Bracken fern does not diminish arbuscular mycorrhizal fungus inoculum potential in tropical deforested areas

被引:0
|
作者
Cecilia L. López
Cesar Mayta
Kazuya Naoki
Jorge A. N. Quezada
Isabell Hensen
Silvia C. Gallegos
机构
[1] Herbario Nacional de Bolivia,Instituto de Ecología
[2] Universidad Mayor de San Andrés,Instituto de Ecología
[3] Estación Biológica Santiago de Chirca,Instituto de Biología Molecular Y Biotecnología
[4] Universidad Mayor de San Andrés,undefined
[5] Universidad Mayor de San Andrés,undefined
[6] Martin Luther University Halle-Wittenberg,undefined
来源
Mycorrhiza | 2022年 / 32卷
关键词
Restoration; Tropical montane forests;
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学科分类号
摘要
Tropical montane forests are threatened by uncontrolled fire events because of agricultural expansion. Consequently, deforested areas frequently are dominated by the bracken fern, Pteridium spp., for long periods, and forest regeneration is limited. Despite considerable research on bracken-dominated ecosystems, little is known about the relationship between bracken mycorrhizal fungi and tree seedlings. Arbuscular mycorrhizal fungi (AMF) form symbiotic relationships with terrestrial plants, providing nutrients and protection against pathogens and promoting seedling growth and establishment. Therefore, AMF inoculum have high potential for forest restoration programs. Here, we compare the species diversity of AMF spores, root colonization, and seedling growth of Clusia trochiformis 1 year after the addition of different liquefied root inocula: forest conspecific, forest heterospecific, and from Pteridium rhizomes. Thirteen morphospecies of arbuscular mycorrhizal fungi were identified on the roots of C. trochiformis, and Glomus spp. were the most abundant in all treatments. No differences were observed in spore species richness and diversity among treatments, but spore density was the highest subsequent to the Pteridium inoculum. There was no significant difference in mycorrhizal root colonization and seedling growth of C. trochiformis among inoculated treatments. We found a positive relation between root colonization and total biomass. This study shows that the AMF communities in bracken areas and forests present similar characteristics and that the bracken fern does not limit AMF inoculum potential, favouring seedling growth of Clusia.
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页码:123 / 131
页数:8
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