Reference · Pests

Crambidae

Pyralid moths (Pyralidae) are a large family of Lepidoptera containing thousands of species. Adult moths typically have triangular wings when at rest and slender bodies, with a wingspan ranging from 10 to 40 mm depending on the specific species.

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Herpetogramma Herpetogramma Herpetogramma basalis Herpetogramma basalis Herpetogramma luctuosalis Herpetogramma luctuosalis Herpetogramma mutualis Herpetogramma mutualis Hop pyrausta Pyrausta scapulalis Hymenia Hymenia Hymenia perspectalis Hymenia perspectalis Jackfruit borer Glyphodes caesalis Japanese grass moth Ancylolomia japonica Jasmine leaf webber Hendecasis duplifascialis Jasmine moth Mimorista flavidissimalis Jasmine Moth Palpita Jasmine moth Palpita vitrealis Kenyan fruit borer Leucinodes kenyensis Lead-fringed Grass-veneer Agriphila plumbifimbriella Leaf roller moth Psara hipponalis Leaf roller moth Pagyda salvalis Leucinodes pseudorbonalis Leucinodes pseudorbonalis Linden leaf tier Pantographa limata Lineodes Lineodes Lineodes integra Lineodes integra Loftin's stem borer Chilo loftini Lotus borer Pyrausta penitalis Lucerne moth Uresiphita ornithopteralis Lygropia Lygropia Lygropia clytusalis Lygropia clytusalis Malawi fruit borer Leucinodes malawiensis Mango seed borer Deanolis sublimbalis Marasmia Marasmia Marasmia bilinealis Marasmia bilinealis Marasmia trapezalis Marasmia trapezalis Marasmia venilialis Marasmia venilialis Margaronia Margaronia Margaronia bivitralis Margaronia bivitralis Maruca Maruca Maruca pod borer Maruca vitrata Meadow grass stem moth Hednota longipalpella Meadow moth Loxostege Meadow moth Pyrausta Meadow moth Achyra Meadow moth Achyra interpunctalis Meadow moth (genus Nomophila) Nomophila Meadow moth (Loxostege commixtalis) Loxostege commixtalis Meadow moth (Sitochroa umbrosalis) Sitochroa umbrosalis Meadow moth (South African form) Loxostege frustralis Meadow moth (southern form) Loxostege nudalis Megastes Megastes Megastes pusialis Megastes pusialis Melonworm Diaphania hyalinata Melonworm Diaphania nitidalis Mexican rice borer Eoreuma loftini Microthyris Microthyris helcitalis Microthyris Microthyris Mimorista Mimorista Mint moth Pyrausta aurata Mint moth Fumibotys fumalis Mitter's stalk borer Diatraea mitteri Moitrelia Moitrelia Moitrelia obductella Moitrelia obductella Moringa leaf webber Noorda blitealis
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Crambidae

The larvae, or caterpillars, are characterized by a distinct head and 16 legs. Their coloration varies widely from whitish or yellowish to dark brown or green, often featuring spots or stripes. Pupation occurs in dense silk cocoons, either in the host plant's tissues or in the soil.

An important morphological feature for many species is the presence of short or long labial palpi on the head. Depending on the species, adults may exhibit crepuscular (twilight) or nocturnal activity and are often attracted to artificial light sources.

Biologically, the family is highly diverse, with subfamilies adapted to nearly every climate and ecosystem. A shared trait is the high fecundity of females, which can lay hundreds of eggs during their relatively short lifespan.

Accurate species identification often requires examining the wing venation or microscopic analysis of larval structure, as many species within the family appear visually similar to the untrained eye.

Pyralid moths are generally polyphagous or oligophagous, attacking a broad range of crops including cereals, legumes, vegetables, fruits, and forest trees. The most significant damage is caused by species adapted to feeding internally within fruit, stems, or roots.

Key pests within this family include the meadow moth, which impacts various field crops, and the gooseberry fruitworm, capable of devastating berry production. Additionally, the family includes notorious stored-product pests that infest grain, flour, and processed food items.

Larvae of several species infest flower heads, consuming ovaries and preventing fruit set. Others bore into plant stems, disrupting nutrient transport and causing lodging, wilting, or the death of the upper portions of the plant.

In orchards, larvae damage the skin and flesh of fruits, leading to premature drop and rot caused by secondary fungal or bacterial infections. These feeding sites create easy access points for pathogens that further reduce yield quality.

Mass outbreaks can lead to total crop loss or the destruction of entire plantations if timely intervention and monitoring are not implemented.

Pyralids typically overwinter as late-stage larvae or pupae, protected within silk cocoons in plant debris, the surface soil layer, or inside dry stems. Some species are adapted to overwintering in warehouses and storage facilities.

Adult emergence in spring is synchronized with the onset of favorable temperatures, usually starting when daily mean temperatures exceed +15°C. The reproduction and egg-laying process can be extended over several weeks.

Depending on the climatic region and species, one to several generations may occur throughout the season. The flight of subsequent generations often coincides with the peak development period of fruits and flower heads.

Peak larval activity occurs during warm summer months, characterized by intense feeding and rapid growth. During this window, vigilant monitoring of crops is essential to prevent significant damage.

As autumn approaches, late-season larvae complete their feeding cycle and enter diapause, seeking protected habitats to survive the winter conditions.

The primary sign of infestation is the presence of silk webbing or nests, where larvae reside. They pull leaves and fruits together using silk threads, creating clusters filled with frass (excrement) and damaged plant tissue.

On fruits and berries, entry holes made by larvae are often visible, accompanied by frass expelled from the feeding site. Infested fruits may discolor prematurely, shrivel, or succumb to rot.

Stem-boring species cause visible wilting of shoot tips, deformation, and stunted growth. Small piles of sawdust-like material at the entry site on the stem are a clear indicator of larval boring activity.

  • Webbing on flower heads and foliage.
  • Premature fruit drop.
  • Brown boreholes in stems and roots.
  • Irregular holes in leaves.

Using pheromone or light traps to monitor adult moth populations helps predict pest pressure, allowing for targeted interventions before larval damage becomes widespread.

Managing Pyralid moths requires an integrated pest management (IPM) approach that combines cultural, biological, and chemical methods. Deep autumn plowing is a critical cultural practice to disrupt and kill overwintering pupae.

Regular weeding is essential, as many pyralid species utilize wild host plants to build up population levels before moving to crops. Prompt removal and destruction of infested fruits and debris significantly reduce local pest density.

Biological control options include the use of beneficial insects like Trichogramma wasps and biopesticides based on Bacillus thuringiensis, which are highly effective against younger larval instars.

When the economic threshold is reached, systemic or contact-stomach insecticides may be applied, following strict application guidelines. Optimal timing involves spraying just as larvae are hatching, before they bore into the plant tissue.

Pheromone monitoring allows for the precise timing of insecticide applications, maximizing efficacy while minimizing costs and the overall chemical load on the environment.