Grasshoppers and Locusts
Grasshoppers and locusts (superfamily Acridoidea), belonging to the family Acrididae, are major agricultural pests globally. While grasshoppers are generally solitary, certain species of locusts can transition to a gregarious phase, forming massive swarms that cause widespread devastation to vegetation.
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Catantops melanostictus
Catantops melanostictus
Central American locust
Schistocerca piceifrons
Ceracris
Ceracris
Chinese rice grasshopper
Oxya chinensis
Chorthippus biguttulus
Chorthippus biguttulus
Chrotogonus
Chrotogonus
Chrotogonus hemipterus
Chrotogonus hemipterus
Chrotogonus oxypterus
Chrotogonus oxypterus
Chrotogonus trachypterus
Chrotogonus trachypterus
Chrysochraon
Chrysochraon
Chrysochraon dispar
Chrysochraon dispar
Clear-winged grasshopper
Camnula pellucida
Club-horned grasshoppers
Arcyptera
Common field grasshopper
Chorthippus brunneus
Common Green Grasshopper
Chorthippus parallelus
Cornops
Cornops
Cornops aquaticum
Cornops aquaticum
Cryptocatantops
Cryptocatantops
Cryptocatantops haemorrhoidalis
Cryptocatantops haemorrhoidalis
Cyrtacanthacris
Cyrtacanthacris
Dagan rice grasshopper
Hieroglyphus daganensis
Dark bush-cricket
Arcyptera fusca
Dark-legged grasshopper
Cataloipus fuscocaerulipes
Dark-winged grasshopper
Chorthippus scalaris
Desert locust
Schistocerca gregaria
Desert locust
Schistocerca
Devastating grasshopper
Melanoplus devastator
Diabolocatantops
Diabolocatantops
Diabolocatantops axillaris
Diabolocatantops axillaris
Dichroplus
Dichroplus
Dichroplus elongatus
Dichroplus elongatus
Differential grasshopper
Melanoplus differentialis
Dissosteira
Dissosteira
Dissosteira spurcata
Dissosteira spurcata
Dnopherula
Dnopherula
Dnopherula werneriana
Dnopherula werneriana
Dociostaurus albicornis
Dociostaurus albicornis
Dociostaurus brevicollis
Dociostaurus brevicollis
Duronia
Duronia
Duronia chloronota
Duronia chloronota
Egyptian grasshopper
Aiolopus simulatrix
Egyptian grasshopper
Anacridium aegyptium
Egyptian locust
Anacridium
Epacromius tergestinus
Epacromius tergestinus
Euchorthippus elegantulus
Euchorthippus elegantulus
Eurysternacris brevipes
Eurysternacris brevipes
Euthystira
Euthystira
Eyprepocnemis plorans
Eyprepocnemis plorans
Fischer's grasshopper
Stenobothrus fischeri
Gastrimargus determinatus
Gastrimargus determinatus
Gomphocerus
Gomphocerus
Gomphocerus rufus
Gomphocerus rufus
Grasshopper
Chorthippus
Green hesperotettix
Hesperotettix viridis
Green marsh grasshopper
Mecostethus parapleurus
Green meadow grasshopper
Omocestus viridulus
Green-striped grasshopper
Aiolopus thalassinus
Green-striped grasshopper
Chortophaga
Green-striped grasshopper
Chortophaga viridifasciata
Harpezocatantops stylifer
Harpezocatantops stylifer
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Grasshoppers and Locusts
These pests are highly polyphagous, attacking a vast array of crops including wheat, corn, sorghum, sunflowers, and various legumes. They consume almost all green plant parts, including leaves, stems, flowers, and even the bark of young trees. In peak infestation years, they can cause total crop failure, leading to significant economic losses for farmers.
The life cycle consists of egg, nymph, and adult stages. Females lay their eggs in the soil in structures called egg pods. After hatching, nymphs go through several instars, feeding voraciously throughout the process. Environmental factors such as moisture and population density are the primary triggers for the shift from solitary to gregarious swarming behavior.
The damage caused by these insects is characterized by aggressive defoliation and tissue destruction. Locust swarms move across fields, consuming everything in their path with extreme speed. Beyond the loss of biomass, the damage can render crops unsuitable for harvest and can weaken plants, making them more susceptible to subsequent diseases and secondary infestations.
Integrated Pest Management (IPM) is crucial for control. Cultural practices like deep plowing and harrowing help destroy egg pods in the soil. Chemical control is most effective when applied at the early nymph stages before the insects develop wings. Regular monitoring and coordinated regional response are essential to mitigate the risk of large-scale swarms.
- Regular field scouting to monitor population density.
- Mechanical destruction of egg sites through tillage.
- Timely application of chemical insecticides on nymph clusters.
- Utilizing biological controls such as specific fungal pathogens.