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As summer progresses into late summer, many parts of Texas experience prolonged periods of hot, dry weather with fewer rainfall events. These conditions not only place ornamental plants under drought stress but also create the perfect environment for spider mites to thrive. Unlike many insect pests that are suppressed by frequent rain, spider mite populations often explode during extended periods of dry heat, making August and September a critical time for greenhouse and nursery growers to intensify scouting efforts.
The two-spotted spider mite (Tetranychus urticae) is one of the most common and economically important pests of ornamental crops. Feeding on more than 200 plant species, it attacks popular nursery and greenhouse crops including roses, hibiscus, lantana, marigold, salvia, verbena, hydrangea, and many bedding plants. Spider mites feed by piercing individual plant cells and removing their contents, producing characteristic yellow or white stippling on leaves. As infestations worsen, foliage develops a bronze appearance, leaves become dry and brittle, and severe infestations produce fine webbing that can cover leaves, stems, and flowers. Warm temperatures accelerate spider mite development, allowing a generation to be completed in as little as 7–10 days under favorable conditions. This rapid life cycle means that a few mites can quickly develop into damaging populations if left undetected. Dry weather also reduces the natural washing effect of rainfall, allowing mites to survive and reproduce unchecked. Routine scouting is the most effective defense. Inspect susceptible crops weekly, paying particular attention to the undersides of leaves where mites feed and lay eggs. A 10× hand lens can help detect early infestations before visible damage becomes widespread. Early detection allows timely intervention and greatly improves management success. An integrated pest management (IPM) approach provides the best long-term control. Maintain adequate irrigation to minimize plant stress, remove heavily infested plant material, and eliminate weeds that can serve as alternative hosts. In greenhouses, reducing excessive heat and maintaining appropriate humidity can help slow spider mite population growth. Biological control can be highly effective, especially in protected environments. Predatory mites such as Neoseiulus californicus provide excellent suppression when released early, before pest populations become established. Conserving these beneficials by selecting compatible pesticides is essential for successful biological control. When chemical control is necessary, rotate miticides with different modes of action to delay the development of resistance. Thorough coverage of the undersides of leaves is critical, as both mites and their eggs are concentrated in these protected areas. Late summer is the time when spider mites can quickly turn from a minor nuisance into a serious production problem. By combining vigilant scouting with cultural, biological, and chemical management tactics, growers can protect plant quality and minimize losses during one of the most challenging periods of the growing season.
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One of the most common complaints from homeowners during the growing season is the appearance of a black, soot-like coating on leaves, stems, patios, vehicles, and outdoor furniture beneath landscape plants. While many assume this black growth is a plant disease, the real culprit is often an insect infestation. Sooty mold is a fungal growth that develops on honeydew, a sticky, sugar-rich waste product excreted by sap-feeding insects. Common honeydew-producing pests in Texas landscapes include aphids, whiteflies, scales, mealybugs, and psyllids. As these insects feed on plant sap, they remove more sugar than they can utilize and excrete the excess as honeydew. Sooty mold fungi then colonize this sticky residue, forming a dark coating on plant surfaces. The mold itself does not infect plant tissues or directly damage leaves. However, heavy accumulations can block sunlight and reduce photosynthesis, leading to decreased plant vigor and aesthetic quality. In severe cases, leaves may yellow, growth may slow, and plants can become stressed, particularly when combined with other environmental challenges. Several landscape plants are commonly affected by sooty mold in Texas, including crape myrtle, gardenia, holly, hibiscus, magnolia, citrus, and many ornamental trees and shrubs. Crape myrtle bark scale, for example, is a frequent cause of heavy honeydew production and subsequent sooty mold development on crape myrtles. Likewise, whiteflies and aphids often contribute to outbreaks on ornamentals and flowering plants. Successful management requires addressing the underlying insect problem rather than focusing solely on the mold. Begin by inspecting plants carefully, especially the undersides of leaves and stems, where many sap-feeding insects congregate. Look for live insects, cast skins, sticky honeydew, or ant activity. Ants are often attracted to honeydew and may indicate the presence of hidden pest populations. An integrated pest management (IPM) approach is the most effective strategy. Encourage natural enemies such as lady beetles, lacewings, parasitic wasps, and predatory bugs that help suppress aphids, scales, and whiteflies. Avoid unnecessary broad-spectrum insecticide applications that may disrupt beneficial insect populations. When pest numbers exceed acceptable levels, select insecticides based on the target pest and follow all label directions. Once the insect population is reduced, honeydew production will decline, and existing sooty mold will gradually weather away through rainfall, irrigation, and normal leaf growth. In some situations, washing leaves with water can improve appearance, but this will not solve the problem if the insects remain active. When blackened leaves appear in the landscape, remember that sooty mold is usually a symptom rather than the primary issue. Identifying and managing the honeydew-producing insects will provide the most effective long-term solution and help maintain healthy, attractive landscape plants throughout the season. Figure: Sooty mold on crape myrtle leaves (A) caused by crape myrtle aphid (B), and sooty mold on crape myrtle stem/bark caused by crape myrtle bark scale (C)
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AuthorKim Cabrera, TNLA Marketing Manager Archives
July 2026
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