Bibliography:Bactrocera umbrosa
Publication list for Bactrocera umbrosa sorted according to research topics
Contents
- 1 general biology - morphology - evolution (3)
- 2 identification/taxonomy (1)
- 3 control - general (1)
- 4 biocontrol - natural enemies (1)
- 5 quarantine treatments/regulations/aspects (1)
- 6 environment - cropping system/rotation (1)
- 7 surveys/sampling/distribution (5)
- 8 pheromones/attractants/traps (6)
- 9 molecular biology - genes (1)
- 10 review (1)
general biology - morphology - evolution (3)
Austral Entomology (2019) 58, 602-613
Matt N. Krosch, Mark K. Schutze, Jaye Newman, Francesca Strutt, Litticia M. Bryant, Jacinta McMahon and Anthony R. Clarke (2019)
In the footsteps of Wallace: population structure in the breadfruit fruit fly, Bactrocera umbrosa (F.) (Diptera: Tephritidae), suggests disjunction across the Indo-Australian Archipelago
Annals of the Entomological Society of America (2018) 111, 239-264
Diego F. Segura, Silvina A. Belliard, M. Teresa Vera, Guillermo E. Bachmann, M. Josefina Ruiz, Flavia Jofre-Barud, Patricia C. Fernández, M. Liza López and Todd E. Shelly (2018)
Plant chemicals and the sexual behavior of male tephritid fruit flies
Phytoparasitica (1998) 26, 129-148
J.E. Peña, A.I. Mohyuddin and M. Wysoki (1998)
A review of the pest management situation in mango agroecosystems
identification/taxonomy (1)
Pest Management Science (2010) 66, 379-384
Tock H. Chua, Yi Vern Chong and Saw Hoon Lim (2010)
Species determination of Malaysian Bactrocera pests using PCR-RFLP analyses (Diptera: Tephritidae)
control - general (1)
Bulletin of Entomological Research (2020) 110, 15-21
K.-H. Tan (2020)
Recaptures of feral Bactrocera dorsalis and B. umbrosa (Diptera: Tephritidae) males after feeding on methyl eugenol
biocontrol - natural enemies (1)
Proceedings of the Hawaiian Entomological Society (2015) 47, 55-66
Luc Leblanc, Harry Fay, Fernando Sengebau, Michael San Jose, Daniel Rubinoff and Rui Pereira (2015)
A survey of fruit flies (Diptera: Tephritidae: Dacinae) and their Opiine parasitoids (Hymenoptera: Braconidae) in Palau
quarantine treatments/regulations/aspects (1)
Australian Journal of Entomology (2003) 42, 95-108
Robert G. Hollingsworth, Richard AI Drew, Allan J. Allwood, Meredith Romig, Maclean Vagalo and Francis Tsatsia (2003)
Host plants and relative abundance of fruit fly (Diptera: Tephritidae) species in the Solomon Islands
environment - cropping system/rotation (1)
Journal of Chemical Ecology (2002) 28, 1161-1172
Keng-Hong Tan, Ritsuo Nishida and Yock-Chai Toong (2002)
Floral synomone of a wild orchid, Bulbophyllum cheiri, lures Bactrocera fruit flies for pollination
surveys/sampling/distribution (5)
Austral Entomology (2019) 58, 602-613
Matt N. Krosch, Mark K. Schutze, Jaye Newman, Francesca Strutt, Litticia M. Bryant, Jacinta McMahon and Anthony R. Clarke (2019)
In the footsteps of Wallace: population structure in the breadfruit fruit fly, Bactrocera umbrosa (F.) (Diptera: Tephritidae), suggests disjunction across the Indo-Australian Archipelago
Proceedings of the Hawaiian Entomological Society (2015) 47, 55-66
Luc Leblanc, Harry Fay, Fernando Sengebau, Michael San Jose, Daniel Rubinoff and Rui Pereira (2015)
A survey of fruit flies (Diptera: Tephritidae: Dacinae) and their Opiine parasitoids (Hymenoptera: Braconidae) in Palau
Proceedings of the Hawaiian Entomological Society (2013) 45, 83-117
Luc Leblanc, Ema Tora Vueti and Allan J. Allwood (2013)
Host plant records for fruit flies (Diptera: Tephritidae: Dacini) in the Pacific Islands: 2. Infestation statistics on economic hosts
Proceedings of the Hawaiian Entomological Society (2012) 44, 11-53
Luc Leblanc, Ema Tora Vueti, Richard A.I. Drew and Allan J. Allwood (2012)
Host plant records for fruit flies (Diptera: Tephritidae: Dacini) in the Pacific Islands
Australian Journal of Entomology (2003) 42, 95-108
Robert G. Hollingsworth, Richard AI Drew, Allan J. Allwood, Meredith Romig, Maclean Vagalo and Francis Tsatsia (2003)
Host plants and relative abundance of fruit fly (Diptera: Tephritidae) species in the Solomon Islands
pheromones/attractants/traps (6)
Bulletin of Entomological Research (2020) 110, 15-21
K.-H. Tan (2020)
Recaptures of feral Bactrocera dorsalis and B. umbrosa (Diptera: Tephritidae) males after feeding on methyl eugenol
Journal of Economic Entomology (2019) 112, 1502-1507
Jane E. Royer, Christian Mille, Sylvie Cazeres, José Brinon and David G. Mayer (2019)
Isoeugenol, a more attractive male lure for the cue-lure-responsive pest fruit fly Bactrocera curvipennis (Diptera: Tephritidae: Dacinae), and new records of species responding to zingerone in New Caledonia
Austral Entomology (2018) 57, 40-49
Jane E. Royer, Sharon Agovaua, John Bokosou, Kiteni Kurika, Amanda Mararuai, David G. Mayer and Benjamin Niangu (2018)
Responses of fruit flies (Diptera: Tephritidae) to new attractants in Papua New Guinea
Bulletin of Entomological Research (2018) 108, 116-124
S.L. Wee, M.Z. Abdul Munir and A.K.W. Hee (2018)
Attraction and consumption of methyl eugenol by male Bactrocera umbrosa Fabricius (Diptera: Tephritidae) promotes conspecific sexual communication and mating performance
Annals of the Entomological Society of America (2018) 111, 239-264
Diego F. Segura, Silvina A. Belliard, M. Teresa Vera, Guillermo E. Bachmann, M. Josefina Ruiz, Flavia Jofre-Barud, Patricia C. Fernández, M. Liza López and Todd E. Shelly (2018)
Plant chemicals and the sexual behavior of male tephritid fruit flies
Journal of Economic Entomology (2018) 111, 298-303
Jane E. Royer and David G. Mayer (2018)
Combining cue-lure and methyl eugenol in traps significantly decreases catches of most Bactrocera, Zeugodacus and Dacus Species (Diptera: Tephritidae: Dacinae) in Australia and Papua New Guinea
molecular biology - genes (1)
Pest Management Science (2010) 66, 379-384
Tock H. Chua, Yi Vern Chong and Saw Hoon Lim (2010)
Species determination of Malaysian Bactrocera pests using PCR-RFLP analyses (Diptera: Tephritidae)
review (1)
Phytoparasitica (1998) 26, 129-148
J.E. Peña, A.I. Mohyuddin and M. Wysoki (1998)
A review of the pest management situation in mango agroecosystems