Leafminers (Agromyzidae)
Leafminers (family Agromyzidae) represent a significant group of pests within the order Diptera. These small flies are notorious for their larval stage, during which they mine through plant tissues. With thousands of species globally, they represent a persistent threat to both open-field agricultural operations and protected greenhouse environments.
What the section contains
Leaf miners
Agromyzidae
24 products
Leaf miner fly
Agromyza aristata
12 products
Beet leaf miner
Liriomyza chenopodii
9 products
Aconite leaf miner
Phytomyza aconiti
Agromyzid fly
Agromyza terebrans
Alfalfa leafminer
Agromyza frontella
Alfalfa leafminer
Agromyza nana
Amauromyza
Amauromyza
Amauromyza leaf miner
Amauromyza karli
Ambrosia leaf miner
Calycomyza ambrosiae
American serpentine leafminer
Liriomyza trifoliearum
American serpentine leafminer
Liriomyza trifolii
Angelica leaf miner
Phytomyza angelicae
Apfelbeck's leaf miner
Agromyza apfelbecki
Asparagus miner
Ophiomyia simplex
Asparagus miner
Ptochomyza asparagi
Aster leafminer
Calycomyza humeralis
Avicennia leafminer
Liriomyza avicenniae
Baccharis leafminer
Liriomyza baccharidis
Barley miner fly
Agromyza megalopsis
Bean fly
Ophiomyia phaseoli
Bean miner fly
Melanagromyza dolichostigma
Bean pod borer
Melanagromyza obtusa
Birch cambium miner
Phytobia betulae
Brazilian leafminer
Liriomyza braziliensis
Broomrape fly
Phytomyza orobanchia
Burdock leaf miner
Ophiomyia lappivora
Cabbage leaf miner
Liriomyza brassicae
Cabbage leaf miner
Phytobia crucifericola
Cabbage leaf miner
Phytomyza rufipes
California leafminer
Liriomyza pictella
Calycomyza
Calycomyza
Cambium fly
Phytobia cambii
Cambium mining fly
Phytobia setosa
Carnation leaf miner
Liriomyza dianthicola
Carrot leaf miner
Napomyza carotae
Castor leaf miner
Agromyza ricini
Celery leaf miner
Agromyza apii
Cereal leaf miner
Agromyza albipennis
Cereal leaf miner
Agromyza nigrella
Cereal leaf miner
Cerodontha incisa
Cereal leaf miner
Cerodontha occidentalis
Cereal leaf miner
Liriomyza flaveola
Cereal leaf miner
Pseudonapomyza atra
Cereal leaf miner
Phytomyza fuscula
Cereal leaf miner
Chromatomyia nigra
Cereal leaf miner
Pseudonapomyza spicata
Cereal leaf miner fly
Cerodontha denticornis
Cereal leaf miner fly
Agromyza nigrociliata
Cerodontha
Cerodontha
Cherry cambium miner
Phytobia cerasiferae
Chickpea leaf miner
Liriomyza cicerina
Chicory leaf miner
Napomyza cichorii
Chromatomyia
Chromatomyia
Chrysanthemum leaf miner
Nemorimyza maculosa
Chrysanthemum leaf miner
Liriomyza insignis
Chrysanthemum leaf miner
Napomyza lateralis
Chrysanthemum leaf miner
Phytomyza albiceps
Chrysanthemum leaf miner
Chromatomyia syngenesiae
Chrysanthemum leaf miner
Phytomyza marginella
Products in this section · 12
Leafminers (Agromyzidae)
The host range of these insects is remarkably broad, including various vegetable crops such as tomatoes, cucumbers, peppers, and various beans. Additionally, they are known to attack ornamental plants, causing significant economic losses in the floriculture industry by reducing the aesthetic value and vitality of the plants.
The biology of Agromyzidae involves a metamorphosis cycle from egg to larva, pupa, and adult. Females puncture the leaf surface to lay eggs, and the emerging larvae begin feeding on the palisade parenchyma. This mining behavior creates specific patterns that are characteristic of the species, followed by pupation, which may occur either on the leaf surface or within the soil.
Damage caused by leafminers is twofold. Firstly, the larval mining action destroys photosynthetic tissue, which weakens the plant and stunts its growth. Secondly, the feeding punctures made by adult flies and the tunnels created by larvae can serve as entry points for secondary bacterial or fungal pathogens, leading to further tissue necrosis and plant decay.
Effective management requires an Integrated Pest Management (IPM) approach. This includes the use of sticky yellow traps for early detection and population reduction, as well as maintaining rigorous sanitation practices to eliminate weeds that serve as alternative hosts. When biological control with parasitoids is insufficient, target-specific systemic insecticides can be applied to mitigate severe outbreaks.