1989Journal of Medical EntomologyRequires access

Host Specificity of Amblyospora connecticus (Microsporida: Amblyosporidae), a Polymorphic Microsporidian Parasite of Aedes cantator (Diptera: Culicidae)

Theodore G. Andreadis

Open publisher page 29 citations

Abstract

Amblyospora connecticus Andreadis, a microsporidian parasite of the brown saltmarsh mosquito, Aedes cantator (Coquillett), was successfully transmitted to Ae. atropalpus (Coquillett), Ae. epactius Dyar and Knab, Ae. sierrensis (Ludlow), and Ae. triseriatus (Say) following larval exposure to spores from the intermediate copepod host, Acanthocyclops vernalis (Fischer). The microsporidium underwent normal vegetative growth and multiplication in fat body, muscle, and Malpighian tubule tissues of all four alternate mosquito hosts but produced spores only in female Ae. epactius. However, in no alternate host was A. connecticus able to infect the ovaries and complete its life cycle via transovarial transmission, thus indicating a high degree of specificity for Ae. cantator. Fifteen other mosquito species in Aedes, Anopheles, Culex, Culiseta, and Psorophora also were tested and found to be nonsusceptible.

About this research paper

What this paper is about

Amblyospora connecticus Andreadis, a microsporidian parasite of the brown saltmarsh mosquito, Aedes cantator (Coquillett), was successfully transmitted to Ae. atropalpus (Coquillett), Ae. epactius Dyar and Knab, Ae. sierrensis (Ludlow), and Ae. triseriatus (Say) following larval exposure to spores from the intermediate copepod host, Acanthocyclops vernalis (Fischer). The microsporidium underwent normal vegetative growth and multiplication in fat body, muscle, and Malpighian tubule tissues of all four alternate mosquito hosts but produced spores only in female Ae. epactius. However, in no alternate host was A. connecticus able to infect the ovaries and complete its life cycle via transovarial transmission, thus indicating a high degree of specificity for Ae. cantator. Fifteen other mosquito species in Aedes, Anopheles, Culex, Culiseta, and Psorophora also were tested and found to be nonsusceptible.

Why it matters

OpenAlex reports 29 citations for this work. Citation counts describe recorded attention and do not establish research quality.

Key contribution

A contribution statement is not available in the OpenAlex record.

Method / approach

Method details are not available in the OpenAlex metadata.

Main findings

Findings are not separately available in the OpenAlex metadata.

Limitations

Limitations are not available in the OpenAlex metadata.

Applications

Application details are not available in the OpenAlex metadata.

Available abstract

Amblyospora connecticus Andreadis, a microsporidian parasite of the brown saltmarsh mosquito, Aedes cantator (Coquillett), was successfully transmitted to Ae. atropalpus (Coquillett), Ae. epactius Dyar and Knab, Ae. sierrensis (Ludlow), and Ae. triseriatus (Say) following larval exposure to spores from the intermediate copepod host, Acanthocyclops vernalis (Fischer). The microsporidium underwent normal vegetative growth and multiplication in fat body, muscle, and Malpighian tubule tissues of all four alternate mosquito hosts but produced spores only in female Ae. epactius. However, in no alternate host was A. connecticus able to infect the ovaries and complete its life cycle via transovarial transmission, thus indicating a high degree of specificity for Ae. cantator. Fifteen other mosquito species in Aedes, Anopheles, Culex, Culiseta, and Psorophora also were tested and found to be nonsusceptible.

Key concepts: Biology, Parasite hosting, Microsporidia, Host (biology), Zoology, Ecology, Microbiology, Computer science

Related papers

Back to paper searchBrowse research topicsOriginal source
Host Specificity of Amblyospora connecticus (Microsporida: Amblyosporidae), a Polymorphic Microsporidian Parasite of Aedes cantator (Diptera: Culicidae) — Research Paper | ScholarLens