Dark septate root endophytic fungi increase growth of Scots pine seedlings under elevated CO2 through enhanced nitrogen use efficiency

被引:87
作者
Alberton, Odair [1 ]
Kuyper, Thomas W. [1 ]
Summerbell, Richard C. [2 ]
机构
[1] Wageningen Univ, Dept Soil Qual, NL-6700 AA Wageningen, Netherlands
[2] Fungal Biodivers Ctr, Cent Bur Schimmelcultures, NL-3584 CT Utrecht, Netherlands
关键词
Pinus sylvestris; Carbon and nitrogen allocation; Mycorrhiza; PHIALOCEPHALA-FORTINII; ECTOMYCORRHIZAL FUNGI; GLACIER FOREFRONT; MOLECULAR CHARACTERIZATION; MICROFUNGAL ENDOPHYTES; ECOSYSTEM RESPONSES; STRAINS; MYCORRHIZAL; SOIL; CARBON;
D O I
10.1007/s11104-009-0125-8
中图分类号
S3 [农学(农艺学)];
学科分类号
0901 ;
摘要
Although increasing concentrations of atmospheric CO2 are predicted to have substantial impacts on plant growth and functioning of ecosystems, there is insufficient understanding of the responses of belowground processes to such increases. We investigated the effects of different dark septate root endophytic (DSE) fungi on growth and nutrient acquisition by Pinus sylvestris seedlings under conditions of N limitation and at ambient and elevated CO2 (350 or 700 mu 1 CO2 l(-1)). Each seedling was inoculated with one of the following species: Phialocephala fortinii (two strains), Cadophora finlandica, Chloridium paucisporum, Scytalidium vaccinii, Meliniomyces variabilis and M. vraolstadiae. The trial lasted 125 days. During the final 27 days, the seedlings were labeled with (CO2)-C-14 and (NH)-N-15 (4) (+) . We measured extraradical hyphal length, internal colonization, plant biomass, C-14 allocation, and plant N and N-15 content. Under elevated CO2, the biomass of seedlings inoculated with DSE fungi was on average 17% higher than in control seedlings. Simultaneously, below-ground respiration doubled or trebled, and as a consequence carbon use efficiency by the DSE fungi significantly decreased. Shoot N concentration decreased on average by 57% under elevated CO2 and was lowest in seedlings inoculated with S. vaccinii. Carbon gain by the seedlings despite reduced shoot N concentration indicates that DSE fungi increase plant nutrient use efficiency and are therefore more beneficial to the plant under elevated CO2.
引用
收藏
页码:459 / 470
页数:12
相关论文
共 58 条
[1]  
Addy HD, 2005, CAN J BOT, V83, P1, DOI [10.1139/B04-171, 10.1139/b04-171]
[2]   The profusion of dark septate endophytic fungi in non-ectomycorrhizal fine roots of forest trees and shrubs [J].
Ahlich, K ;
Sieber, TN .
NEW PHYTOLOGIST, 1996, 132 (02) :259-270
[3]   Taking mycocentrism seriously:: mycorrhizal fungal and plant responses to elevated CO2 [J].
Alberton, O ;
Kuyper, TW ;
Gorissen, A .
NEW PHYTOLOGIST, 2005, 167 (03) :859-868
[4]   Ectomycorrhizal fungi associated with Pinus sylvestris seedlings respond differently to increased carbon and nitrogen availability: implications for ecosystem responses to global change [J].
Alberton, Odair ;
Kuyper, Thomas W. .
GLOBAL CHANGE BIOLOGY, 2009, 15 (01) :166-175
[5]   Competition for nitrogen between Pinus sylvestris and ectomycorrhizal fungi generates potential for negative feedback under elevated CO2 [J].
Alberton, Odair ;
Kuyper, Thomas W. ;
Gorissen, Antonie .
PLANT AND SOIL, 2007, 296 (1-2) :159-172
[6]  
[Anonymous], 2005, STUDIES MYCOLOGY
[7]  
BLOEM J, 2004, MOL MICROBIAL ECOLOG, V402, P861
[8]  
Cameron S.L., 1998, THESIS U GUELPH GUEL
[9]   Mycorrhiza-plant colonization patterns on a subalpine glacier forefront as a model system of primary succession [J].
Cázares, E ;
Trappe, JM ;
Jumpponen, A .
MYCORRHIZA, 2005, 15 (06) :405-416
[10]  
DALAL RC, 1979, ANALYST, V104, P151, DOI 10.1039/an9790400151