Aphids
Aphids (superfamily Aphidoidea) are small sap-sucking insects belonging to the order Hemiptera. They typically range from 0.5 to 6 mm in length and possess a soft body, often featuring a pair of cornicles (siphunculi) on their abdomen.
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Schoutedenia emblica
Schoutedenia emblica
Schoutedenia lutea
Schoutedenia lutea
Schoutedenia ralumensis
Schoutedenia ralumensis
Semiaphis
Semiaphis
Senecio aphid
Aphis lugentis
Shallot aphid
Myzus ascalonicus
Shivaphis
Shivaphis
Short-bodied grain aphid
Schizaphis rotundiventris
Siberian spruce aphid
Cinara sibiricae
Sinomegoura
Sinomegoura
Sipha
Sipha
Sipha elegans
Sipha elegans
Skriabin aphid
Macrosiphum skriabini
Slavum
Slavum
Slavum wertheimae
Slavum wertheimae
Small cereal aphid
Brachycolus holci
Small strawberry aphid
Chaetosiphon minus
Sorrel aphid
Brachycaudus rumexicolens
Sow thistle aphid
Uroleucon sonchi
Soybean aphid
Aphis glycines
Spiraea aphid
Anuraphis spiraeae
Spiraea aphid
Aphis spiraephaga
Spirea aphid
Aphis spiraecola
Spotted alfalfa aphid
Therioaphis ononidis
Spotted alfalfa aphid
Therioaphis
Spotted alfalfa aphid
Therioaphis trifolii
Spruce aphid
Cinara piceae
Spruce aphid
Mindarus
Spruce aphid
Todolachnus abietis
Spruce aphid
Cinara costata
Spruce aphid (Glyphina schrankiana)
Glyphina schrankiana
Spruce aphid (Lachnus pallipes)
Lachnus pallipes
Spruce aphid Todolachnus
Todolachnus
Spruce bark aphid
Cinara escherichi
Spruce bladder aphid
Pachypappa vesicalis
Spruce brown aphid
Cinara neubergi
Spruce brown aphid
Cinara shinjii
Spruce cinara aphid
Cinara curvipes
Spruce gall adelgid
Cholodkovskya viridula
Spruce gall aphid
Mindarus obliquus
Spruce gall aphid
Pachypappa marsupialis
Spruce gall aphid
Pachypappa sacculi
Spruce giant aphid
Cinara nuda
Spruce needle aphid
Mindarus japonicus
Spruce powder aphid
Cinara pulverulens
Spruce resin aphid
Cinara setosa
Spruce resin aphid
Cinara pruinosa
Spruce root aphid
Pachypappa warschavensis
Spruce rosette gall aphid
Pachypappa rosettei
Spruce shoot aphid
Cinara terminalis
Spruce shoot aphid
Cinara pilicornis
Spruce twig aphid
Mindarus abietinus
Stachys aphid
Ovatomyzus stachyos
Strawberry aphid
Aphis forbesi
Strawberry aphid
Chaetosiphon fragaefolii
Strawberry aphid
Chaetosiphon gracilicorne
Strawberry aphid
Chaetosiphon jacobi
Strawberry aphid
Chaetosiphon potentillae
Strawberry aphid
Chaetosiphon
Strawberry aphid
Chaetosiphon thomasi
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Aphids
This group includes thousands of species characterized by a piercing-sucking mouthpart (proboscis) and a remarkable ability to reproduce rapidly under favorable conditions.
They exhibit diverse coloration, ranging from light green and yellow to black, brown, or even pink, depending on the specific species and their host plants.
The life cycle is often complex, involving seasonal migration between different host plants and the ability to reproduce through parthenogenesis, where females produce offspring without mating.
Aphids often form symbiotic relationships with ants, which protect them from predators and transport them between plants in exchange for the sugary honeydew they excrete.
Aphids are generalist pests (polyphages) that damage a wide range of agricultural, horticultural, and ornamental plants, including vegetables, fruit trees, and flowers.
They feed by extracting plant sap, which weakens the plant, stunts its growth, causes leaf distortion, and leads to a significant decrease in overall yield and vigor.
During feeding, aphids secrete honeydew, a sticky substance that promotes the growth of sooty mold, which covers leaves and disrupts the photosynthesis process.
Aphids are major vectors for various plant viruses. By moving from infected plants to healthy ones, they transmit diseases that can cause mosaic, leaf rolling, and systemic plant failure.
In cases of heavy infestation, aphid populations can quickly destroy young transplants, damage fresh growth, and reduce the marketability of the final product.
Aphid activity typically begins in early spring, as soon as temperatures consistently exceed 10–12 degrees Celsius and plants initiate their new growth cycle.
Peak population levels usually occur during late spring and early summer when overwintering eggs hatch and initiate rapid colonization of fresh plant tissue.
Multiple generations are produced throughout the season. Warm, dry weather conditions provide the ideal environment for explosive growth in aphid populations.
As autumn approaches, sexual forms are produced to mate and lay overwintering eggs on tree bark or perennial weeds, ensuring the survival of the species during winter.
Scouting for aphids should begin at the bud break stage, focusing on the undersides of young leaves and the tips of new shoots.
Early signs of infestation include curling, wrinkling, and yellowing of the leaves, particularly on the tender new growth of the plant.
The presence of a sticky, shiny coating (honeydew) on leaves and stems is a strong indicator of aphid presence and active sap-feeding.
Increased ant activity around a plant is a common tell-tale sign that an aphid colony is being farmed and protected by ants nearby.
A black, powdery growth known as sooty mold covering the leaf surface indicates a long-term infestation that has been present for some time.
Careful inspection of the undersides of leaves and leaf axils usually reveals clusters of tiny insects of various developmental stages.
Cultural control methods include weeding to remove alternative hosts and pruning away heavily infested parts of the plant to reduce initial populations.
Biological control involves encouraging natural predators and parasitoids, such as lady beetles, lacewings, hoverfly larvae, and parasitic wasps, which act as effective natural suppressants.
Chemical control should be utilized when pest populations exceed the economic threshold. Systemic insecticides are often preferred for their ability to protect newly developing tissue.
It is crucial to rotate insecticide classes to manage resistance, as aphids are prone to developing resistance against frequently used chemical compounds.
In smaller gardens or greenhouse environments, insecticidal soaps or horticultural oils can be used to control aphids via contact, provided that thorough coverage is achieved during application.