LambersAlbornozKotula2018

Référence

Lambers, H., Albornoz, F.E., Kotula, L., Laliberté, E., Ranathunge, K., Teste, F.P. and Zemunik, G. (2018) How belowground interactions contribute to the coexistence of mycorrhizal and non-mycorrhizal species in severely phosphorus-impoverished hyperdiverse ecosystems. Plant and Soil, 424(1):11-33. (URL )

Résumé

Mycorrhizal strategies are very effective in enhancing plant acquisition of poorly-mobile nutrients, particularly phosphorus (P) from infertile soil. However, on very old and severely P-impoverished soils, a carboxylate-releasing and P-mobilising cluster-root strategy is more effective at acquiring this growth-limiting resource. Carboxylates are released during a period of only a few days from ephemeral cluster roots. Despite the cluster-root strategy being superior for P acquisition in such environments, these species coexist with a wide range of mycorrhizal species, raising questions about the mechanisms contributing to their coexistence.

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@ARTICLE { LambersAlbornozKotula2018,
    AUTHOR = { Lambers, H. and Albornoz, F.E. and Kotula, L. and Laliberte, E. and Ranathunge, K. and Teste, F.P. and Zemunik, G. },
    TITLE = { How belowground interactions contribute to the coexistence of mycorrhizal and non-mycorrhizal species in severely phosphorus-impoverished hyperdiverse ecosystems },
    JOURNAL = { Plant and Soil },
    YEAR = { 2018 },
    VOLUME = { 424 },
    NUMBER = { 1 },
    PAGES = { 11--33 },
    MONTH = { Mar },
    ISSN = { 1573-5036 },
    ABSTRACT = { Mycorrhizal strategies are very effective in enhancing plant acquisition of poorly-mobile nutrients, particularly phosphorus (P) from infertile soil. However, on very old and severely P-impoverished soils, a carboxylate-releasing and P-mobilising cluster-root strategy is more effective at acquiring this growth-limiting resource. Carboxylates are released during a period of only a few days from ephemeral cluster roots. Despite the cluster-root strategy being superior for P acquisition in such environments, these species coexist with a wide range of mycorrhizal species, raising questions about the mechanisms contributing to their coexistence. },
    DAY = { 01 },
    DOI = { 10.1007/s11104-017-3427-2 },
    OWNER = { Daniel Lesieur },
    TIMESTAMP = { 2018-09-18 },
    URL = { https://doi.org/10.1007/s11104-017-3427-2 },
}

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