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Rice green leafhopper (417) Print Fact Sheet

Common Name

Rice green leafhopper

Scientific Name

Nephotettix nicropictus; there are several other Nephotettix green leafhopper species that feed on rice, e.g., Nephotettix malayanus and Nephotettix virescens.


Restricted. Asia, Africa (Cameroon), Oceania. It is recorded from Australia, Fiji, Guam, Federated States of Micronesia, Palau, and Papua New Guinea.


Rice and wild grasses and sedges.

Symptoms & Life Cycle

The green leafhopper is more common in lowland rainfed and irrigated wetland rice than in upland rice. Nymphs and adults do the damage, directly by sucking the sap of rice plants, creating white patches on the tillers, and causing wilting and, if the population is high enough, they cause 'hopperburn' - a yellowing, browning and death of the plants. Indirectly, damage is caused by the green leafhopper spreading virus diseases, e.g., rice tungro bacilliform virus, rice tungro spherical virus, and others. Note that tungro viruses are not present in Pacific island countries; nearest country is Irian Jaya.

Eggs are white, banana-shaped, laid in groups of about 15 into the leaf sheath or the midribs. The nymphs are yellow at first, turning light brown and then near black at maturity. The adults have two black spots, extending to the tips of the forewings, black tips to the wings, and black around the margins of the pronotum (extension from the head over the thorax) (Photo 1). The black bands on the head are less obvious in females.

Female lefthoppers disperse as the crop matures, but they are not strong fliers, traveling only about 1 km. Large migrations do not occur.


Rarely are green leafhoppers in sufficient numbers to cause severe damage directly; they feeds more on grassy weeds than on rice; however, they transmit virus diseases to rice, even though they are considered to be less efficient in transmitting viruses than another green leafhopper, Nephotettix virescens.

Detection & Inspection

Look for the black spots on the centres and tips of the wings, and, also, three parallel bands across the head, best seen from above. An entirely green form also exists, but black lines on the head distinguish it from other leafhoppers. Note, that regrowth of plants after harvest is a good time to determine the presence of disease.


There are a large number of parastoids and predators that attack all stages of the green leafhopper life cycle. As long as insecticides are not used, populations of this pest are usually under control by natural enemies. However, virus infection may still occur. Infection is often early in the crop, at times when parasitoids and predators are only beginning to increase, and numbers too small to control populations to the level required to prevent spread of viruses.


Before planting:

During growth:

After harvest:

Most modern varieties released in Asia  have resistance against Nephotettix virscens, and so they will be useful against Nephotettix nigropictus, too. Interestingly, resistant varieties force a change in feeding of the leafhopper from phloem to xylem, and as the virus is concentrated in the phloem, fewer leafhoppers are infected.

In Fiji, acephate and diazinon are recommended, but these insecticides should be used sparingly, and only when outbreaks of the leafhopper are likely to cause damage, which is relatively rare. Insecticides are more likely to result in the destruction of parasitoids and predators and cause increases of OTHER insects, e.g., the brown planthopper, and result in a rapid increase (‘resurgence’) of populations, leading to hopperburn.

Use neem as an alternative insecticideaaaaaa; it is effective and less harmful to natural enemies.

When using a pesticide, always wear protective clothing and follow the instructions on the product label, such as dosage, timing of application, and pre-harvest interval.

AUTHOR Grahame Jackson
Information from CABI Plantwise Knowledge Bank (; and from Plant-sucking pests - green leafhoppers. ( Photo 1 Nephotettix nigropictus Natasha wright, Cook's Pest Control, Photo 2&3 Bhusal K et al. (2019) A review of rice Tungro virus in Nepal. Journal of Plant Sciences and Crop Protection. Volume 2(1).

Produced with support from the Australian Centre for International Agricultural Research under project HORT/2016/185: Responding to emerging pest and disease threats to horticulture in the Pacific islands, implemented by the University of Queensland and the Secretariat of the Pacific Community.

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