Pupation Containers

Pupation containers are enclosed vessels used to house insects as mature larvae transform into pupae and later emerge as adults, supporting controlled observation of metamorphosis. They provide a suitable microenvironment in which larvae can attach to or burrow into an appropriate substrate while remaining contained, separated, and accessible for monitoring. In biology, these containers help researchers maintain insect colonies, record developmental timing, assess survival and emergence, and transfer individuals between life stages with minimal disturbance. Proper container design can improve hygiene, reduce escape, and standardize rearing conditions, making pupation containers useful in developmental studies, genetics, ecology, and laboratory-based insect culture.

Pupation Containers - Related Videos

Research

JoVE Journal - Bioengineering
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Quantitatively Measuring In situ Flows using a Self-Contained Underwater Velocimetry Apparatus (SCUVA)

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Cited by 5 •

2011

This protocol provides instructions on how to use a self-contained underwater velocimetry apparatus (SCUVA), which is designed for quantification of in situ animal-generated flows. In addition, this protocol addresses challenges posed by field conditions, and includes operator motion, predicting position of animals, and orientation of SCUVA.

Research

JoVE Journal - Environment

Choice and No-Choice Bioassays to Study the Pupation Preference and Emergence Success of Ectropis grisescens

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Cited by 2 •

2018

Here, we present a protocol to investigate the pupation preference of mature larvae of Ectropis grisescens in response to soil factors (e.g., substrate type and moisture content) using choice bioassays. We also present a protocol of no-choice bioassays to determine the factors that affect the pupation behaviors and survivorship of E. grisescens.

Research

JoVE Journal - Biology
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An Optimized Protocol for Rearing Fopius arisanus, a Parasitoid of Tephritid Fruit Flies

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Cited by 17 •

2011

Fopius arisanus is an egg-larval parasitoid of Tephritid fruit flies that is successfully used in biological control of these important tropical pests. We describe here an optimized protocol for rearing F. arisanus on a small scale using readily available materials.

Research

JoVE Journal - Environment
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Mass Production of Genetically Modified Aedes aegypti for Field Releases in Brazil

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Cited by 133 •

2014

To achieve population suppression of Aedes aegypti using the RIDL® (Release of Insects carrying a Dominant Lethal) system, large numbers of male mosquitoes need to be released. This requires the use of mass rearing techniques and technology to provide reliable systems to obtain the maximum number of high quality male mosquitoes.

Delivery of Nucleic Acids through Embryo Microinjection in the Worldwide Agricultural Pest Insect, Ceratitis capitata

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Cited by 7 •

2016

The Mediterranean fruit fly (medfly) Ceratitis capitata (Diptera: Tephritidae) is a worldwide pest of agriculture. A deeper understanding of its biology is key to control medfly populations and thus reduce economic impact. Embryo microinjection is a fundamental tool allowing both germ-line transformation and reverse genetics studies in this species.

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