| Fordyce, J.A., Marion, Z.H., and Shapiro, A.M. 2005. Phenological variation in chemical defense of the pipevine swallowtail, Battus philenor. J. Chem. Ecol. 31:2835-2846. |
| |
| Fordyce, J.A. 2000. A model without a mimic: Aristolochic acids from the California pipevine swallowtail, Battus philenor hirsuta, and its host plant, Aristolochia californica. J. Chem. Ecol. 26:2567-2578. |
| |
| Papaj, D.R., Feeny, P., Sachdev-Gupta, K., and Rosenberry, L. 1992. D-(+)-pinitol, an oviposition stimulant for the pipevine swallowtail butterfly, Battus philenor. J. Chem. Ecol. 18:799-815. |
| |
| Urzúa, A., Rodríguez, R., and Cassels, B. 1987. Fate of ingested aristolochic acids in Battus archidamas. Biosci. Biotechn. Biochem. 15:687-690. |
| |
| Urzúa, A., and Priestap, H. 1985. Aristolochic acids from Battus polydamas. Biosci. Biotechn. Biochem. 13:169-170. |
| |
| Eisner, T., Kluge, A.F., Ikeda, M.I., Meinwald, Y.C., and Meinwald, J. 1971. Sesquiterpenes in the osmeterial secretion of a papilionid butterfly, Battus polydamas. J. Insect Physiol. 17:245-250. |
| |