A multimethod approach to assess arbuscular mycorrhizal fungal diversity in a hot arid and hyperalkaline region

Author:

Robin-Soriano Alexandre1,Maurice Kenji1,Boivin Stéphane2,Bourceret Amelia3,Laurent-Webb Liam3,Youssef Sami2,Nespoulous Jérôme2,Boussière Inès1,Berder Julie2,Damasio Coraline1,Vincent Bryan1,Boukcim Hassan2,Ducousso Marc1,Gros-Balthazard Muriel4

Affiliation:

1. AGAP, Univ Montpellier, CIRAD, INRAE

2. VALORHIZ

3. ISYEB, Muséum national d’Histoire naturelle, CNRS, EPHE-PSL, Sorbonne Université

4. DIADE, Univ Montpellier, CIRAD, IRD

Abstract

Abstract

Hot deserts impose extreme conditions on plants growing in arid soils. Deserts are expanding due to climate change, thereby increasing the vulnerability of ecosystems and the need to preserve them. Arbuscular mycorrhizal fungi (AMF) improve plant fitness by enhancing plant water/nutrient uptake and stress tolerance. However, few studies have focused on AMF diversity and community composition in deserts, and the soil and land use parameters affecting them. This study aimed to comprehensively describe AMF ecological features in a 5,000 m2 arid hyperalkaline region in AlUla, Saudi Arabia. We used a multimethod approach to analyse over 1,000 soil and 300 plant root samples of various species encompassing agricultural, old agricultural, urban and natural ecosystems. Our method involved metabarcoding using 18S and ITS2 markers, histological techniques for direct AMF colonization observation and soil spore extraction and observation. Our findings revealed a predominance of AMF taxa assigned to Glomeraceae, regardless of the local conditions, and an almost complete absence of Gigasporales taxa. Land use had little effect on the AMF richness, diversity and community composition, while soil texture, pH and substantial unexplained stochastic variance drove their structuring in AlUla soils. Mycorrhization was frequently observed in the studied plant species, even in usually non-mycorrhizal plant taxa. Date palms and Citrus trees, representing two major crops in the region, displayed however a very low mycorrhizal frequency and intensity. AlUla soils had a very low concentration of spores, which were mostly small. This study generated new insight on AMF and specific behavioral features of these fungi in arid environments.

Publisher

Springer Science and Business Media LLC

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