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Biology subjects

Oduor, A.

Publications and source records attributed to Oduor, A..

2 recordsLinked to original sources

A native herbaceous community exerts a strong allelopathic effect on the woody range-expander Betula fruticosa

Biological invasions by range-expanding native and alien plant species often reduce native plant community diversity and productivity. Superior performance of some invasive plants over native plants is due to production of allelochemicals by invaders that suppress growth of native plants. Nevertheless, native plants can also produce allelopathic compounds, which may provide biotic resistance against invasive plant species, in accordance with the homeland security hypothesis. In support of the hypothesis, several previous studies found evidence for allelopathic effects of native plant species on alien plant species. However, as most of these studies tested allelopathic effects of single native plant species on invasive plant species, the contribution of allelopathy to the resistance of native plant communities to invasion has received considerably less attention. Here, we performed two competition experiments in a greenhouse to test for potential pairwise allelopathic effects on each other of a woody range-expander Betula fruticosa and a community of four native herbaceous species in China. We tested whether B. fruticosa and the herbaceous community differed in their competitive effects and responses, and whether these were changed by the presence of activated carbon - an allelopathy neutralizer in the soil. Results show that presence of activated carbon ameliorated suppressive effects of the resident herbaceous community on above-ground biomass of B. fruticosa. By contrast, presence of activated carbon tended to aggravate suppressive effects of B. fruticosa on the resident herbaceous community. Overall, these results provide support to the homeland security hypothesis and suggest that strong biotic resistance of the resident herbaceous community may limit invasion success of the woody range-expander B. fruticosa.

ecology↗

Drivers of the negative diversity-invasibility relationship: nutrient availablity, allelopathy, soil biota and soil legacy effects

Eltons diversity-invasibility hypothesis predicts that high-diversity native communities should be less easily invaded than low-diversity communities. Although various mechanisms have been proposed to explain it, it remains unclear which of those mechanisms is more important and whether they operate simultaneously. Using one pool of native plant species and one pool of invasive alien plant species that naturally co-occur in China, we here tested in four separate experiments whether nutrient availability, allelopathy, soil microbiota and soil-legacy effects can all mediate the diversity-invasibility relationship. While soil-nutrient availability, allelopathy, soil biota and soil-legacy effects separately influenced biomass production of alien plant species and native plant communities, our results suggest that only soil biota and allelopathy influenced diversity-invasibility relationship in our study system. Importantly, by excluding the potential effects of allelopathy and soil biota in the nutrient-competition experiment, nutrient competition alone is not necessarily related to the negative diversity-invasibility relationship.

ecology↗