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Arbuscular Mycorrhizal Fungi Promote the Growth of Ceratocarpus arenarius (Chenopodiaceae) with No Enhancement of Phosphorus Nutrition

Arbuscular Mycorrhizal Fungi Promote the Growth of Ceratocarpus arenarius (Chenopodiaceae) with No Enhancement of Phosphorus Nutrition
The mycorrhizal status of plants in the Chenopodiaceae is not well studied with a few controversial reports. This study examined arbuscular mycorrhizal (AM) colonization and growth response of Ceratocarpus arenarius in the field and a greenhouse inoculation trial. The colonization rate of AM fungi in C. arenarius in in-growth field cores was low (around 15%). Vesicles and intraradical hyphae were present during all growth stages, but no arbuscules were observed. Sequencing analysis of the large ribosomal rDNA subunit detected four culturable Glomus species, G. intraradices, G. mosseae, G. etunicatum and G. microaggregatum together with eight unculturable species belong to the Glomeromycota in the root system of C. arenarius collected from the field. These results establish the mycotrophic status of C. arenarius. Both in the field and in the greenhouse inoculation trial, the growth of C. arenarius was stimulated by the indigenous AM fungal community and the inoculated AM fungal isolates, respectively, but the P uptake and concentration of the mycorrhizal plants did not increase significantly over the controls in both experiments. Furthermore, the AM fungi significantly increased seed production. Our results suggest that an alternative reciprocal benefit to carbon-phosphorus trade-off between AM fungi and the chenopod plant might exist in the extremely arid environment.
- China Agricultural University China (People's Republic of)
- China Agricultural University China (People's Republic of)
- Xinjiang Academy of Agricultural Sciences China (People's Republic of)
- University of Western Australia Australia
Models, Statistical, Science, Q, R, Phosphorus, Chenopodiaceae, Plant Roots, Polymerase Chain Reaction, Species Specificity, Mycorrhizae, Seeds, Medicine, Biomass, Desert Climate, Phylogeny, Plant Shoots, Research Article, DNA Primers
Models, Statistical, Science, Q, R, Phosphorus, Chenopodiaceae, Plant Roots, Polymerase Chain Reaction, Species Specificity, Mycorrhizae, Seeds, Medicine, Biomass, Desert Climate, Phylogeny, Plant Shoots, Research Article, DNA Primers
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