Gypsy Moth

Gypsy moth, commonly known as the spongy moth and scientifically named Lymantria dispar, is a moth species whose caterpillars can severely defoliate trees and alter forest ecosystems. Its life cycle includes overwintering egg masses, spring hatching, larval feeding, pupation, and adult reproduction, with larvae relying on chewing mouthparts to consume leaves. Biology research examines how population growth, host-plant availability, predators, pathogens, and environmental conditions influence outbreaks. Understanding these interactions supports forest monitoring, invasive-species management, and efforts to reduce damage to deciduous trees while clarifying the ecological effects of large-scale defoliation.

Gypsy Moth - Related Videos

Research

JoVE Journal - Neuroscience

Electrophysiological Measurements from a Moth Olfactory System

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Cited by 11 •

2011

Insect olfactory systems provide unique opportunities for recording odorant-induced responses in the forms of electroantennograms (EAG) and single sensillum recordings (SSR), which are summed responses from all odorant receptor neurons (ORNs) located on the antenna and from those housed in individual sensilla, respectively.

Herbivore-induced Blueberry Volatiles and Intra-plant Signaling

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Cited by 3 •

2011

A push-pull method for collecting plant volatiles is described. The method allows for a comparison of volatiles induced by herbivore feeding, exogenous methyl jasmonate, and mechanical damage. This technique is also used to investigate the volatile response of undamaged branches to exposure to volatiles from herbivore-damaged branches within blueberry plants.

Insect-controlled Robot: A Mobile Robot Platform to Evaluate the Odor-tracking Capability of an Insect

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Cited by 18 •

2016

The capability to localize an odor source is necessary for insect survival and is expected to be applicable to artificial odor-tracking. The insect-controlled robot is driven by an actual silkmoth and enables us to evaluate the odor-tracking capability of insects through a robotic platform.

Protocols for Investigating the Host-tissue Distribution, Transmission-mode, and Effect on the Host Fitness of a Densovirus in the Cotton Bollworm

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Cited by 1 •

2017

Here, we present a protocol to investigate the host-tissue distribution, transmission mode, and effect on the host fitness of a densovirus within a lepidopteran species, the cotton bollworm. This protocol can also be used for studying the interaction between other orally-transmitted viruses and their insect hosts.

Research

JoVE Journal - Neuroscience
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New Methods to Study Gustatory Coding

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Cited by 1 •

2017

We present three new methods to study gustatory coding. Using a simple animal, the moth Manduca sexta (Manduca), we describe a dissection protocol, the use of extracellular tetrodes to record the activity of multiple gustatory receptor neurons, and a system for delivering and monitoring precisely timed pulses of tastants.

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