PROTECT YOUR DNA WITH QUANTUM TECHNOLOGY
Orgo-Life the new way to the future Advertising by Adpathway
An invasive species of thrips that recently arrived in the United States is a major concern for growers of vegetables and ornamental plants. A new guide in the Journal of Integrated Pest Management summarizes current knowledge about Thrips parvispinus, including host range, life history, distribution, and management challenges. Shown here are a T. parvispinus adult female (left) and male (right). (Photos by Manfred R. Ulitzka, Ph.D, Thrips-iD)By Navdeep Kaur and Rajesh Vavilapalli
Rajesh Vavilapalli
Navdeep KaurAt barely a millimeter long, Thrips parvispinus is easy to overlook. But this tiny insect is rapidly becoming a major concern for growers, greenhouse producers, and entomologists around the world. Known as the short-spined thrips, T. parvispinus has gained attention in recent years because of its ability to damage a wide variety of vegetables and ornamental plants. Although small, its impact can be anything but minor.
Like other thrips species, T. parvispinus feeds by piercing the epidermal layer of plant tissues and sucking out the cell contents. The result is the kind of damage growers know all too well: silvery feeding scars, bronzed leaves, distorted growth, flower drop, and scarred fruit. Heavy infestations can reduce both crop yield and market quality. What makes this species particularly challenging is how quickly populations can build. Under warm conditions, T. parvispinus can complete its life cycle in about two weeks, allowing multiple generations to develop during a single growing season. Because the insects often hide inside flowers and young plant tissues, infestations may go unnoticed until damage becomes severe.
This thrips is not picky about where it feeds. Researchers have reported T. parvispinus from a broad range of hosts, including peppers, eggplant, papaya, gardenia, mandevilla, and many more. That flexibility gives the insect many opportunities to move between crops, ornamental plants, nurseries, and landscapes.
Originally described from southeast Asia, the species has now spread to several regions around the world, including the United States. Like many invasive pests, it likely travels through global trade pathways. Its small size and cryptic behavior make it especially difficult to detect during transport. Another challenge is identification. Damage caused by T. parvispinus can resemble injury from other thrips species or even broad mites, making infestations easy to misdiagnose. Accurate identification often requires close examination and, in some cases, expert confirmation.
Because this species is still relatively new in many production systems, researchers are continuing to study its biology, ecology, and management. In a review article published in April in the Journal of Integrated Pest Management with collaborators from the University of Georgia, University of Florida, and Clemson University, we summarize current knowledge about T. parvispinus, including its host range, life history, distribution, and management challenges. The review also highlights an important reality: There is no single “silver bullet” for managing this pest.
At present, management of T. parvispinus relies heavily on chemical insecticide. But thrips are notoriously difficult to control because they hide in protected plant tissues and can develop resistance to frequently used products. That has increased interest in integrated approaches that combine monitoring, sanitation, biological control, and careful insecticide rotations.
For growers and landscape professionals, vigilance will be critical as this invasive thrips continues expanding its range. Unusual leaf distortion, bronzing, flower damage, or thrips infestations that do not respond to standard treatments may warrant closer investigation.
As researchers continue working to better understand this emerging pest, early detection and accurate identification remain some of the best tools available for slowing its spread and reducing its impact on agricultural and ornamental production systems.
Navdeep Kaur is a Ph.D. student in entomology and graduate research assistant at the University of Georgia’s Griffin campus. Email: nk92020@uga.edu. Rajesh Vavilapalli is a Ph.D. candidate in entomology and graduate research assistant at the University of Georgia’s Griffin campus. Email: rajesh4ento@gmail.com.
Discover more from Entomology Today
Subscribe to get the latest posts sent to your email.


4 weeks ago
76




















English (US) ·
French (CA) ·