
Bruels, Thomas ;
O'Donohue, Michael ;
Brauman, Alain ;
Chotte, Jean-Luc ;
Blanchart, Eric .
ISME JOURNAL, 2012, 6 (01) :213-222
[4]   Turnover of soil organic matter and of microbial biomass under C3-C4 vegetation change: Consideration of 13C fractionation and preferential substrate utilization [J].
Blagodatskaya, E. ;
Yuyukina, T. ;
Blagodatsky, S. ;
Kuzyakov, Y. .
SOIL BIOLOGY & BIOCHEMISTRY, 2011, 43 (01) :159-166
[5]   Microbial interactions affect sources of priming induced by cellulose [J].
Blagodatskaya, Evgenia ;
Khomyakov, Nikita ;
Myachina, Olga ;
Bogomolova, Irina ;
Blagodatsky, Sergey ;
Kuzyakov, Yakov .
SOIL BIOLOGY & BIOCHEMISTRY, 2014, 74 :39-49
[6]   Microbial community utilization of added carbon substrates in response to long-term carbon input manipulation [J].
Brant, Justin B. ;
Sulzman, Elizabeth W. ;
Myrold, David D. .
SOIL BIOLOGY & BIOCHEMISTRY, 2006, 38 (08) :2219-2232
[7]   Soil C and N availability determine the priming effect: microbial N mining and stoichiometric decomposition theories [J].
Chen, Ruirui ;
Senbayram, Mehmet ;
Blagodatsky, Sergey ;
Myachina, Olga ;
Dittert, Klaus ;
Lin, Xiangui ;
Blagodatskaya, Evgenia ;
Kuzyakov, Yakov .
GLOBAL CHANGE BIOLOGY, 2014, 20 (07) :2356-2367
[8]  
Christensen B., 1996, STRUCTURE ORGANIC MA, P97
[9]   Microbial nitrogen limitation increases decomposition [J].
Craine, Joseph M. ;
Morrow, Carl ;
Fierer, Noah .
ECOLOGY, 2007, 88 (08) :2105-2113
[10]   Rhizosphere priming: a nutrient perspective [J].
Dijkstra, Feike A. ;
Carrillo, Yolima ;
Pendall, Elise ;
Morgan, Jack A. .
FRONTIERS IN MICROBIOLOGY, 2013, 4