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Revillon, S.

Publications and source records attributed to Revillon, S..

2 recordsLinked to original sources

How does selection for flowering in maize shapes defenses components against the European Corn Borer ?

Understanding how selection for flowering time affects maize susceptibility to the European corn borer (ECB, Ostrinia nubilalis) is essential in the context of climate change and increasing pest pressures. We investigated the consequences of divergent selection for flowering time on maize defense and susceptibility traits using two genetic backgrounds (MBS847 and F252). Three complementary approaches were combined: leaf palatability tests, ECB field incidence dynamics surveys, and biochemical analyses of maize stem walls. In the MBS847 background, early-flowering families exhibited lower content of defense compounds, higher leaf palatability, and higher field infestation compared to late-flowering families. In contrast, no significant differences were observed between early and late populations in the F252 background. Differences in susceptibility between families were associated with variation in stem biochemical composition, including fiber components which influence stem rigidity and resistance to ECB. Our results indicate that selection for flowering time can modify plant defense traits and susceptibility in a genetic-background-dependent manner. These findings highlight the interaction between plant phenology, biochemical defenses, and insect herbivory, with implications for breeding and adaptation under changing environmental conditions.

ecology↗

Effects of maize development and phenology on the field infestation dynamics of the European Corn Borer

Phenological match/mismatch between cultivated plants and their pest could impact pest infestastion dynamics in the field. To explore how such match/mismatch of plant and pest phenologies may interact with plant defense dynamics, we studied the infestation dynamics of maize by one of its main pests in Europe, the European Corn Borer (Ostrinia nubilalis; Lepidoptera: Crambidae). A two-year field experiment was carried out on a collection of 23 maize inbred lines contrasted for their earliness. Each inbred line was sown at three different dates in order to expose different developmental stages of maize to natural European corn borer infestation. The effect of the sowing date depended on the inbred line, the pest generation and the year. In 2021, the final pest incidence ranged from 36% to 91% depending on inbred lines and sowing date. In 2022, it ranged from 2% to 77%. This variability in final pest incidence can be related to variations in plant development during plant exposure to pest infestation. However, this relationship was not straightforward. Indeed, the shape and intensity of the relationship depended on the timing of the onset of the pest infestation. When infestation occurred while plants were in a vegetative stage, a non-linear relationship between development and pest incidence was observed with the least and most developed plants being the most infested. When infestation occurred when all plants were in the mature phase, the most developed plants were the least infested. Our results highlight the effect of plant-pest phenological match/mismatch on pest infestation dynamics and underline the importance of taking plant-pest interactions into account to propose relevant control strategies.

ecology↗