Revisiting the 'Gadgil effect': do interguild fungal interactions control carbon cycling in forest soils?

被引:340
作者
Fernandez, Christopher W. [1 ]
Kennedy, Peter G.
机构
[1] Univ Minnesota, Dept Plant Biol, St Paul, MN 55108 USA
关键词
carbon sequestration; competition; decomposition; ectomycorrhizal fungi Gadgil effect; litter; nitrogen cycle; saprotrophic fungi; soil organic matter (SOM); ARBUSCULAR MYCORRHIZAL FUNGI; LEAF-LITTER DECOMPOSITION; MIXED-CONIFER FOREST; ECTOMYCORRHIZAL FUNGI; BOREAL FOREST; ORGANIC-MATTER; PINUS-RESINOSA; DOUGLAS-FIR; LACCARIA-LACCATA; IN-VITRO;
D O I
10.1111/nph.13648
中图分类号
Q94 [植物学];
学科分类号
071001 ;
摘要
In forest ecosystems, ectomycorrhizal and saprotrophic fungi play a central role in the breakdown of soil organic matter (SOM). Competition between these two fungal guilds has long been hypothesized to lead to suppression of decomposition rates, a phenomenon known as the 'Gadgil effect'. In this review, we examine the documentation, generality, and potential mechanisms involved in the 'Gadgil effect'. We find that the influence of ectomycorrhizal fungi on litter and SOM decomposition is much more variable than previously recognized. To explain the inconsistency in size and direction of the 'Gadgil effect', weargue that a better understanding of underlying mechanisms is required. We discuss the strengths and weaknesses of each of the primary mechanisms proposed to date and how using different experimental methods (trenching, girdling, microcosms), as well as considering different temporal and spatial scales, could influence the conclusions drawn about this phenomenon. Finally, we suggest that combining new research tools such as high-throughput sequencing with experiments utilizing natural environmental gradients will significantly deepen our understanding of the 'Gadgil effect' and its consequences on forest soil carbon and nutrient cycling.
引用
收藏
页码:1382 / 1394
页数:13
相关论文
共 147 条
[61]   Contrasting effects of nitrogen availability on plant carbon supply to mycorrhizal fungi and saprotrophs -: a hypothesis based on field observations in boreal forest [J].
Högberg, MN ;
Bååth, E ;
Nordgren, A ;
Arnebrant, K ;
Högberg, P .
NEW PHYTOLOGIST, 2003, 160 (01) :225-238
[62]   Quantification of effects of season and nitrogen supply on tree below-ground carbon transfer to ectomycorrhizal fungi and other soil organisms in a boreal pine forest [J].
Hogberg, Mona N. ;
Briones, Maria J. I. ;
Keel, Sonja G. ;
Metcalfe, Daniel B. ;
Campbell, Catherine ;
Midwood, Andrew J. ;
Thornton, Barry ;
Hurry, Vaughan ;
Linder, Sune ;
Nasholm, Torgny ;
Hogberg, Peter .
NEW PHYTOLOGIST, 2010, 187 (02) :485-493
[63]   Decreases in soil moisture and organic matter quality suppress microbial decomposition following a boreal forest fire [J].
Holden, Sandra R. ;
Berhe, Asmeret Asefaw ;
Treseder, Kathleen K. .
SOIL BIOLOGY & BIOCHEMISTRY, 2015, 87 :1-9
[64]   The molecular revolution in ectomycorrhizal ecology: peeking into the black-box [J].
Horton, TR ;
Bruns, TD .
MOLECULAR ECOLOGY, 2001, 10 (08) :1855-1871
[65]   Soil chronosequences, soil development, and soil evolution: a critical review [J].
Huggett, RJ .
CATENA, 1998, 32 (3-4) :155-172
[66]   Host effects on ectomycorrhizal fungal communities: insight from eight host species in mixed conifer-broadleaf forests [J].
Ishida, Takahide A. ;
Nara, Kazuhide ;
Hogetsu, Taizo .
NEW PHYTOLOGIST, 2007, 174 (02) :430-440
[67]   Detection of plot-level changes in ectomycorrhizal communities across years in an old-growth mixed-conifer forest [J].
Izzo, A ;
Agbowo, J ;
Bruns, TD .
NEW PHYTOLOGIST, 2005, 166 (02) :619-630
[68]   Reconstructing the early evolution of Fungi using a six-gene phylogeny [J].
James, Timothy Y. ;
Kauff, Frank ;
Schoch, Conrad L. ;
Matheny, P. Brandon ;
Hofstetter, Valerie ;
Cox, Cymon J. ;
Celio, Gail ;
Gueidan, Cecile ;
Fraker, Emily ;
Miadlikowska, Jolanta ;
Lumbsch, H. Thorsten ;
Rauhut, Alexandra ;
Reeb, Valerie ;
Arnold, A. Elizabeth ;
Amtoft, Anja ;
Stajich, Jason E. ;
Hosaka, Kentaro ;
Sung, Gi-Ho ;
Johnson, Desiree ;
O'Rourke, Ben ;
Crockett, Michael ;
Binder, Manfred ;
Curtis, Judd M. ;
Slot, Jason C. ;
Wang, Zheng ;
Wilson, Andrew W. ;
Schuessler, Arthur ;
Longcore, Joyce E. ;
O'Donnell, Kerry ;
Mozley-Standridge, Sharon ;
Porter, David ;
Letcher, Peter M. ;
Powell, Martha J. ;
Taylor, John W. ;
White, Merlin M. ;
Griffith, Gareth W. ;
Davies, David R. ;
Humber, Richard A. ;
Morton, Joseph B. ;
Sugiyama, Junta ;
Rossman, Amy Y. ;
Rogers, Jack D. ;
Pfister, Don H. ;
Hewitt, David ;
Hansen, Karen ;
Hambleton, Sarah ;
Shoemaker, Robert A. ;
Kohlmeyer, Jan ;
Volkmann-Kohlmeyer, Brigitte ;
Spotts, Robert A. .
NATURE, 2006, 443 (7113) :818-822
[69]   Exploring the transfer of recent plant photosynthates to soil microbes: mycorrhizal pathway vs direct root exudation [J].
Kaiser, Christina ;
Kilburn, Matt R. ;
Clode, Peta L. ;
Fuchslueger, Lucia ;
Koranda, Marianne ;
Cliff, John B. ;
Solaiman, Zakaria M. ;
Murphy, Daniel V. .
NEW PHYTOLOGIST, 2015, 205 (04) :1537-1551
[70]   Competition for nitrogen between plants and soil microorganisms [J].
Kaye, JP ;
Hart, SC .
TRENDS IN ECOLOGY & EVOLUTION, 1997, 12 (04) :139-143