Reference · Pests

Beetles

Coleoptera, commonly known as beetles, represent the most diverse order of insects. Their primary characteristic is the modification of the forewings into hardened, sclerotized wing covers called elytra, which protect the hindwings and the abdomen.

81 sections

What the section contains

Scarabaeidae 511 items Weevils 1 620 items Bean weevils 87 items Dermestid beetles 57 items Carabidae 332 items Carrion beetles 15 items Raspberry beetles 6 items Ant-like flower beetles 11 items Apionidae 58 items Auger beetles 108 items Bark-gnawing beetles 16 items Belidae 3 items Blister beetles (Meloidae) 82 items Bothriderid beetles 2 items Brachyceridae 21 item Burrowing water beetles 3 items Calopus Calopus Calopus serraticornis Calopus serraticornis Cebrionid beetles 2 items Checkered beetles (Cleridae) 35 items Chrysomelidae 730 items Ciidae 14 items Crawling water beetles 8 items Cylindrical bark beetles 5 items Death-watch beetles 51 item Drilid beetles 2 items Dryophthorid weevils 92 items Earth-boring dung beetles 10 items Elateridae 170 items Endecatomidae 2 items False blister beetles 6 items False darkling beetles 5 items Fire-colored beetles 2 items Fireflies 12 items Flat grain beetles 19 items Fungus weevils 14 items Glaphyridae 2 items Hairy fungus beetles 7 items Handsome fungus beetles 4 items Hister beetles 10 items Ithyceridae 2 items Jewel beetles 160 items Kateretidae beetles 5 items Lady beetle (pest species) 308 items Leaf miners (Odontota) 8 items Leaf-rolling weevils 79 items Longhorn beetles 695 items Marsh beetles 3 items Minute bog beetles 2 items Minute brown scavenger beetles (Latridiidae) 21 item Monotomidae 3 items Net-winged beetles 3 items Paralauca Paralauca dives Paralauca Paralauca Passalidae 3 items Pill beetles 2 items Pleasing fungus beetles 12 items Powderpost beetles 20 items Predaceous diving beetles 86 items Primitive weevils 8 items
Marketplace

Products in this section · 12

Весь каталог

Beetles

The body structure is typically robust, with well-developed mandibles suited for chewing various plant tissues. They undergo a complete metamorphosis process, involving four distinct life stages: egg, larva, pupa, and adult.

Systematically, this group includes numerous families, with the most significant agricultural pests belonging to groups like Curculionidae, Scarabaeidae, Chrysomelidae, and Elateridae. Their larvae vary in form, ranging from soil-dwelling grubs to leaf-feeding larvae.

Many beetle species exhibit diapause, allowing them to survive unfavorable environmental conditions. This biological trait is critical to understanding their population dynamics and seasonal activity in agricultural landscapes.

Beetles range in size from tiny species less than a millimeter long to large, prominent insects. Their adaptability and diversity make them one of the most successful groups of organisms on the planet.

Coleoptera species attack virtually every type of crop, including grains, legumes, vegetables, fruits, and industrial crops. They can damage almost every part of a plant: roots, stems, leaves, flowers, and fruits.

Soil-dwelling larvae, such as wireworms, cause significant economic damage by feeding on roots and underground stems, leading to stunted growth, wilting, and complete plant loss in severe cases.

Adult beetles primarily affect the foliage and reproductive structures, causing skeletonization, leaf holes, or total destruction of blossoms, which directly reduces the yield potential of the crop.

A specific segment of this order causes damage to stored grains and seeds, leading to both quantitative loss and quality deterioration due to contamination with frass and microorganisms.

Furthermore, many beetles serve as vectors for plant viruses and pathogenic fungi, creating complex disease profiles that are difficult to manage without addressing the insect population itself.

Beetle activity is largely driven by temperature and moisture availability. Most species emerge from overwintering sites in early spring, coinciding with the germination and early growth phases of various crops.

The most intensive feeding period usually occurs during the late spring and summer months, as larvae develop and adults migrate in search of food and suitable sites for oviposition.

Vertical migration in the soil is common among soil-dwelling beetles, as they move deeper during drought conditions to seek moisture or move to the surface when soil moisture is optimal.

Life cycles are often synchronized with the phenology of host plants, ensuring that the emergence of new generations coincides with the availability of preferred food resources.

In temperate climates, the preparation for winter occurs in late autumn, when beetles seek protected habitats such as crop residues, forest edges, or deep soil layers.

Visual signs on foliage include irregular leaf margins, holes in the leaf blades, or skeletonized veins. Flowers and fruits may show signs of boring or internal damage caused by beetle adults or larvae.

Soil-dwelling infestations are often indicated by missing seedlings in a row or plants that suddenly wilt and die. Excavation around the root zone often reveals the larvae or their feeding tunnels.

The presence of frass or small piles of plant debris near the base of the plant or within damaged tissues is a classic sign of active beetle feeding.

For stored product pests, indicators include heating of grain piles, the presence of webbing, dust, or a characteristic musty odor, all pointing to advanced infestation levels.

  • Wilting of individual plants in an otherwise healthy field;
  • Holes and chewed margins on leaves;
  • Visible tunnels within tubers or taproots;
  • Presence of adult beetles on plants during cool morning or evening hours.

Effective management begins with agronomic practices, including crop rotation, deep fall plowing to disturb overwintering sites, and rigorous control of weeds that serve as alternative hosts.

Biological control agents, such as entomopathogenic fungi, bacteria (e.g., Bacillus thuringiensis), and predatory insects, play a vital role in suppressing beetle populations naturally.

Chemical control usually involves the use of seed treatments for early-season protection, followed by targeted foliar insecticide applications if the economic threshold is exceeded.

Monitoring programs utilizing pheromone traps or light traps are essential for timing pesticide applications accurately and maximizing their cost-effectiveness.

Integrated Pest Management (IPM) strategies, which combine cultural, biological, and chemical methods, are the most sustainable approach to controlling coleopteran pests while minimizing environmental impact.