PubMed Health⌕ Search

Biomedical subjects

J Araújo

Publications and source records attributed to J Araújo.

9 recordsLinked to original sources

Identification of plant odours activating receptor neurones in the weevil Pissodes notatus F. (Coleoptera, Curculionidae).

Plants release complex mixtures of volatiles important in the interaction with insects and other organisms. In the search for compounds that contribute to the perception of odour quality in the weevil Pissodes notatus, single olfactory receptor neurones on the antennae were screened for sensitivity to naturally produced plant volatiles by the use of gas chromatography linked to single cell recordings. We here present 60 olfactory neurones responding to 25 of the numerous compounds released by host and non-host plants. All the neurones show high selectivity and are classified into 12 distinct types. The two most abundant types respond to alpha-pinene, beta-pinene, and 3-carene ( n=17), and to isopinocamphone and pinocamphone ( n=17), respectively. Other neurone types respond to limonene ( n=9), beta-phellandrene ( n=3), and fenchone ( n=4). Responses to beta-caryophyllene ( n=1) and to ethanol ( n=4) are also shown. Except for two pairs, the neurone types do not show overlap of the molecular receptive range. The active compounds are present in the host, Pinus pinaster, as well as in non-hosts, supporting the idea that plant odour quality is mediated by the ratio of the compounds rather than specific odorants.

Animals↗

[Integrated control of the filariasis vector with community participation in an urban area of Recife, Pernambuco, Brazil]

A pilot study for the control of Bancroftian filariasis transmission was developed in two areas of Recife, Brazil, where microfilaraemic prevalence was 10% in 1991. Mass treatment with diethylcarbamazine (DEC) using low and spaced doses was employed in both areas. In one such instance, DEC therapy was associated with vector control using physical measures and periodic treatment of Culex breeding sites with the entomopathogen Bacillus sphaericus. The vector population density, reaching 60 - 120 Culex/room /night before the intervention, was drastically reduced to 4 - 16 Culex/room/night, and maintained at this level for more than two years. Actions to engage the local school community in the vector control process were implemented, and as a consequence several classroom and extracurricular activities were put into practice, culminating with the effective participation of a team of students called the "Vector Vigilantes", in the application of control measures against the vector. The enthusiastic involvement of schoolteachers and students pointed to schools as a place amenable to programs such as this.

Journal Article↗