AI Article Synopsis

  • Poa annua, a common weed, has developed resistance to multiple herbicides and this study focuses on a specific resistant biotype known as POAAN-R3.
  • Researchers explored how genes related to non-target site resistance (NTSR) behave in this biotype when exposed to the herbicide trifloxysulfuron, despite its known mutation at the target site.
  • The findings indicate that POAAN-R3 shows a unique gene expression response, particularly in genes related to transport and oxidative stress, suggesting these additional mechanisms may enhance the plant's ability to survive herbicide treatments.

Article Abstract

Background: Poa annua is a pervasive grassy, self-pollinating, weed that has evolved resistance to 10 different herbicide modes-of-action, third most of all weed species. We investigated constitutive overexpression of genes associated with non-target site resistance (NTSR) in POAAN-R3 and the response of those genes when treated with trifloxysulfuron despite the biotype having a known target site mutation in acetolactate synthase (ALS).

Results: Despite having an ALS target site mutation, POAAN-R3 still had a transcriptomic response to herbicide application that differed from a susceptible biotype. We observed differential expression of genes associated with transmembrane transport and oxidation-reduction activities, with differences being most pronounced prior to herbicide treatment.

Conclusions: In the P. annua biotype we studied with confirmed target site resistance to ALS inhibitors, we also observed constitutive expression of genes regulating transmembrane transport, as well as differential expression of genes associated with oxidative stress after treatment with trifloxysulfuron. This accumulation of mechanisms, in addition to the manifestation of target site resistance, could potentially increase the chance of survival when plants are challenged by different modes of action.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC8518846PMC
http://dx.doi.org/10.1002/ps.6541DOI Listing

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