Reference · Pests

Aleyrodidae

Whiteflies (Aleyrodidae) belong to the order Hemiptera and are notorious sap-sucking pests that affect a wide range of plants globally. These small insects, often found on the underside of leaves, resemble tiny moths with powdery white wings. Their ability to reproduce rapidly under favorable conditions makes them a significant challenge for farmers and gardeners alike.

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Indian whitefly Aleurocybotus indicus Ishigaki whitefly Aleurotrachelus ishigakiensis Japanese citrus whitefly Parabemisia myricae Jasmine whitefly Aleuroclava jasmini Jujube whitefly Aleurocanthus zizyphi Kirkaldy whitefly Dialeurodes kirkaldyi Laurel whitefly Trialeurodes lauri Lecanoideus Lecanoideus Lecanoideus mirabilis Lecanoideus mirabilis Loranthus whitefly Dialeurodes loranthi Machilus whitefly Pealius machili Mango blackfly Aleurocanthus mangiferae Maple whitefly Aleurochiton Maple whitefly Aleurochiton acerinus Maple whitefly Aleurochiton aceris Maple whitefly Aleurochiton pseudoplatani Maritime whitefly Aleurodicus maritimus Marlatt whitefly Aleurolobus marlatti Massilieurodes Massilieurodes Massilieurodes setiger Massilieurodes setiger Metaleurodicus manni Metaleurodicus manni Metaleurodicus minimus Metaleurodicus minimus Mexican whitefly Aleuropleurocelus mexicanus Minuta whitefly Minutaleyrodes minuta Minutaleyrodes Minutaleyrodes Mulberry whitefly Tetraleurodes mori Mulberry whitefly Pealius mori Murraya whitefly Aleuroclava murrayae Neemani whitefly Tetraleurodes neemani Neomaskellia Neomaskellia Neomaskellia andropogonis Neomaskellia andropogonis Nevada whitefly Aleuropleurocelus nevadensis Odontaleyrodes Odontaleyrodes Olive whitefly Aleurolobus olivinus Orchamoplatus Orchamoplatus Orchamoplatus mammaeferus Orchamoplatus mammaeferus Pale whitefly Dialeurodes pallida Palm whitefly Aleurotrachelus atratus Palm whitefly Aleurocerus palmae Papaya whitefly Trialeurodes variabilis Papillate whitefly Dialeuropora papillata Parabemisia Parabemisia Paraleyrodes Paraleyrodes Paraleyrodes singularis Paraleyrodes singularis Pealius Pealius Pealius misrae whitefly Pealius misrae Pergande's whitefly Trialeurodes pergandei Pomegranate whitefly Siphoninus granati Porous whitefly Aleurodicus poriferus Rachisphora Rachisphora Rachisphora styraci Rachisphora styraci Rhamnus whitefly Dialeurolobus rhamni Rhododendron whitefly Massilieurodes chittendeni Rhododendron whitefly Odontaleyrodes rhododendri Rugaleyrodes Rugaleyrodes Rugose spiraling whitefly Aleurodicus rugioperculatus Schefflera whitefly Dialeurodes schefflerae Semilunar whitefly Tetraleurodes semilunaris Shinano whitefly Bemisia shinanoensis Shizuoka whitefly Aleyrodes shizuokensis
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Aleyrodidae

The host range of whiteflies is extremely broad, encompassing numerous horticultural, ornamental, and field crops. In agricultural settings, they are particularly problematic in greenhouses where they attack tomatoes, cucumbers, peppers, and various ornamental flowers. They thrive in warm, humid environments, which are characteristic of many protected cultivation systems.

The life cycle of the whitefly consists of egg, nymphal stages (often referred to as 'crawlers'), pupae, and adults. The nymphs are the primary feeding stage, piercing the leaf tissue with their specialized mouthparts to extract plant sap. Due to high reproductive rates and continuous breeding cycles in temperature-controlled environments, a single infestation can escalate into a major outbreak within days.

Direct damage is caused by the depletion of nutrients, resulting in stunted growth, yellowing of leaves (chlorosis), and general plant decline. Indirectly, whiteflies excrete a sugary substance known as honeydew, which encourages the growth of sooty mold, preventing photosynthesis. Perhaps most dangerously, they act as vectors for various plant viruses, which can lead to severe crop losses and irreversible damage.

Effective management requires an Integrated Pest Management (IPM) approach. Key strategies include the use of yellow sticky traps for monitoring, maintaining high sanitation standards, and the introduction of biological control agents like Encarsia formosa. Chemical control involves the use of systemic and contact insecticides, ensuring a rotation of chemical groups to manage resistance. Long-term success relies on combining these methods with regular scouting and environmental manipulation.