Aug 2026· Archives of Microbiology· Vol 208· 0 citations· 176 references
Medicine
TL;DR
The theoretical basis for elucidating the mechanisms underlying flavonoid-mediated plant-rhizosphere microbial interactions is provided, advancing the precise regulation of the rhizosphere microecology, and supporting the development of sustainable agriculture.
Plant–microbe interaction is an essential component of sustainable agriculture which promotes plant growth, improves nutrient assimilation, and enhances plant resistance to various environmental stress conditions. Beneficial microbes, such as rhizobacteria, mycorrhizal fungi, and endophytes, boost plant functions using...
Bishal Sarkar, Saumendu Deb Roy· Discover Plants· 0 citations
Plants, despite their immobile nature, demonstrate an incredible array of adaptive strategies, which position them as opportunistic organisms in their dynamic interactions with the microbial world. Microbial communities have been integral to plant evolution, helping early land plants adaptation to environmental challen...
Manisha Phour, G. Kumar, S. Sindhu et al.· Discover Plants· 0 citations
This review critically examines the current knowledge on the functional roles of arbuscular mycorrhizal fungi and plant growth-promoting rhizobacteria in pistachio production and identified the key knowledge gaps and research priorities required to improve the consistency, scalability, and field validation of microbiom...
L. Vera, J. Retamal-Salgado, G. Tortella et al.· Plants· 1 citation
The rhizosphere is a key ecological niche where plants interact with microorganisms, and its health directly affects plant growth, development, and disease resistance. Existing theories have laid an important foundation for understanding plant-microbe interactions. Among them, the biological market theory interprets th...
Wei Qiu, Xiu-Feng Tang, Qirong Shen et al.· Plant, Cell and Environment· 1 citation
Endophytic fungi form complex symbiotic associations with medicinal plants via long-term coevolution. Such cross-kingdom interactions substantially modulate flavonoid biosynthesis in host plants. This review dissects the mechanisms through which endophytic fungi elevate flavonoid accumulation in medicinal plants. We fi...