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microRNA maintains nutrient homeostasis in the symbiont-host interaction. | LitMetric

microRNA maintains nutrient homeostasis in the symbiont-host interaction.

Proc Natl Acad Sci U S A

Key Laboratory of Entomology and Pest Control Engineering, College of Plant Protection, Southwest University, Chongqing 400715, China.

Published: September 2024

AI Article Synopsis

  • Endosymbionts are crucial for providing essential nutrients like vitamin B6 (VB6) to their host organisms, such as aphids, which helps in their growth and reproduction.
  • The regulation of nutrient transport from the endosymbiont to the host involves a specific microRNA (miR-3024) that negatively impacts a gene responsible for nutrient transport, leading to increased mortality in aphids when miR-3024 is supplemented.
  • Research suggests using miR-3024 as a sustainable pest control strategy is viable, but it requires careful evaluation of its effects on non-target organisms and the balance of nutrient transport essential for the host's survival.

Article Abstract

Endosymbionts provide essential nutrients for hosts, promoting growth, development, and reproduction. However, the molecular regulation of nutrient transport from endosymbiont to host is not well understood. Here, we used bioinformatic analysis, RNA-Sequencing, luciferase assays, RNA immunoprecipitation, and in situ hybridization to show that a bacteriocyte-distributed gene (multidrug resistance-associated protein 4) is negatively regulated by a host (aphid)-specific microRNA (miR-3024). Targeted metabolomics, microbiome analysis, vitamin B6 (VB6) supplements, 3D modeling/molecular docking, in vitro binding assays (voltage clamp recording and microscale thermophoresis), and functional complementation of were jointly used to show that the miR-3024/ axis controls endosymbiont ()-produced VB6 transport to the host. The supplementation of miR-3024 increased the mortality of aphids, but partial rescue was achieved by providing an external source of VB6. The use of miR-3024 as part of a sustainable aphid pest-control strategy was evaluated by safety assessments in nontarget organisms (pollinators, predators, and entomopathogenic fungi) using virus-induced gene silencing assays and the expression of miR-3024 in transgenic tobacco. The supplementation of miR-3024 suppresses expression, restricting the number of membrane channels, inhibiting VB6 transport, and ultimately killing the host. Under aphids facing stress conditions, the endosymbiont titer is decreased, and the VB6 production is also down-regulated, while the aphid's autonomous inhibition of miR-3024 enhances the expression of and then increases the VB6 transport which finally ensures the VB6 homeostasis. The results confirm that miR-3024 regulates nutrient transport in the endosymbiont-host system and is a suitable target for sustainable pest control.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC11388328PMC
http://dx.doi.org/10.1073/pnas.2406925121DOI Listing

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