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1. Acute exposure of Nicotine during Drosophila puncture injury activates an epidermal wound response reaction.

2. Translating Research as an Approach to Enhance Science Engagement.

4. Toll pathway is required for wound-induced expression of barrier repair genes in the Drosophila epidermis.

5. Drosophila Embryos as a Model for Wound-Induced Transcriptional Dynamics: Genetic Strategies to Achieve a Localized Wound Response.

6. Microinjection wound assay and in vivo localization of epidermal wound response reporters in Drosophila embryos.

7. Serine proteolytic pathway activation reveals an expanded ensemble of wound response genes in Drosophila.

8. The functions of grainy head-like proteins in animals and fungi and the evolution of apical extracellular barriers.

9. Duox, Flotillin-2, and Src42A are required to activate or delimit the spread of the transcriptional response to epidermal wounds in Drosophila.

10. Multiple transcription factor codes activate epidermal wound-response genes in Drosophila.

11. Two small regulatory RNAs establish opposing fates of a developmental axis.

12. Specification of adaxial cell fate during maize leaf development.

13. microRNA-mediated repression of rolled leaf1 specifies maize leaf polarity.

14. A conserved microRNA signal specifies leaf polarity.

15. Leaf senescence is delayed in tobacco plants expressing the maize homeobox gene knotted1 under the control of a senescence-activated promoter.

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