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Uncovering the complex relationship between plant diversity, soil properties, and mycorrhizal inoculum potential in threatened Miombo woodlands

Bibliographic Data

ID21649593
AuthorsJean‐Marc Kyalamakasa Kaumbu (Ecology, Ecological Restoration and Landscape Research Unit, Agronomy Faculty University of Lubumbashi, Route Kasapa, Campus Universitaire Lubumbashi Democratic Republic of the Congo), Godar Sene (0000-0001-8434-019X, Centre d'Étude de la Forêt (CEF) and the Institut de Biologie Intégrative et des Systèmes (IBIS) Université Laval Québec Québec Canada, corresponding author), Franck Stefani (0000-0002-6025-2192, Agriculture and Agri‐Food Canada, Ottawa Research and Development Centre Ottawa Ontario Canada), Damase P Khasa (0000-0002-9336-7770, Centre d'Étude de la Forêt (CEF) and the Institut de Biologie Intégrative et des Systèmes (IBIS) Université Laval Québec Québec Canada)
Year2024
Volume35
Issue5
Pages1673-1684
Publication date2024-03-01
Peer ReviewedYes
Open AccessYes
TypeARTICLE
VenueLand Degradation and Development (JOURNAL)
Journal identifiersISSN: 1085-3278 • E-ISSN: 1099-145X
PublisherWiley (PUBLISHER • GB)
DOI10.1002/ldr.5013
OpenAlexW4390779394
LanguageEN
References cited38

Arbuscular mycorrhizal fungi (AMF) are key members of soil microbial communities and play a key role in regulating ecosystem processes. However, the mutual interdependence of plants and AMF in threatened Miombo woodlands has not yet been fully elucidated. In this study, we investigated the relationship between plant ecological indicators and soil mycorrhizal inoculum potential (MIP) in the Miombo forest fallow of Haut‐Katanga, Democratic Republic of Congo, and identified plant species that positively influence soil MIP. We conducted a floristic inventory on 32 plots and collected soil cores for physicochemical and AMF characterization. Trap cultures using Crotalaria juncea seedlings were performed to determine the soil MIP. We also tested the AMF colonization status of randomly collected living roots of mature woody and dominant herbaceous species to identify explanatory variables for MIP. Our results showed that MIP was twice as high in silty clay soils (63.13%) than in clay soils (30%). Furthermore, MIP increased accordingly with the relative abundance of a group of woody and herbaceous species (e.g., Albizia adianthifolia , Baphia bequaertii , and Setaria pumila ) and decreased with others (e.g., Combretum collinum , Harungana madagascariensis and Hyparrhenia diplandra ). Linear regressions showed that MIP increased significantly with the specific richness of woody species identified as indicators and with the amount of annual herbs. Woody legumes with high root colonization by AMF appeared to be refuge plants, and primary AMF dispersal vectors, increasing soil MIP. This study provides baseline data that can be used to formulate ecological restoration strategies, including soil and vegetation protection

Agronomy · Biology · Botany · Crotalaria · Herbaceous plant · Species richness · Threatened species · Ecology and Vegetation Dynamics Studies · Forest Ecology and Biodiversity Studies · Mycorrhizal Fungi and Plant Interactions · Ecology

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