Sphingidae Taxonomic Inventory

Creating a taxonomic e-science

Literature

Authorssort ascendingYearTitle
I. J. Kitching2006The biology of death's head hawkmoths, lepidopteran kleptoparasites of honey bees
M. Khan, Joshi, M., Espeland, M., Huemer, P., Lopez-Vaamonde, C., Mutanen, M.2024Patterns of speciation in a parapatric pair of Saturnia moths as revealed by target capture
A. Y. Kawahara, Mignault, A. A., Regier, J. C., Kitching, I. J., Mitter, C.2009Phylogeny and biogeography of hawkmoths (Lepidoptera: Sphingidae): evidence from five nuclear genes
A. Y. Kawahara, Barber J. R.2015Tempo and mode of antibat ultrasound production and sonar jamming in the diverse hawkmoth radiation
S. Kamaluddin, Younus, M. F., Attique, T.2014A cladistic analysis of the family Sphingidae (Lepidoptera) from Pakistan and Azad Kashmir
Z. - H. Jiang, Wang, J. - X., Xu, Z. - B., Kitching, I. J., Huang, C. - L., Hu, S. - J., Xiao, Y. - L.2024Revision of the genus Rhagastis Rothschild & Jordan, 1903 (Lepidoptera: Sphingidae) from China, based on morphological and phylogenetic analyses
A. K. Hundsdoerfer, Rubinoff, D., Attié, M., Wink, M., Kitching, I. J.2009A revised molecular phylogeny of the globally distributed hawkmoth genus Hyles (Lepidoptera: Sphingidae), based on mitochondrial and nuclear DNA sequences
A. K. Hundsdoerfer, Päckert, M., Kehlmaier, C., Strutzenberger, P., Kitching, I. J.2017Museum archives revisited: Central Asiatic hawkmoths reveal exceptionally high late Pliocene species diversification (Lepidoptera, Sphingidae)
A. Hundsdoerfer, Kitching, I., Wink, M.2003The molecular phylogeny of the {IHyles euphorbiae} complex (Lepidoptera: Sphingidae)
A. K. Hundsdoerfer, Kitching, I. J., Wink, M.2005A molecular phylogeny of the hawkmoth genus Hyles (Lepidoptera: Sphingidae, Macroglossinae)
A. K. Hundsdoerfer, Kitching, I. J., Wink, M.2005The phylogeny of the Hyles euphorbiae complex (Lepidoptera: Sphingidae): molecular evidence from sequence data and ISSR-PCR fingerprints
Y. - X. Huang, Zhu, X. - S., Zhang, H., Qi, L. Q., Jin, H. Z., Bian, C. L., Chen, W. L., Wang, X.2022Complete mitochondrial genome of Kentrochrysalis streckeri (Lepidoptera: Sphingidae) and phylogenetic analysis
Y. - X. Huang, Xing, Z. - P., Zhang, H., Xu, Z. - B., Tao, L. - L., Hu, H. - Y., Kitching, I. J., Wang, X.2022Characterization of the complete mitochondrial genome of eight diurnal hawkmoths (Lepidoptera: Sphingidae): new insights into the origin and evolution of diurnalism in sphingids
M. Heikkilä, Mutanen, M., Wahlberg, N., Sihvonen, P., Kaila, L.2015Elusive ditrysian phylogeny: an account of combining systematized morphology with molecular data (Lepidoptera)
J. Haxaire, Salesne, T., Kitching, I. J.2022Description of the early stages of Compsulyx cochereaui (Viette, 1971) and a discussion of its systematic position (Lepidoptera, Sphingidae, Smerinthinae, Ambulycini)
C. A. Hamilton, St Laurent, R. A., Dexter, K., Kitching, I. J., Breinholt, J. W., Zwick, A., Timmermans, M. J. T. N., Barber, J. R., Kawahara, A. Y.2019Phylogenomics resolves major relationships and reveals significant diversification rate shifts in the evolution of silk moths and relatives.
S. Haddad, Shin, S., Lemmon, A. R., Lemmon, E. M., Svacha, P., Farrell, B., Ślipiński, A., Windsor, D., McKenna, D. D.2017Anchored hybrid enrichment provides new insights into the phylogeny and evolution of longhorned beetles (Cerambycidae)
H. R. Ghanavi, Twort, V., Hartman, T. J., Zahiri, R., Wahlberg, N.2022The (non) accuracy of mitochondrial genomes for family-level phylogenetics in Erebidae (Lepidoptera)
R. Feuda, Marlétaz, F., Bentley, M. A., Holland, P. W. H.2016Conservation, duplication, and divergence of five opsin genes in insect evolution
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.
B. Dvořák2022Eine Revision der Cocytiina Tutt, 1904 mit besonderer Berücksichtigung der Gattung Panogena Rothschild & Jordan, 1903 (Lepidoptera: Sphingidae)
