Sphingidae Taxonomic Inventory

Creating a taxonomic e-science

Literature

Authorssort descendingYearTitle
B. Dvořák2022Eine Revision der Cocytiina Tutt, 1904 mit besonderer Berücksichtigung der Gattung Panogena Rothschild & Jordan, 1903 (Lepidoptera: Sphingidae)
M. Ernst, Nothias, L. - F., van der Hooft, J. J. J., Silva, R. R., Saslis-Lagoudakis, C. H., Grace, O. M., Martinez-Swatson, K., Hassemer, G., Funez, L. A., Simonsen, H. T., Medema, M. H., Staerk, D., Nilsson, N., Lovato, P., Dorrestein, P. C., Rønsted, N.2019Assessing specialized metabolite diversity in the cosmopolitan plant genus Euphorbia L.
L. S. Fink1995Foodplant effects on colour morphs of Eumorpha fasciata caterpillars (Lepidoptera: Sphingidae)
H. Harbich1988Zur Monophagie von Hyles euphorbiae euphorbiae (Lepidoptera: Sphingidae)
J. D. Holloway1987The moths of Borneo: superfamily Bombycoidea: families Lasiocampidae, Eupterotidae, Bombycidae, Brahmaeidae, Saturniidae, Sphingidae
A. K. Hundsdoerfer, Buchwalder, K., O'Neill, M. A., Dobler, S.2019Chemical ecology traits in an adaptive radiation: TPA-sensitivity and detoxification in Hyles and Hippotion (Sphingidae, Lepidoptera) larvae
K. Nagamine, Hojoh, K., Nagata, S., Shintani, Y.2019Rearing Theretra oldenlandiae (Lepidoptera: Sphingidae) larvae on an artificial diet
S. N. Omonov, Raximov M. S.2023The Shirach hawkmoth - Hyles centralasiae, biological properties in relation to food. Pp. 59-62 in:
A. R. Pittaway1983Of foodplants and hawkmoths
T. Yamabe, Kajitani, R., Toyoda, A., Itoh, T.2023Chromosomal-level genome assembly of the Coffee Bee Hawk Moth reveals the evolution of chromosomes and the molecular basis of distinct phenotypes
Scratchpads developed and conceived by (alphabetical): Ed Baker, Katherine Bouton Alice Heaton Dimitris Koureas, Laurence Livermore, Dave Roberts, Simon Rycroft, Ben Scott, Vince Smith