Reference · Pests

Hawkmoths

Sphinx moths (family Sphingidae), also known as hawkmoths, are large, nocturnal insects known for their powerful, streamlined bodies and long, narrow wings. They are famous for their ability to hover while feeding, which often makes them resemble hummingbirds.

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Lime hawk-moth Mimas Lime hawk-moth Mimas tiliae Macroglossum saga Macroglossum saga Marumba Marumba Narrow-bordered bee hawk-moth Hemaris tityus Oak hawk-moth Marumba quercus Obscure sphinx moth Erinnyis obscura Oleander hawk-moth Daphnis Oleander hawkmoth Daphnis nerii Pholus hawkmoth Pholus Pine hawk-moth Hyloicus pinastri Pine hawk-moth Hyloicus Poplar hawk-moth Laothoe populi Poplar hawk-moth Smerinthus planus Poplar hawk-moth Laothoe Privet hawk-moth Sphinx ligustri Prometheus hawkmoth Macroglossum prometheus Proserpinus proserpina Proserpinus Protambulyx strigilis Protambulyx strigilis Satellite sphinx moth Eumorpha satellitia Satellite sphinx moth Pholus satellitia Sea buckthorn hawkmoth Hyles hippophaes Silver-striped hawk-moth Hippotion celerio Small Elephant Hawk-moth Deilephila elpenor Small elephant hawkmoth Deilephila porcellus Snowberry clearwing Hemaris diffinis Soybean hawkmoth Clanis Sphinx justiciae Sphinx justiciae Sphinx moth Sphinx Spurge hawk-moth Hyles euphorbiae Striped hawk-moth Hyles livornica Sweet potato hornworm Herse cingulata Theretra clotho Theretra clotho Theretra hawkmoth Theretra Theretra oldenlandiae Theretra oldenlandiae Tinostoma Tinostoma Tobacco hornworm Manduca sexta Tobacco hornworm Manduca Tomato hornworm Manduca quinquemaculata Twin-spotted sphinx Smerinthus jamaicensis Vashti Sphinx Sphinx vashti Vine sphinx moth Eumorpha vitis Virginia creeper sphinx Darapsa myron Walnut sphinx Cressonia juglandis White-lined sphinx Celerio lineata Wild Cherry Sphinx Sphinx drupiferarum Wilson's Sphinx Moth Hyles wilsoni

Hawkmoths

Their larvae, commonly known as hornworms, are easily recognized by their large size and a distinct, often colorful, horn-like protrusion on the posterior end. They exhibit various shades of green and brown, providing excellent camouflage.

Adult moths possess an extremely long proboscis, sometimes exceeding their body length, allowing them to reach nectar in deep flowers. When resting, they typically hold their wings in a triangular or flat position against a surface.

The life cycle consists of the egg, larval (caterpillar), pupal, and adult stages. Most species overwinter as pupae buried in the soil, usually within a few inches of the surface.

Accurate identification depends on observing the larval patterns and the specific host plants they occupy, as different species within the family exhibit varying levels of host specificity.

Sphinx moth larvae can cause significant damage to a wide range of horticultural crops, including tomatoes, peppers, potatoes, grapes, and various ornamental shrubs. They are voracious feeders, capable of consuming large amounts of foliage quickly.

The primary damage is caused by the caterpillars as they strip leaves from plants, often starting at the top of the canopy. In cases of high infestation, they can completely defoliate young branches or entire plants, severely reducing yield.

Damage to grapes can be particularly severe, affecting both the leaves and the developing clusters. Defoliation weakens the plant, reducing its ability to photosynthesize and store energy for the subsequent season.

While most damage is restricted to vegetative parts, some hornworm species may also feed on developing fruits and blossoms, which directly leads to immediate crop loss and reduced fruit quality.

Plant vigor is often significantly compromised following a heavy infestation, making the crops more susceptible to environmental stress and secondary diseases.

Adult sphinx moths typically emerge in late spring and remain active throughout the summer months. Depending on the geographical region and species, some populations may produce multiple generations in a single year.

They are primarily crepuscular or nocturnal, although some species may be active during the day. Mating and egg-laying occur during the night, with eggs usually deposited on the undersides of leaves of suitable host plants.

Larvae develop over several weeks, with their appetite increasing dramatically as they enter the final larval stages. Peak damage typically occurs during the mid-to-late summer months.

Once feeding is complete, the larvae burrow into the soil to pupate. In many temperate regions, this pupal stage serves as the mechanism for surviving the winter months until the next season.

Monitoring efforts should begin in early summer, focusing on visual inspections of foliage and the use of light traps to track the population density of adult moths.

The most reliable sign of sphinx moth presence is the accumulation of frass (caterpillar droppings) under the host plant. These are large, pellet-shaped, and usually dark-colored, indicating a large larva is feeding nearby.

Missing foliage, starting from the edges or the tips of branches, is a clear indicator of hornworm activity. They often consume entire leaves, leaving only the midrib or nothing at all.

Despite their size, hornworms can be difficult to spot due to their protective coloration that mimics plant structures. They are often found hiding along the undersides of stems or leaf midveins.

Stunted plant growth or wilting in specific branches can suggest significant feeding damage. When foliage loss is severe, the affected branches may show signs of stress or lack of fruit development.

Occasionally, you may observe scarring on fruits, though this is secondary to the extensive defoliation that typically alerts gardeners to the presence of the pest.

Hand-picking is the most effective control method for home gardens. Because of their large size, hornworms are relatively easy to locate and remove manually in the morning or evening hours.

Tilling the soil in late fall or early spring can help reduce populations by physically destroying overwintering pupae and exposing them to natural predators and harsh temperatures.

Biological controls such as applying Bacillus thuringiensis (Bt) are highly effective against younger larvae while remaining safe for beneficial pollinators and other non-target insects.

In cases of severe outbreaks, chemical insecticides may be necessary. Always choose products that are labeled for the specific host plant and ensure that applications are timed to target the vulnerable larval stages.

  • Regular monitoring of host plants.
  • Manual removal and destruction of larvae.
  • Use of row covers to prevent egg-laying.
  • Encouraging natural predators like birds and parasitic wasps.
  • Proper disposal of crop debris after harvest.