Mycorrhizas and nutrient cycling in ecosystems - a journey towards relevance?

被引:1105
作者
Read, DJ [1 ]
Perez-Moreno, J
机构
[1] Univ Sheffield, Dept Anim & Plant Sci, Sheffield S10 2TN, S Yorkshire, England
[2] Colegio Postgrad, Microbiol Edafol Irenat, Montecillo 56320, Texcoco, Mexico
关键词
ericoid mycorrhiza; ectomycorrhiza; arbuscular mycorrhiza; nitrogen nutrition; phosphorus nutrition; ecosystem;
D O I
10.1046/j.1469-8137.2003.00704.x
中图分类号
Q94 [植物学];
学科分类号
071001 ;
摘要
Progress towards understanding the extent to which mycorrhizal fungi are involved in the mobilization of nitrogen (N) and phosphorus (P) from natural substrates is reviewed here. While mycorrhiza research has emphasized the role of the symbiosis in facilitation of capture of these nutrients in ionic form, attention has shifted since the mid-1980s to analysing the mycorrhizal fungal abilities to release N and P from the detrital materials of microbial faunal and plant origins, which are the primary sources of these elements in terrestrial ecosystems. Ericoid, and some ectomycorrhizal fungi have the potential to be directly involved in attack both on structural polymers, which may render nutrients inaccessible, and in mobilization of N and P from the organic polymers in which they are sequestered. The advantages to the plant of achieving intervention in the microbial mobilization-immobilization cycles are stressed. While the new approaches may initially lack the precision achieved in studies of readily characterized ionic forms of N and P, they do provide insights of greater ecological relevance. The results support the hypothesis that selection has favoured ericoid and ectomycorrhizal systems with well developed saprotrophic capabilities in those ecosystems characterized by retention of N and P as organic complexes in the soil. The need for further investigation of the abilities of arbuscular mycorrhizal fungi to intervene in nutrient mobilization processes is stressed.
引用
收藏
页码:475 / 492
页数:18
相关论文
共 141 条
[91]   Rates and quantities of carbon flux to ectomycorrhizal mycelium following 14C pulse labeling of Pinus sylvestris seedlings:: effects of litter patches and interaction with a wood-decomposer fungus [J].
Leake, JR ;
Donnelly, DP ;
Saunders, EM ;
Boddy, L ;
Read, DJ .
TREE PHYSIOLOGY, 2001, 21 (2-3) :71-82
[92]   Phosphodiesters as mycorrhizal P sources .1. Phosphodiesterase production and the utilization of DNA as a phosphorus source by the ericoid mycorrhizal fungus Hymenoscyphus ericae [J].
Leake, JR ;
Miles, W .
NEW PHYTOLOGIST, 1996, 132 (03) :435-443
[93]   CHITIN AS A NITROGEN-SOURCE FOR MYCORRHIZAL FUNGI [J].
LEAKE, JR ;
READ, DJ .
MYCOLOGICAL RESEARCH, 1990, 94 :993-995
[94]   Atmospheric deposition of macronutrients by pollen in the boreal forest [J].
Lee, EJ ;
Kenkel, N ;
Booth, T .
ECOSCIENCE, 1996, 3 (03) :304-309
[95]   Ectomycorrhizal fungal taxa differing in response to nitrogen deposition also differ in pure culture organic nitrogen use and natural abundance of nitrogen isotopes [J].
Lilleskov, EA ;
Hobbie, EA ;
Fahey, TJ .
NEW PHYTOLOGIST, 2002, 154 (01) :219-231
[96]  
Lilleskov EA, 2002, ECOLOGY, V83, P104, DOI 10.1890/0012-9658(2002)083[0104:BEFCCO]2.0.CO
[97]  
2
[98]   Translocation of 32P between interacting mycelia of a wood-decomposing fungus and ectomycorrhizal fungi in microcosm systems [J].
Lindahl, B ;
Stenlid, J ;
Olsson, S ;
Finlay, R .
NEW PHYTOLOGIST, 1999, 144 (01) :183-193
[99]   Transport of 15N from a soil compartment separated by a polytetrafluoroethylene membrane to plant roots via the hyphae of arbuscular mycorrhizal fungi [J].
Mäder, P ;
Vierheilig, H ;
Streitwolf-Engel, R ;
Boller, T ;
Frey, B ;
Christie, P ;
Wiemken, A .
NEW PHYTOLOGIST, 2000, 146 (01) :155-161
[100]   DETECTION OF EXTRACELLULAR CELLULOLYTIC AND PROTEOLYTIC ACTIVITY IN ECTOMYCORRHIZAL FUNGI AND HETEROBASIDION-ANNOSUM (FR) BREF [J].
MAIJALA, P ;
FAGERSTEDT, KV ;
RAUDASKOSKI, M .
NEW PHYTOLOGIST, 1991, 117 (04) :643-648