Shedding light onto nutrient responses of arbuscular mycorrhizal plants: Nutrient interactions may lead to unpredicted outcomes of the symbiosis

被引:48
作者
Correa, Ana [1 ,2 ]
Cruz, Cristina [2 ]
Perez-Tienda, Jacob [1 ]
Ferrol, Nuria [1 ]
机构
[1] CSIC, Estn Expt Zaidin, Dept Microbiol Suelo & Sistemas Simbiot, Granada, Spain
[2] Univ Lisbon, Fac Sci, Ctr Environm Biol, P-1699 Lisbon, Portugal
关键词
Arbuscular mycorrhizae; N; Cost:benefit; C; Zn; Mycorrhizal growth response; RICE ROOTS; RHIZOSPHERE MICROORGANISMS; ZINC ACCUMULATION; UPLAND RICE; N-TRANSFER; MINERAL N; NITROGEN; FUNGI; SOIL; PHOSPHORUS;
D O I
10.1016/j.plantsci.2014.01.009
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
The role and importance of arbuscular mycorrhizae (AM) in plant nitrogen (N) nutrition is uncertain. We propose that this be clarified by using more integrative experimental designs, with the use of a gradient of N supply and the quantification of an extensive array of plant nutrient contents. Using such an experimental design, we investigated AM effects on plant N nutrition, whether the mycorrhizal N response (MNR) determines the mycorrhizal growth response (MGR), and how MNR influences plants' C economy. Oryza sativa plants were inoculated with Rhizophagus irregularis or Funnehformis mossae. AM effects were studied along a gradient of N supplies. Biomass, photosynthesis, nutrient and starch contents, mycorrhizal colonization and OsPT11 gene expression were measured. C investment in fungal growth was estimated. Results showed that, in rice, MGR was dependent on AM nutrient uptake effects, namely on the synergy between N and Zn, and not on C expenditure. The supply of C to the fungus was dependent on the plant's nutrient demand, indicated by high shoot C/N or low %N. We conclude that one of the real reasons for the negative MGR of rice, Zn deficiency of AMF plants, would have remained hidden without an experimental design allowing the observation of plants' response to AM along gradients of nutrient concentrations. Adopting more integrative and comprehensive experimental approaches in mycorrhizal studies seems therefore essential if we are to achieve a true understanding of AM function, namely of the mechanisms of C/N exchange regulation in AM. (C) 2014 Elsevier Ireland Ltd. All rights reserved.
引用
收藏
页码:29 / 41
页数:13
相关论文
共 94 条
[1]   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
[2]  
[Anonymous], 1986, PHYSL GENETICAL ASPE
[3]   Long-term effects of soil nutrient deficiency on arbuscular mycorrhizal communities [J].
Antunes, Pedro M. ;
Lehmann, Anika ;
Hart, Miranda M. ;
Baumecker, Michael ;
Rillig, Matthias C. .
FUNCTIONAL ECOLOGY, 2012, 26 (02) :532-540
[4]   MYCORRHIZA AND PHOSPHATE INTERACTIONS AS AFFECTING PLANT DEVELOPMENT, N-2 FIXATION, N-TRANSFER AND N-UPTAKE FROM SOIL IN LEGUME GRASS MIXTURES BY USING A N-15 DILUTION TECHNIQUE [J].
BAREA, JM ;
ELATRACH, F ;
AZCON, R .
SOIL BIOLOGY & BIOCHEMISTRY, 1989, 21 (04) :581-589
[5]   GintPDX1 encodes a protein involved in vitamin B6 biosynthesis that is up-regulated by oxidative stress in the arbuscular mycorrhizal fungus Glomus intraradices [J].
Benabdellah, Karim ;
Azcon-Aguilar, Concepcion ;
Valderas, Ascension ;
Speziga, Davide ;
Fitzpatrick, Teresa B. ;
Ferrol, Nuria .
NEW PHYTOLOGIST, 2009, 184 (03) :682-693
[6]   Arbuscular mycorrhizas in phosphate-polluted soil: interrelations between root colonization and nitrogen [J].
Blanke, Verena ;
Wagner, Markus ;
Renker, Carsten ;
Lippert, Hannelore ;
Michulitz, Manfred ;
Kuhn, Arnd J. ;
Buscot, Francois .
PLANT AND SOIL, 2011, 343 (1-2) :379-392
[7]   Phosphate systemically inhibits development of arbuscular mycorrhiza in Petunia hybrida and represses genes involved in mycorrhizal functioning [J].
Breuillin, Florence ;
Schramm, Jonathan ;
Hajirezaei, Mohammad ;
Ahkami, Amir ;
Favre, Patrick ;
Druege, Uwe ;
Hause, Bettina ;
Bucher, Marcel ;
Kretzschmar, Tobias ;
Bossolini, Eligio ;
Kuhlemeier, Cris ;
Martinoia, Enrico ;
Franken, Philipp ;
Scholz, Uwe ;
Reinhardt, Didier .
PLANT JOURNAL, 2010, 64 (06) :1002-1017
[8]   A plasma membrane zinc transporter from Medicago truncatula is up-regulated in roots by Zn fertilization, yet down-regulated by arbuscular mycorrhizal colonization [J].
Burleigh, SH ;
Kristensen, BK ;
Bechmann, IE .
PLANT MOLECULAR BIOLOGY, 2003, 52 (05) :1077-1088
[9]   Early seral plant species' interactions with an arbuscular mycorrhizal fungi community are highly variable [J].
Busby, Ryan R. ;
Gebhart, Dick L. ;
Stromberger, Mary E. ;
Meiman, Paul J. ;
Paschke, Mark W. .
APPLIED SOIL ECOLOGY, 2011, 48 (03) :257-262
[10]   Effects of arbuscular mycorrhizal fungi on grassland productivity are altered by future climate and below-ground resource availability [J].
Buscher, Manu ;
Zavalloni, Costanza ;
de Boulois, Herve Dupre ;
Vicca, Sara ;
Van den Berge, Joke ;
Declerck, Stephane ;
Ceulemans, Reinhart ;
Janssens, Ivan A. ;
Nijs, Ivan .
ENVIRONMENTAL AND EXPERIMENTAL BOTANY, 2012, 81 :62-71