Volatile signaling in plant- Metarhizium-insect interactions: Implications for nitrogen cycling

  • Proc Natl Acad Sci U S A. 2026 Jun 2;123(22):e2603282123. doi: 10.1073/pnas.2603282123.
Xingyuan Tang  #  1 Ting Feng  #  2 Chaonan Yu  1 Meihong Ni  1 Yubo Zhang  1 Xin Ma  1 Xinmiao Wang  1 Jiani Chen  2 Wenqi Shi  2 Raymond J St Leger  3 Jianhua Huang  2 Weiguo Fang  1
Affiliations
  • 1. State Key Laboratory of Vegetation structure, Function and Construction (VegLab), College of Life Science, Zhejiang University, Hangzhou 310058, China.
  • 2. Institute of Insect Sciences, College of Agriculture and Biotechnology, Zhejiang University, Hangzhou 310058, China.
  • 3. Department of Entomology, University of Maryland, College Park, MD 20742.
  • # Contributed equally.
Abstract

Nitrogen exchange between Plants and insects is a major component of ecosystem nitrogen cycling. Endophytic insect pathogenic fungi transfer insect-derived nitrogen to Plants through symbiotic associations mediated by Fungal mycelia, enabling Plants to thrive even after losing nitrogen to insects. However, the mechanisms underlying this process remain unexplored. Here, we show that the widespread endophytic entomopathogen Metarhizium robertsii degrades the common root-derived Antifungal compound caulilexin C to produce the volatile 1-methoxyindole. This compound is recognized by the Or74a Olfactory Receptor in Drosophila melanogaster larvae and attracts multiple Dipteran species to the plant-Metarhizium consortium. The recruited insects are subsequently infected and consumed, resulting in enhanced insect-derived nitrogen transfer to the Plants. This self-reinforcing mechanism strengthens the plant-fungus symbiosis and reveals a pathway contributing to ecosystem nitrogen flux.

Keywords
Metarhizium; endophyte; endophytic insect pathogenic fungi; entomopathogenic fungi; nitrogen cycling.
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