Insect Herbivory Drought Stress

Insect herbivory drought stress describes the interacting effects of plant-feeding insects and limited water availability on plant physiology, growth, and survival. Drought can alter plant water status, nutrient allocation, and defensive chemistry, while herbivore feeding removes tissue and may further disrupt photosynthesis and resource balance; together, these stresses can produce responses that differ from either stress alone. Studying this interaction helps biologists evaluate plant resistance, insect performance, community dynamics, and ecosystem productivity under changing climate conditions. Research in this area informs crop protection, drought-resilient breeding, and predictions of how plant–insect relationships may shift as heat and water scarcity increase.

Insect Herbivory Drought Stress - Related Videos

Education

JoVE Core - Biology

Responses to Drought and Flooding

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2020

Water plays a significant role in the life cycle of plants. However, insufficient or excess of water can be detrimental and pose a serious threat to plants. Under normal conditions, water taken up by the plant evaporates from leaves and other parts in a process called transpiration. In times of drought stress, water that evaporates by transpiration far exceeds the water absorbed from the soil, causing plants to wilt. The general plant response to drought stress is the synthesis of hormone...

Osmoregulation in Insects

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2019

Malpighian tubules are specialized structures found in the digestive systems of many arthropods, including most insects, that handle excretion and osmoregulation. The tubules are typically arranged in pairs and have a convoluted structure that increases their surface area. Malpighian tubules extend from the digestive tract, typically the area between the midgut and hindgut, into the hemolymph—a mixture of blood and interstitial fluid found in insects and other arthropods, as well as most...

Research

JoVE Journal - Neuroscience

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.

Research

JoVE Journal - Neuroscience
Free Sample

A Simple Flight Mill for the Study of Tethered Flight in Insects

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Cited by 37 •

2015

Flight in insects is influenced by a number of factors and the propensity to disperse is an important variable in understanding insect ecology and biological control strategies. We describe the construction and use of a simple, relatively inexpensive, and flexible flight mill for measuring parameters of tethered flight in insects.

Research

JoVE Journal - Neuroscience
Free Sample

Using Insect Electroantennogram Sensors on Autonomous Robots for Olfactory Searches

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Cited by 49 •

2014

We describe a protocol for using insect antennae in the form of electroantennograms (EAGs) on autonomous robots. Our experimental design allows stable recordings within a day and resolves individual odor patches up to 10 Hz. The efficiency of EAG sensors for olfactory searches is demonstrated in driving a robot toward an odor source.

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