Glomalin extraction and measurement

被引:81
作者
Janos, David P. [1 ]
Garamszegi, Sara [1 ]
Beltran, Bray [1 ]
机构
[1] Univ Miami, Dept Biol, Coral Gables, FL 33146 USA
基金
美国国家科学基金会;
关键词
glomalin; soil extraction; Bradford assay; Michaelis-Menten equation; soil organic matter; immunoreactive soil protein;
D O I
10.1016/j.soilbio.2007.10.007
中图分类号
S15 [土壤学];
学科分类号
0903 ; 090301 ;
摘要
We investigated extraction from soil of glomalin, a glycoprotein produced by arbuscular mycorrhizal fungi, and we examined its measurement. The most commonly used protocols for extracting glomalin require autoclaving of soil in citrate solution, followed by centrifugation to separate the supernatant, and then measurement by either Bradford protein assay or enzyme-linked immunosorbent assay (ELISA). We found that lengthening the time of autoclaving increased easily extractable glomalin extraction. Delay of centrifugation after autoclaving, however, diminished Bradford-reactive substances in the supernatant, suggesting that extracted substances might be reversibly immobilized on soil particles. Surprisingly, increasing the volume of extraction solution did not accelerate extraction of "total glomalin", but instead, substantially increased the amount extracted. Multiple autoclave cycles nevertheless denature glomalin, which may not be as heat-resistant as thought. Repeated 1-h autoclaving of supernatant diminished both its Brad ford-reactive substances (7.3% h(-1)) and immunoreactive protein (22% during the first hour and 9.5% h(-1) of the remainder thereafter), although a large initial volume of extractant could reduce the loss of immunoreactive protein. Proteins and polyphenols that survive the extraction process are measured non-specifically by the Bradford assay. When we added other glycoproteins to dry soils, we recovered a maximum 34% bovine serum albumin and 22% bovine mucin, primarily in the first two, 1-h extraction cycles. These added proteins may adhere to soil organic matter and thereby be protected from denaturation. In addressing the endpoint of glomalin extraction, we found that the Michaelis-Menten equation closely fits cumulative glomalin per extraction cycle such that its asymptote provides an objective estimate of total extractable glomalin for a given set of extraction conditions. Additionally, the equation provides a curvature parameter that reflects the soil-specific efficiency of an extraction protocol. Although the soils that we investigated with 7.6% or more soil organic matter had the most asymptotic total glomalin, they were extracted the least efficiently. (c) 2007 Elsevier Ltd. All rights reserved.
引用
收藏
页码:728 / 739
页数:12
相关论文
共 27 条
[1]   Effects of tillage systems on soil characteristics, glomalin and mycorrhizal propagules in a Chilean Ultisol [J].
Borie, F. ;
Rubio, R. ;
Rouanet, J. L. ;
Morales, A. ;
Borie, G. ;
Rojas, C. .
SOIL & TILLAGE RESEARCH, 2006, 88 (1-2) :253-261
[2]   The arbuscular mycorrhizal fungal protein glomalin is a putative homolog of heat shock protein 60 [J].
Gadkar, Vijay ;
Rillig, Matthias C. .
FEMS MICROBIOLOGY LETTERS, 2006, 263 (01) :93-101
[3]   The role of glomalin, a protein produced by arbuscular mycorrhizal fungi, in sequestering potentially toxic elements [J].
González-Chávez, MC ;
Carrillo-González, R ;
Wright, SF ;
Nichols, KA .
ENVIRONMENTAL POLLUTION, 2004, 130 (03) :317-323
[4]   Bradford reactive soil protein in Appalachian soils: distribution and response to incubation, extraction reagent and tannins [J].
Halvorson, Jonathan J. ;
Gonzalez, Javier M. .
PLANT AND SOIL, 2006, 286 (1-2) :339-356
[5]   Glomalin content of forest soils in relation to fire frequency and landscape position [J].
Knorr, MA ;
Boerner, REJ ;
Rillig, MC .
MYCORRHIZA, 2003, 13 (04) :205-210
[6]   Some aspects of interrelations between fungi and other biota in forest soil [J].
Krivtsov, V ;
Griffiths, BS ;
Salmond, R ;
Liddell, K ;
Garside, A ;
Bezginova, T ;
Thompson, JA ;
Staines, HJ ;
Watling, R ;
Palfreyman, JW .
MYCOLOGICAL RESEARCH, 2004, 108 :933-946
[7]   Soil stocks of glomalin produced by arbuscular mycorrhizal fungi across a tropical rain forest landscape [J].
Lovelock, CE ;
Wright, SF ;
Clark, DA ;
Ruess, RW .
JOURNAL OF ECOLOGY, 2004, 92 (02) :278-287
[8]   Using glomalin as an indicator for arbuscular mycorrhizal hyphal growth: an example from a tropical rain forest soil [J].
Lovelock, CE ;
Wright, SF ;
Nichols, KA .
SOIL BIOLOGY & BIOCHEMISTRY, 2004, 36 (06) :1009-1012
[9]   Seasonality of arbuscular mycorrhizal hyphae and glomalin in a western Montana grassland [J].
Lutgen, ER ;
Muir-Clairmont, D ;
Graham, J ;
Rillig, MC .
PLANT AND SOIL, 2003, 257 (01) :71-83
[10]  
Millner PD, 2002, SYMBIOSIS, V33, P101