NARA Discovery
Article Details
← Back to Search Results
Journal Article

Belowground traits of perennial grasses shape restoration strategies in tropical grasslands

Moses M. Ngugi; Svenja C. Stock; Kevin Z. Mganga; Iryna Loginova; Rosepiah Munene; Benard Mweu; Thomas Akuja; Michaela A. Dippold
Plant and Soil · Vol. 516, Issue 2 · pp. 2311-2329 · 2025

Abstract

Background and Aims Multiple biotic and abiotic stressors increasingly threaten tropical grasslands, yet restoration efforts predominantly prioritise aboveground traits, neglecting critical belowground traits essential for ecosystem resilience and recovery. We proposed that these neglected traits shape ecosystem biodiversity, productivity, and stress tolerance. This study assessed biomass yield, root and rhizosphere traits, resource acquisition strategies, and soil microbial communities in selected perennial grasses used for forage and seed-based restoration. We also evaluated enzymatic activity and microbial functional potential related to carbon, nitrogen, and phosphorus cycling. Methods In a long-term restoration project in a tropical semi-arid grassland, we measured plant biomass, root morphology, mycorrhization, extracellular enzyme activities, and rhizosphere microbial community composition and function. Results Eragrostis superba had the highest shoot biomass, while Cenchrus ciliaris showed the highest root biomass and mycorrhization. The root trait–microbiome associations revealed distinct resource acquisition strategies: Chloris roxburghiana and Enteropogon macrostachyus displayed a ‘do-it-yourself’ strategy supported by copiotrophic rhizomicrobiome, while C. ciliaris displayed an ‘outsourcing’ strategy. Conversely, E. superba displayed high intraspecific root trait variation, exhibiting partially ‘do-it-yourself’ and ‘outsourcing’ traits. Grass species significantly influenced fungal, but not bacterial, community composition and favoured nutrient recycling over direct nutrient acquisition, with recycling strategies varying among species. Conclusion Root traits and belowground plant–microbe interactions shape ecosystem function in tropical grassland restoration. Selected species occupied distinct successional niches, from early colonisation ( C. ciliaris ) to late-stage productivity ( E. superba ). Integrating these traits into restoration frameworks is essential for enhancing ecosystem resilience, productivity, and successful long-term ecological restoration outcomes.

Bibliographic Information

JournalPlant and Soil
PublisherSpringer
Publication Date2025-11-01
Publication Year2025
Volume516
Issue2
Pages2311-2329
Document TypeJournal Article
Print ISSN0032-079X
eISSN1573-5036
DOI10.1007/s11104-025-07858-w

Access Information

NARA Access Coverage1948-01-01~Current
Journal Homepagehttps://www.springer.com/journal/11104
Publisher PageOpen Publisher Page
Full-text access depends on NARA's subscribed coverage and institutional access.