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Review
. 2002 May;154(2):275-304.
doi: 10.1046/j.1469-8137.2002.00397.x.

Coevolution of roots and mycorrhizas of land plants

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Free article
Review

Coevolution of roots and mycorrhizas of land plants

Mark C Brundrett. New Phytol. 2002 May.
Free article

Abstract

Here, the coevolution of mycorrhizal fungi and roots is assessed in the light of evidence now available, from palaeobotanical and morphological studies and the analysis of DNA-based phylogenies. The first bryophyte-like land plants, in the early Devonian (400 million years ago), had endophytic associations resembling vesicular-arbuscular mycorrhizas (VAM) even before roots evolved. Mycorrhizal evolution would have progressed from endophytic hyphae towards balanced associations where partners were interdependent due to the exchange of limiting energy and nutrient resources. Most mycorrhizas are mutualistic, but in some cases the trend for increasing plant control of fungi culminates in the exploitative mycorrhizas of achlorophyllous, mycoheterotrophic plants. Ectomycorrhizal, ericoid and orchid mycorrhizas, as well as nonmycorrhizal roots, evolved during the period of rapid angiosperm radiation in the Cretaceous. It is hypothesised that roots gradually evolved from rhizomes to provide more suitable habitats for mycorrhizal fungi and provide plants with complex branching and leaves with water and nutrients. Selection pressures have caused the morphological divergence of roots with different types of mycorrizas. Root cortex thickness and exodermis suberization are greatest in obllgately mycorrhizal plants, while nonmycorrhizal plants tend to have fine roots, with more roots hairs and relatively advanced chemical defences. Major coevolutionary trends and the relative success of plants with different root types are discussed. Contents Summary 275 I. Introduction 276 II. Mycorrhizal Fungi 276 III. The Dawn of Mycorrhizas 279 IV. Mycorrhizal Associations of Living and Extinct Plants 282 V. Evolution of Roots 288 VI. The Root as a Habitat for Fungi 290 VII. Mycorrhizal Evolution Trends 295 Acknowledgements 298 References 298.

Keywords: evolution; fungi; land plants; morphology; mycorrhizas; phylogeny; roots.

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References

Note added in proof
    1. Cairney JWG. 2000. Evolution of mycorrhiza systems. Naturwissenschaften 154: 467 - 475.
    1. Halling RE. 2001. Ectomycorrhizae: co-evolution, significance, and biogeography. Annals of the Missouri Botanical Garden 88: 5 - 13.
    1. Heckman DS, Geiser DM, Eidell BR, Stauffer RL, Kardos NL, Hedges SB. 2001. Molecular evidence for the early colonisation of land by fungi and plants. Science 293: 1129 - 1133. - PubMed
    1. Schüßler A, Schwarzott D, Walker C. 2001. A new fungal phylum, the Glomeromycota: phylogeny and evolution. Mycological Research 105: 1413 - 1421.
References
    1. Abbott LK. 1982. Comparative anatomy of vesicular-arbuscular mycorrhizas formed on subterranean clover. Australian Journal of Botany 30: 485 - 499.
    1. Abbott LK, Robson AD, Gazey C. 1992. Selection of inoculant vesicular-arbuscular mycorrhizal fungi. In: Norris JR, Read DJ, Varma AK, eds. Methods in microbiology , vol. 24. Techniques for the study of mycorrhiza. London, UK: Academic Press, 1 - 21.
    1. Agerer R. 1995. Anatomical characteristics of identified ectomycorrhizas: an attempt towards a natural classification. In: Varma A, Hock B, eds. Mycorrhiza. Berlin, Germany: Springer Verlag, 685 - 734.
    1. Alexander IJ. 1989. Systematics and ecology of ectomycorrhizal legumes. In: Stirton CH, Zarucchi JL, eds. Advances in legume biology. St Louis, MO, USA: Missouri Botanical Garden, 607 - 624.
    1. Alexander C, Hadley G. 1985. Carbon movement between host and mycorrhizal endophyte during the development of the orchid Goodyera repens Br. New Phytologist 101: 657 - 665.

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