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Interactions of Miscanthus × giganteus with microorganisms in degraded lands: potential for ecosystem restoration

Diana Polanská Nebeská; Karim Suhail Al Souki; Nayanika Borah; Kumar Pranaw; Josef Trögl
Reviews in Environmental Science and Bio/Technology · Vol. 25, Issue 1 · 2026

Abstract

Land degradation caused by industrial activity, pollution, and unsustainable land use poses a significant threat to global ecosystem functions. Miscanthus × giganteus (M × g), a sterile C4 perennial grass known for its high biomass productivity and tolerance to abiotic stress, has gained increasing attention as a phytomanagement crop for restoring degraded lands. A growing body of evidence suggests that the effectiveness of M × g in these environments is strongly mediated by its interactions with rhizospheric, endophytic, and mycorrhizal microorganisms. This review synthesizes current knowledge on the structure, function, and ecological roles of microbial communities associated with M × g, with a focus on their contributions to plant growth, nutrient acquisition, stress tolerance, and contaminant degradation. Particular emphasis is placed on plant growth-promoting rhizobacteria (PGPR), endophytes, and arbuscular mycorrhizal fungi (AMF), as well as their roles in enhancing soil microbial activity, carbon sequestration, and phytoremediation of heavy metals and petroleum-based pollutants. While numerous studies have demonstrated positive microbial effects on M × g performance under controlled conditions, field-based evidence remains limited. Future research should prioritize long-term, multi-scale investigations and the development of tailored microbial inoculants for use in phytomanagement systems. By integrating plant–microbe interactions, M × g cultivation can be optimized not only for biomass production but also for ecological restoration of degraded environments. Graphical Abstract

Bibliographic Information

JournalReviews in Environmental Science and Bio/Technology
PublisherSpringer
Publication Date2026-03-01
Publication Year2026
Volume25
Issue1
Document TypeJournal Article
Print ISSN1569-1705
eISSN1572-9826
DOI10.1007/s11157-025-09758-y

Access Information

NARA Access Coverage2002-01-01~Current
Journal Homepagehttps://www.springer.com/journal/11157
Publisher PageOpen Publisher Page
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