D. Du, Huang, Y., Naumann, S., Kitching, I. J., Xu, Z., Sun, Y., Wang, X.2022Mitochondrial genomes of two wild silkmoths, Samia watsoni and Samia wangi (Lepidoptera: Saturniidae), and their phylogenetic implications
Y. A. Derzhavets1994Phylogenetic interrelations of the sphinx moths of the genus Hyles Hbn. (Lepidoptera, Sphingidae)
Y. A. Derzhavets2002The structure of genitalia in Palaearctic sphinx moths (Lepidoptera, Sphingidae)
M. Deng, Zwick, A., Chen, Q., Liao, C. - Q., Wang, W., Wang, X., Huang, G. - H.2023Phylogeny and classification of Endromidae (Lepidoptera: Bombycoidea) based on mitochondrial genomes
T. Decaëns, Rougerie R.2008Descriptions of two new species of Hemileucinae (Lepidoptera: Saturniidae) from the region of Muzo in Colombia - evidence from morphology and DNA barcodes
S. M. Daghmoumi2018A molecular phylogeny of the tribe Ambulycini (family: Sphingidae)
M. Cheng, Liu, Y., Zheng, X., Zhang, R., Feng, K., Yue, B., Du, C., Zhou, C.2022Characterization of seventeen complete mitochondrial genomes: structural features and phylogenetic implications of the lepidopteran insects
A. - P. Cheng, Huang, C. - C., Cheng, Y. - T., Tseng, Y. - W., Wang, C. - C., Lai, I. - L., Hung, K. - H.2022Complete mitogenome of Antheraea formosana Sonan, 1937 (Lepidoptera: Saturniidae): an endemic silkmoth in Taiwan
D. - B. Chen, Zhang, R. - S., Jin, X. - D., Yang, J., Li, P., Liu, Y. - Q.2021First complete mitochondrial genome of Rhodinia species (Lepidoptera: Saturniidae): genome description and phylogenetic implication
N. Chazot, Panara, S., Zilbermann, N., Blandin, P., Le Poul, Y., Cornette, R., Elias, M., Debat, V.2015Morpho morphometrics: shared ancestry and selection drive the evolution of wing size and shape in Morpho butterflies
L. W. Cardoso2015Contribuição de marcadores morfológicos e moleculares na elucidação da sistemática de Ambulycini (Lepidoptera, Sphingidae, Smerinthinae)
J. T. Burke, Peigler R. S.2009Phylogenetic analysis of Anisota (Insecta: Lepidoptera: Saturniidae) based on scolus size and structure of mature larvae
J. W. Breinholt, Kawahara A. Y.2013Phylotranscriptomics: saturated third codon positions radically influence the estimation of trees based on next-gen data
J. W. Breinholt, Earl, C., Lemmon, A. R., Moriarty_Lemmon, E., Xiao, L., Kawahara, A. Y.2017Resolving relationships among the megadiverse butterflies and moths with a novel pipeline for anchored phylogenomics
N. Beerli, Bärtschi, F., Ballesteros-Mejia, L., Kitching, I. J., Beck, J.2019How has the environment shaped geographical patterns of insect body sizes? A test of hypotheses using sphingid moths
J. Beck, Kitching, I. J., Linsenmair, K. E.2006Measuring range sizes of South-East Asian hawkmoths (Lepidoptera: Sphingidae): effects of scale, resolution and phylogeny
J. Beck, Kitching, I. J., Linsenmair, K. E.2006Diet breadth and host plant relationships of Southeast-Asian sphingid caterpillars
D. A. Baum, Small, R. L., Wendel, J. F.1998Biogeography and floral evolution of baobabs ({IAdansonia}, Bombacaceae) as inferred from multiple data sets
Y. Basset, Lamarre, G. P. A., Ratz, T., Segar, S. T., Decaëns, T., Rougerie, R., Miller, S. E., Perez, F., Bobadilla, R., Lopez, Y., Ramirez, J. A., Aiello, A., Barrios, H.2017The Saturniidae of Barro Colorado Island, Panama: a model taxon for studying the long-term effects of climate change?
S. R. Anderson, Wiens J. J.2017Out of the dark: 350 million years of conservatism and evolution in diel activity patterns in vertebrates
The_Angiosperm_Phylogeny_Group2016An update of the Angiosperm Phylogeny Group classification for the orders and families of flowering plants: APG IV

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Scratchpads developed and conceived by (alphabetical): Ed Baker, Katherine Bouton Alice Heaton Dimitris Koureas, Laurence Livermore, Dave Roberts, Simon Rycroft, Ben Scott, Vince Smith