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Gerhard, D.

Publications and source records attributed to Gerhard, D..

2 recordsLinked to original sources

The neonicotinoid acetamiprid is highly toxic to wild non-target insects

Although pesticides are seen as one of the main drivers of insect decline, there are still only few studies that assess their effects on non-target species under field conditions. Here we investigated the effects of the neonicotinoid insecticide Mospilan(R)SG (active ingredient acetamiprid) on plant bugs (Heteroptera: Miridae), a dominant group of European grassland insect communities. Abundance of three focal mirid species was reduced by up to 78% two days after field exposure at concentrations expected at field margins, with mortality varying considerably among species. Follow-up feeding assays with insecticide-treated host plants in the greenhouse and controlled dose-response assays in the laboratory confirmed the strong negative effects on non-target species. Strikingly, the neonicotinoid was nearly 10,000 times more toxic to plant bugs than to honeybees. In addition, male bugs were 20 times more sensitive than females in two of the three tested species. Thus, continuous exposure to neonicotinoids in the field may reduce the plant bug populations and promote a shift towards more insecticide-tolerant species, altering community composition. We suggest that sex-specific sensitivity should be considered in risk assessment and conclude that the real risk to non-target insects is currently greatly underestimated.

ecology↗

Relative roles of genetic variation and phenotypic plasticity in the invasion of monkeyflower Erythranthre gutatta in New Zealand

Evolutionary processes which increase the probability of an introduced plant species becoming invasive include high levels of genetic diversity and phenotypic plasticity. Naturalised in New Zealand, monkeyflower, (Erythranthre gutatta), a clonally spreading herb of waterways and seepage areas native to the Western USA, shows marked variation in a range of vegetative, reproductive and inflorescence traits. We used two common gardens differing in elevation to explore the relative contribution of genetic versus plastic variation within nine traits among 34 monkeyflower clones from across the New Zealand South Island. We looked for evidence of clinal variation across elevation gradients and for home site advantage. We found both high genetic diversity and trait plasticity explain the observed variation, although less evidence for adaptive plasticity. Most genetic variation was observed in the lowland garden (9m a.s.l.), where the overall trend was for above ground dry weight to be lower, and horizontal shoot length greater, than at the montane garden (560m a.s.l). We found no evidence of local adaptation to any of the measured environmental variables. However, we observed a pattern of higher biomass and higher plasticity at lower versus higher elevations and in clones originating from lower elevation sites.

ecology↗