Environmental and microbial controls on microbial necromass recycling, an important precursor for soil carbon stabilization

被引:164
作者
Buckeridge, Kate M. [1 ,4 ]
Mason, Kelly E. [2 ]
McNamara, Niall P. [2 ]
Ostle, Nick [1 ]
Puissant, Jeremy [3 ]
Goodall, Tim [3 ]
Griffiths, Robert, I [3 ]
Stott, Andrew W. [2 ]
Whitaker, Jeanette [2 ]
机构
[1] Univ Lancaster, Lancaster Environm Ctr, Lancaster LA1 4YQ, England
[2] UK Ctr Ecol & Hydrol, Lancaster LA1 4AP, England
[3] UK Ctr Ecol & Hydrol, Wallingford OX10 8BB, Oxon, England
[4] Univ Edinburgh, Global Acad Agr & Food Secur, Royal Dick Sch Vet Studies, Edinburgh EH25 9RG, Midlothian, Scotland
来源
COMMUNICATIONS EARTH & ENVIRONMENT | 2020年 / 1卷 / 01期
基金
英国自然环境研究理事会;
关键词
LAND-USE; USE EFFICIENCY; ORGANIC-MATTER; PLANT INPUTS; MICROORGANISMS; COMMUNITIES; PIPELINE; ALTERS; GROWTH; INDEX;
D O I
10.1038/s43247-020-00031-4
中图分类号
X [环境科学、安全科学];
学科分类号
08 ; 0830 ;
摘要
Microbial necromass recycling, which can influence soil carbon stabilization, is controlled by microbial growth and precipitation, as indicated by stable isotope tracing and indicator species analysis in a range of UK grasslands. There is an emerging consensus that microbial necromass carbon is the primary constituent of stable soil carbon, yet the controls on the stabilization process are unknown. Prior to stabilization, microbial necromass may be recycled by the microbial community. We propose that the efficiency of this recycling is a critical determinant of soil carbon stabilization rates. Here we explore the controls on necromass recycling efficiency in 27 UK grassland soils using stable isotope tracing and indicator species analysis. We found that recycling efficiency was unaffected by land management. Instead, recycling efficiency increased with microbial growth rate on necromass, and was highest in soils with low historical precipitation. We identified bacterial and fungal indicators of necromass recycling efficiency, which could be used to clarify soil carbon stabilization mechanisms. We conclude that environmental and microbial controls have a strong influence on necromass recycling, and suggest that this, in turn, influences soil carbon stabilization.
引用
收藏
页数:9
相关论文
共 53 条
[11]  
Emmett B.A., 2008, 307 CS NERC ETR EC H, P180
[12]   Controls on microbial CO2 production:: a comparison of surface and subsurface soil horizons [J].
Fierer, N ;
Allen, AS ;
Schimel, JP ;
Holden, PA .
GLOBAL CHANGE BIOLOGY, 2003, 9 (09) :1322-1332
[13]   Cross-biome metagenomic analyses of soil microbial communities and their functional attributes [J].
Fierer, Noah ;
Leff, Jonathan W. ;
Adams, Byron J. ;
Nielsen, Uffe N. ;
Bates, Scott Thomas ;
Lauber, Christian L. ;
Owens, Sarah ;
Gilbert, Jack A. ;
Wall, Diana H. ;
Caporaso, J. Gregory .
PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA, 2012, 109 (52) :21390-21395
[14]   Long-term effects of mineral fertilizers on soil microorganisms - A review [J].
Geisseler, Daniel ;
Scow, Kate M. .
SOIL BIOLOGY & BIOCHEMISTRY, 2014, 75 :54-63
[15]   Land-use intensification causes multitrophic homogenization of grassland communities [J].
Gossner, Martin M. ;
Lewinsohn, Thomas M. ;
Kahl, Tiemo ;
Grassein, Fabrice ;
Boch, Steffen ;
Prati, Daniel ;
Birkhofer, Klaus ;
Renner, Swen C. ;
Sikorski, Johannes ;
Wubet, Tesfaye ;
Arndt, Hartmut ;
Baumgartner, Vanessa ;
Blaser, Stefan ;
Bluethgen, Nico ;
Boerschig, Carmen ;
Buscot, Francois ;
Diekoetter, Tim ;
Jorge, Leonardo Re ;
Jung, Kirsten ;
Keyel, Alexander C. ;
Klein, Alexandra-Maria ;
Klemmer, Sandra ;
Krauss, Jochen ;
Lange, Markus ;
Mueller, Joerg ;
Overmann, Joerg ;
Pasalic, Esther ;
Penone, Caterina ;
Perovic, David J. ;
Purschke, Oliver ;
Schall, Peter ;
Socher, Stephanie A. ;
Sonnemann, Ilja ;
Tschapka, Marco ;
Tscharntke, Teja ;
Tuerke, Manfred ;
Venter, Paul Christiaan ;
Weiner, Christiane N. ;
Werner, Michael ;
Wolters, Volkmar ;
Wurst, Susanne ;
Westphal, Catrin ;
Fischer, Markus ;
Weisser, Wolfgang W. ;
Allan, Eric .
NATURE, 2016, 540 (7632) :266-+
[16]   The bacterial biogeography of British soils [J].
Griffiths, Robert I. ;
Thomson, Bruce C. ;
James, Phillip ;
Bell, Thomas ;
Bailey, Mark ;
Whiteley, Andrew S. .
ENVIRONMENTAL MICROBIOLOGY, 2011, 13 (06) :1642-1654
[17]   Soil carbon stocks and land use change: a meta analysis [J].
Guo, LB ;
Gifford, RM .
GLOBAL CHANGE BIOLOGY, 2002, 8 (04) :345-360
[18]   PIPITS: an automated pipeline for analyses of fungal internal transcribed spacer sequences from the Illumina sequencing platform [J].
Gweon, Hyun S. ;
Oliver, Anna ;
Taylor, Joanne ;
Booth, Tim ;
Gibbs, Melanie ;
Read, Daniel S. ;
Griffiths, Robert I. ;
Schonrogge, Karsten .
METHODS IN ECOLOGY AND EVOLUTION, 2015, 6 (08) :973-980
[19]   Evaluating soil microbial carbon use efficiency explicitly as a function of cellular processes: implications for measurements and models [J].
Hagerty, Shannon B. ;
Allison, Steven D. ;
Schimel, Joshua P. .
BIOGEOCHEMISTRY, 2018, 140 (03) :269-283
[20]   Historical climate controls soil respiration responses to current soil moisture [J].
Hawkes, Christine V. ;
Waring, Bonnie G. ;
Rocca, Jennifer D. ;
Kivlin, Stephanie N. .
PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA, 2017, 114 (24) :6322-6327