Unveiling detoxifying symbiosis and dietary influence on the Southern green shield bug microbiota.

FEMS Microbiol Ecol

Department of Microbiology, Radboud Institute for Biological and Environmental Sciences (RIBES), Radboud University, PO Box 9010, 6500 GL Nijmegen, The Netherlands.

Published: November 2024

AI Article Synopsis

  • The Southern green shield bug, Nezara viridula, is an invasive pest that threatens crops and global food security due to its feeding habits.
  • This study investigates how the bug's microbial community helps it detoxify the harmful plant metabolite 3-nitropropionic acid (NPA), finding that six out of eight strains can detoxify this toxin.
  • Additionally, it examines how diet affects the gut microbes of N. viridula, revealing that a single-plant diet changes microbial composition and that core microbes support each other while inhibiting transient ones, enhancing the bug's resilience to plant defenses.

Article Abstract

The Southern green shield bug, Nezara viridula, is an invasive piercing and sucking pest insect that feeds on crops and poses a threat to global food production. Insects live in close relationships with microorganisms providing their host with unique capabilities, such as resistance to toxic plant metabolites. In this study, we investigated the resistance to and detoxification of the plant metabolite 3-nitropropionic acid (NPA) by core and transient members of the N. viridula microbial community. Microbial community members showed a different tolerance to the toxin and we determined that six out of eight strains detoxified NPA. Additionally, we determined that NPA might interfere with the biosynthesis and transport of l-leucine. Moreover, our study explored the influence of diet on the gut microbial composition of N. viridula, demonstrating that switching to a single-plant diet shifts the abundance of core microbes. In line with this, testing pairwise microbial interactions revealed that core microbiota members support each other and repress the growth of transient microorganisms. With this work, we provide novel insights into the factors shaping the insect gut microbial communities and demonstrate that N. viridula harbours many toxin-degrading bacteria that could support its resistance to plant defences.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC11585277PMC
http://dx.doi.org/10.1093/femsec/fiae150DOI Listing

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