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October 5, 2025Plant and Cell Physiology3 citationsOpen Access

The Role of Soil Microbiota in the Control of Parasitic Weeds

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PPPornkanok PongpamornMZMichelle ZwartHBHarro J. Bouwmeester

Key Points

  • Soil microbiota has significant potential in controlling parasitic weeds, such as Striga and Orobanche.
  • Host-derived signaling molecules, including strigolactones, serve as targets for microbial biocontrol strategies.
  • Microbes demonstrate efficacy by directly antagonizing the parasite and enhancing host defense mechanisms.
  • Laboratory and field studies underline the importance of microbial interactions in managing agricultural losses.

Abstract

Abstract Parasitic weeds from the Orobanchaceae family, particularly Striga, Orobanche and Phelipanche spp., are responsible for substantial agricultural losses worldwide. A better understanding of the intricate chemical interaction between parasitic plants and their host crops, and the effect the rhizosphere microbiome may have on this, offers potential for developing sustainable and effective biocontrol strategies. We review the biology of parasitic plants, with a focus on host-derived signaling molecules such as strigolactones (SLs) and haustorium inducing factors (HIFs) that coordinate key stages of their lifecycle, and hence are potential targets for control through microorganisms. We highlight several examples of pathogenic microorganisms, and plant growth-promoting rhizobacteria (PGPR) and fungi (PGPF) that have been shown to suppress parasitic weeds. These microbes act through multiple mechanisms: direct antagonism of the parasite, enhancement of the host’s defense responses, and interference with chemical signaling between host and parasite. Both laboratory and field studies are reviewed to evaluate the efficacy and future potential of these biological control agents.

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Cite This Study

Pongpamorn et al. (2025) studied this question.

synapsesocial.com/papers/68e2537cd6d66a53c2474510https://doi.org/10.1093/pcp/pcaf125
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