Negligible contribution from roots to soil-borne phospholipid fatty acid fungal biomarkers 18:2ω6,9 and 18:1ω9

被引:158
作者
Kaiser, Christina [1 ]
Frank, Alexander [1 ]
Wild, Birgit [1 ]
Koranda, Marianne [1 ]
Richter, Andreas [1 ]
机构
[1] Univ Vienna, Dept Chem Ecol & Ecosyst Res, A-1090 Vienna, Austria
基金
奥地利科学基金会;
关键词
PLFAs; Fungal biomarkers; 18:2 omega 6,9; 18:1 omega 9; Soil microbial community; Ectomycorrhizal fungi; Girdling; Beech roots; BOREAL FOREST SOILS; MICROBIAL COMMUNITIES; TREES;
D O I
10.1016/j.soilbio.2010.05.019
中图分类号
S15 [土壤学];
学科分类号
0903 ; 090301 ;
摘要
The phospholipid fatty acid biomarkers 18:1 omega 9, 18:2 omega 6,9 and 18:3 omega 3,6,9 are commonly used as fungal biomarkers in soils. They have, however, also been found to occur in plant tissues, such as roots. Thus, the use of these PLFAs as fungal biomarkers in sieved soil, which may still contain small remains of roots, has been questioned. We used data from a recent beech tree girdling experiment to calculate the contribution of roots to these biomarkers and were able to demonstrate that not more than 0.61% of 18:1 omega 9 and 18:2 omega 6,9 in sieved soil samples originated from roots (but 4% of 18:3 omega 3,6,9). Additionally, the abundance of the biomarker 18:2 omega 6,9 in the soil was found to be highly correlated to ectomycorrhizal root colonization, which further corroborates its fungal origin. PLFA biomarkers were substantially reduced in vital roots from girdled trees compared to roots of control trees (by up to 76%), indicating that the major part of PLFAs measured in roots may actually originate from ectomycorrhizal fungi growing inside the roots. We calculated, that even a near to 50% reduction in fine root biomass - as observed in the girdling treatment - accounted for only 0.8% of the measured decrease of 18:2 omega 6,9. Our results demonstrate that both 18:1 omega 9 and 18:2 omega 6,9 are suitable biomarkers for detecting fungal dynamics in soils and that especially 18:2 omega 6,9 is a reliable biomarker to study mycorrhizal dynamics in beech forests. (C) 2010 Elsevier Ltd. All rights reserved.
引用
收藏
页码:1650 / 1652
页数:3
相关论文
共 11 条
[1]   MICROBIAL BIOMASS MEASURED AS TOTAL LIPID PHOSPHATE IN SOILS OF DIFFERENT ORGANIC CONTENT [J].
FROSTEGARD, A ;
TUNLID, A ;
BAATH, E .
JOURNAL OF MICROBIOLOGICAL METHODS, 1991, 14 (03) :151-163
[2]   Methods for assessing the composition and diversity of soil microbial communities [J].
Hill, GT ;
Mitkowski, NA ;
Aldrich-Wolfe, L ;
Emele, LR ;
Jurkonie, DD ;
Ficke, A ;
Maldonado-Ramirez, S ;
Lynch, ST ;
Nelson, EB .
APPLIED SOIL ECOLOGY, 2000, 15 (01) :25-36
[3]   Is microbial community composition in boreal forest soils determined by pH, C-to-N ratio, the trees, or all three? [J].
Hogberg, Mona N. ;
Hogberg, Peter ;
Myrold, David D. .
OECOLOGIA, 2007, 150 (04) :590-601
[4]   Discrepancies between ergosterol and the phospholipid fatty acid 18:2ω6,9 as biomarkers for fungi in boreal forest soils [J].
Hogberg, Mona N. .
SOIL BIOLOGY & BIOCHEMISTRY, 2006, 38 (12) :3431-3435
[5]   Quantitative assessment of the fungal contribution to microbial tissue in soil [J].
Joergensen, Rainer Georg ;
Wichern, Florian .
SOIL BIOLOGY & BIOCHEMISTRY, 2008, 40 (12) :2977-2991
[6]   Belowground carbon allocation by trees drives seasonal patterns of extracellular enzyme activities by altering microbial community composition in a beech forest soil [J].
Kaiser, Christina ;
Koranda, Marianne ;
Kitzler, Barbara ;
Fuchslueger, Lucia ;
Schnecker, Joerg ;
Schweiger, Peter ;
Rasche, Frank ;
Zechmeister-Boltenstern, Sophie ;
Sessitsch, Angela ;
Richter, Andreas .
NEW PHYTOLOGIST, 2010, 187 (03) :843-858
[7]   Lipids in roots of Pinus sylvestris seedlings and in mycelia of Pisolithus tinctorius during ectomycorrhiza formation:: changes in fatty acid and sterol composition [J].
Laczko, E ;
Boller, T ;
Wiemken, V .
PLANT CELL AND ENVIRONMENT, 2004, 27 (01) :27-40
[8]   Methods of microbial community profiling and their application to forest soils [J].
Leckie, SE .
FOREST ECOLOGY AND MANAGEMENT, 2005, 220 (1-3) :88-106
[9]  
Olsson PA, 1999, FEMS MICROBIOL ECOL, V29, P303, DOI 10.1111/j.1574-6941.1999.tb00621.x
[10]   Termination of belowground C allocation by trees alters soil fungal and bacterial communities in a boreal forest [J].
Yarwood, Stephanie A. ;
Myrold, David D. ;
Hogberg, Mona N. .
FEMS MICROBIOLOGY ECOLOGY, 2009, 70 (01) :151-162