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March 10, 20260 citationsOpen Access

Interannual Variation in Poisonous Plant Assemblages on Central Kazakhstan Pastures Across Landscapes Under Contrasting Hydroclimatic Conditions

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YPYelena PozdnyakovaAMAigul MurzatayevaKaraganda Medical UniversityGOGaliya OmarovaKaraganda Medical University

Key Points

  • The aim is to understand how variations in hydroclimatic conditions affect poisonous plant assemblages in Central Kazakhstan pastures.
  • Analyzed poisonous plant assemblages across three rangelands in different hydroclimatic conditions.
  • Recorded 32 toxic vascular plant species during a dry year and a wet year.
  • Investigated changes in species richness and floristic core across years.
  • Xeromorphic pastures displayed stable plant communities over the two years.
  • The wet year increased recruitment of wet-associated poisonous taxa specifically in floodplain areas.
  • Flood-related species posed increased grazing hazards, while steppe pastures maintained a constant background risk.

Abstract

Pasture ecosystems provide essential ecosystem services, yet poisonous plants create persistent veterinary and economic risks. We examined how hydroclimatic variability restructures the poisonous-plant assemblage across three Central Kazakhstan rangelands during an extremely dry year (2023) and an exceptionally wet year (2024). A total of 32 toxic vascular plant species were recorded. Xeromorphic pastures maintained a stable floristic core across years, whereas the wet year triggered recruitment of wet-associated poisonous taxa (hydrophytic/hygrophytic group) exclusively in the Nura River floodplain and increased species richness. Thus, interannual variability was controlled by hydrologically sensitive habitats rather than wholesale community turnover. The principal grazing hazard was associated with flood-related species (e.g., Cicuta virosa, Oenanthe aquatica) and persistent forage contaminants (Datura/Hyoscyamus, Lolium temulentum). These findings indicate that toxic-plant risk follows an asymmetric seasonal pattern: episodic post-flood hazard in floodplains combined with constant background risk in steppe pastures. Therefore, grazing management should integrate event-based monitoring of wet habitats with continuous forage-quality control.

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Cite This Study

Pozdnyakova et al. (2026) studied this question.

synapsesocial.com/papers/69af957570916d39fea4d0c3https://doi.org/10.3390/d18030165
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