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Ecological Impacts of Pteridium aquililium and Chromolaena odorata Invasions in Rangelands of the Bamenda Highlands

2025Open accessUniversity of Bamenda

In plain language

Invasive weeds pose an escalating challenge to livestock grazing across the Bamenda highlands. Field surveys evaluating 64 cross-section transects across foot hills, slopes, and hilltops examined the ecological impacts of two prominent invasive plants: Pteridium aquilinum and Chromolaena odorata. The assessments revealed extensive changes in vegetation composition, marked by a rise in weed presence and an overall species reduction of up to 61 percent. Chromolaena odorata severely harms native biodiversity, with species richness declining by nearly 72 percent from the margins to the centre of dense infestations. While Pteridium aquilinum causes slightly less species loss, it forms wider continuous monospecific patches and supports other associated weeds under its canopy. The invasions displace valuable forage grasses, including Setaria, Loudetia, and Panicum species on better soils, whilst elevating fuel loads and altering local fire regimes.

Key takeaways

  • Invasions by Chromolaena odorata and Pteridium aquilinum cause plant species reductions of up to 61 percent in the Bamenda highlands.
  • Species richness drops by almost 72 percent from the edge to the centre of dense Chromolaena odorata infestations, driving out most native plants.
  • Pteridium aquilinum forms extensive, continuous monospecific stands that harbour other undergrowth weeds beneath closed canopies.
  • The spread of these invasive weeds reduces palatable grasses for livestock and alters local fire regimes by increasing fuel loads.

Why it matters

Invasive weeds are degrading pasture quality across the Bamenda highlands, reducing the availability of nutritious grass for grazing livestock. By driving out native species and shifting local vegetation patterns, these plants harm local ecosystems and rangeland productivity. Understanding their distinct distribution patterns and impacts on pasture composition is essential for designing targeted landscape management interventions to protect pastoral livelihoods.

Commercialisation angle

The abstract outlines observational ecological research and does not detail any specific commercial applications, products, or practical intervention trials. The findings offer baseline ecological data that could inform rangeland managers, livestock policy bodies, and pastoral groups seeking to design control programmes. At this stage, however, the research remains early-stage ecological assessment with no described commercialisation pathway.

AI-generated from the published abstract. Always read the original work before citing.

Abstract

Weeds are a growing threat to livestock rearing in the grazing lands of the Bamenda highlands. The ecology of grazing lands in the Bamenda highlands is in a convergent evolution with increasing weed invasion. The recent dynamics has seen the increasing invasion of two notable weeds notably Pteridium aquililium and Chromolaena odorata in the region with different ecological repercussions. The study set out to study the ecological implications of these two species of weed in the grazing landscape. A total of 64 cross section transects were studied in different topographic units across the region both in high plateau areas and lowland areas. Quadrats of 1x1m were laid in foot hills, slopes and top of hill. Information relating to grass species composition, relative abundance, weed species and ground cover was obtained through this field evaluation. Soil analysis from different samples collected across the area was also performed. Results revealed change in vegetation composition with an increase in weeds in composition, reduction in relative abundance for palatable species and shifts in species. There is a significant reduction in native species in densely infested C. odorata sites in the area. Moreover, most native species are absent where C. odorata is abundant, and species richness declines by nearly 72% from the margin to the center of the infestation. In Bracken infested areas where its canopies are quite closed, other weed are associated to its invasion in the undergrowth notably Emilia pratemisa, Taraxacum sp and Alchemilla Cryptantha. Species reductions in fern infested pastures are not as great as C. odorata stands although Pteridium aquililium creates more continuous extensive patch sizes of monospecific stands than C. odorata discontinuous dense stands. Shifts and species reduction due to invasions reached 61%. Species shifts mostly concern Setaria sp. (S. sphacelata), Loudetia and Panicums on the better soils and with Andropogon, Paspalum and Imperata of medium size on the poorer soils. Fuel loads increase and modify fire regimes creating post fire succession species. Management require concerted actions among actors to curb invasions.

Research topics

  • Biological Control of Invasive Species
  • Ethnobotanical and Medicinal Plants Studies
  • African Botany and Ecology Studies

Read the original research

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DOI: 10.38124/ijisrt/25apr869

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