Literature DB >> 25963669

Mycorrhizal diversity, seed germination and long-term changes in population size across nine populations of the terrestrial orchid Neottia ovata.

Hans Jacquemyn1, Michael Waud1,2, Vincent S F T Merckx3, Bart Lievens2, Rein Brys1.   

Abstract

In plant species that rely on mycorrhizal symbioses for germination and seedling establishment, seedling recruitment and temporal changes in abundance can be expected to depend on fungal community composition and local environmental conditions. However, disentangling the precise factors that determine recruitment success in species that critically rely on mycorrhizal fungi represents a major challenge. In this study, we used seed germination experiments, 454 amplicon pyrosequencing and assessment of soil conditions to investigate the factors driving changes in local abundance in 28 populations of the orchid Neottia ovata. Comparison of population sizes measured in 2003 and 2013 showed that nearly 60% of the studied populations had declined in size (average growth rate across all populations: -0.01). Investigation of the mycorrhizal fungi in both the roots and soil revealed a total of 68 species of putatively mycorrhizal fungi, 21 of which occurred exclusively in roots, 25 that occurred solely in soil and 22 that were observed in both the soil and roots. Seed germination was limited and significantly and positively related to soil moisture content and soil pH, but not to fungal community composition. Large populations or populations with high population growth rates showed significantly higher germination than small populations or populations declining in size, but no significant relationships were found between population size or growth and mycorrhizal diversity. Overall, these results indicate that temporal changes in abundance were related to the ability of seeds to germinate, but at the same time they provided limited evidence that variation in fungal communities played an important role in determining population dynamics.
© 2015 John Wiley & Sons Ltd.

Entities:  

Keywords:  extinction debt; mycorrhizal fungi; orchids; population dynamics; seed germination

Mesh:

Substances:

Year:  2015        PMID: 25963669     DOI: 10.1111/mec.13236

Source DB:  PubMed          Journal:  Mol Ecol        ISSN: 0962-1083            Impact factor:   6.185


  14 in total

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4.  Habitat-driven variation in mycorrhizal communities in the terrestrial orchid genus Dactylorhiza.

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5.  Population structure of an orchid mycorrhizal fungus with genus-wide specificity.

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7.  Dynamics of fungal communities during Gastrodia elata growth.

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10.  Molecular systematics and the evolution of mycoheterotrophy of tribe Neottieae (Orchidaceae, Epidendroideae).

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