نتایج جستجو برای: bactrocera olea

تعداد نتایج: 3111  

2009
Xin-Geng Wang Hannah Nadel Marshall W. Johnson Kent M. Daane Kim Hoelmer Vaughn M. Walton Charles H. Pickett Karen R. Sime

Domestication of crop plants selects for numerous traits that often distinguish them dramatically from their wild progenitors. In some cases, these modifications lead to increased herbivory, by enhancing their attractiveness to herbivorous insects or reducing the efficiency of natural enemies, or both. This study investigated the effects of fruit enlargement on the olive (Olea europaea L.), the...

2014
Bin Zhang Francesco Nardi Helen Hull-Sanders Xuanwu Wan Yinghong Liu

The complete 16,043 bp mitochondrial genome (mitogenome) of Bactrocera minax (Diptera: Tephritidae) has been sequenced. The genome encodes 37 genes usually found in insect mitogenomes. The mitogenome information for B. minax was compared to the homologous sequences of Bactrocera oleae, Bactrocera tryoni, Bactrocera philippinensis, Bactrocera carambolae, Bactrocera papayae, Bactrocera dorsalis, ...

Journal: :Chemical communications 2010
Brett D Schwartz Yvonne K Booth Mary T Fletcher William Kitching James J De Voss

The major spiroacetal ((E,E)-1) of the pestiferous fruit flies, Bactrocera tryoni and Bactrocera cucumis, is biosynthesised from fatty acids by distinguishable pathways which utilise modified beta-oxidation and C-H hydroxylation, generating a putative ketodiol which cyclises.

2015
Mohsen Zahmatkesh Mohammad Jalili Manesh Ronak Babashahabi

BACKGROUND The main goals in treating burns are to accelerate tissue renovation and prevent infection. Topical antibiotics are used in the treatment of burns, but they can cause side effects. Recently, a traditional ointment (Olea) has been used in Iran in the treatment of burns. This study examines the effect of topical honey ointment in healing of burn patients. MATERIALS AND METHODS In thi...

2016
Hoi-Sen Yong Sze-Looi Song Phaik-Eem Lim Praphathip Eamsobhana I. Wayan Suana Bi-Song Yue

Bactrocera latifrons is a serious pest of solanaceous fruits and Bactrocera umbrosa is a pest of Artocarpus fruits, while Bactrocera melastomatos infests the fruit of Melastomataceae. They are members of the subgenus Bactrocera. We report here the complete mitochondrial genome of these fruit flies determined by next-generation sequencing and their phylogeny with other taxa of the subgenus Bactr...

2002
Maurizio Calvitti Marco Antonelli Riccardo Moretti Renato C. Bautista

To date, information is wanting with regard to the use of new exotic parasitoids against olive fruit fly, Bactrocera (=Dacus) oleae (Gmelin) (Diptera: Tephritidae), a serious pest of olives Olea europaea L., in the Mediterranean basin. We investigated the oviposition response and developmental biology on B. oleae of Fopius (=Biosteres) arisanus (Sonan) (=Opius oophilus Fullaway) (Hymenoptera: B...

2017
Lucie Vaníčková Radka Nagy Antonio Pompeiano Blanka Kalinová

Bactrocera invadens Drew, Tsuruta & White, Bactrocera papayae Drew & Hancock, and Bactrocera philippinensis Drew & Hancock, key pest species within the Bactrocera dorsalis species complex, have been recently synonymized under the name Bactrocera dorsalis (Hendel). The closely related Bactrocera carambolae Drew & Hancock remains as a discrete taxonomic entity. Although the synonymizations have b...

2012
Roger I. Vargas Luc Leblanc Ernest J. Harris Nicholas C. Manoukis

Bactrocera fruit fly species are economically important throughout the Pacific. The USDA, ARS U.S. Pacific Basin Agricultural Research Center has been a world leader in promoting biological control of Bactrocera spp. that includes classical, augmentative, conservation and IPM approaches. In Hawaii, establishment of Bactrocera cucurbitae (Coquillett) in 1895 resulted in the introduction of the m...

2017
Nena Pavlidi Anastasia Gioti Nicky Wybouw Wannes Dermauw Michael Ben-Yosef Boaz Yuval Edouard Jurkevich Anastasia Kampouraki Thomas Van Leeuwen John Vontas

The olive fruit fly, Bactrocera oleae, is the most destructive pest of olive orchards worldwide. The monophagous larva has the unique capability of feeding on olive mesocarp, coping with high levels of phenolic compounds and utilizing non-hydrolyzed proteins present, particularly in the unripe, green olives. On the molecular level, the interaction between B. oleae and olives has not been invest...

نمودار تعداد نتایج جستجو در هر سال

با کلیک روی نمودار نتایج را به سال انتشار فیلتر کنید