Pest predictor identifies ingredients for ecological recipe for destruction

If you鈥檝e felt the familiar itch of browntail moth rash, seen the grayish-green needles of an infested hemlock or watched as woodpeckers bore into ash trees for a meal hidden beneath the surface, you鈥檝e experienced the devastating effects of non-native pests. Browntail moth, hemlock wooly adelgid and emerald ash borer are only three of the many pests that have wreaked havoc on Maine鈥檚 public health, economy and ecological landscape. 

A photo of a person writing on a plastic bag

Angela Mech, assistant professor of entomology at the 91爆料, is an expert on forest insects, specifically the invasive ones.

鈥淲hen talking about non-native insects that invade North America, the first time something is detected, those of us who work in the field hold our breath, because we have no idea if it鈥檚 going to be the next emerald ash borer, the next browntail moth, the next really bad thing,鈥 Mech said.

Mech has been grappling with how to predict which of these invaders may cause the next ecological disaster since 2016, when she was a postdoctoral researcher at the University of Washington. 鈥淲hy do some species do all these bad things? But the majority of them don鈥檛?鈥 Mech said, posing the same question that brought the group together initially. 

That question inspired Mech and her collaborators to develop a tool to predict the risk a non-native insect may pose if introduced to a certain area. Its name is, fittingly, pest predictor. 

The is the result of seven years of work by Mech and across the United States, with funding from Davey Tree Expert Company, the U.S. Geological Survey and the USDA Forest Service. Davey Tree Expert Company also acts as host for the tool. It launched in fall 2023 and uses input data determined by hypotheses to predict the probability of a non-native insect becoming a high-impact pest. It is hosted by i-Tree, a peer-reviewed software suite from the Forest Service that provides urban and rural forestry analysis and benefits assessment tools.

To create the tool, researchers compiled factors that may affect non-native insects鈥 ability to reshape a forest. Traits of the insect, traits of the North American host trees, insect evolutionary history and tree evolutionary history were each evaluated and then combined into a single model that predicts the risk a given insect poses for each North American tree species.

鈥淲e had to collect all this data to test those hypotheses,鈥 Mech said. 鈥淥ur conclusion was that, like every recipe, there are multiple ingredients, and so there was no single answer. It was actually multiple things. Sometimes it does have to do with the host and then it also has to do with evolutionary history. It鈥檚 about having these things lined up in the right way. It鈥檚 the recipe for destruction.鈥

A photo of a pest trap with bugs in it

Nathan Havill, a research entomologist with the Forest Service鈥檚 Northern Research Station was one of many of the pest predictor鈥檚 key developers. Havill works in the agency鈥檚 invasive species unit, concentrating on pests that impact trees and forest ecosystems. He focuses mainly on genetics and evolutionary biology, examining new pests to find out more about where they came from and their natural enemies that may have the potential to stem their spread. 

A photo person looking a pest trap

At present, Havill is gathering information about approximately 70 species of non-native insects. His intent is to input this information into the model, which can help determine if any have the potential to become high-impact pests.

鈥淥ftentimes, when a non-native insect gets introduced and it rears its ugly head as a pest, it鈥檚 a scramble to figure out what it is and where it came from. During the time when we鈥檙e trying to figure out that basic information, the pest is killing trees,鈥 Havill said. 鈥淚f we can focus our efforts on particular groups of insects and study those before they get here, then we can reduce some of our time trying to figure out those basic elements. That鈥檚 really the benefit that I see for this tool: being able to focus the research and make it more efficient to study those insects that have a higher probability of becoming mega invaders.鈥

Havill also noted that the use of a tool of this kind creates a more efficient and cost-effective workflow for eradicating pests once they arrive.

鈥淥ftentimes we鈥檙e caught by surprise, and by the time we realize that an invasive insect is a serious pest, it鈥檚 spread so much that eradication is really difficult. If we can recognize and understand what the pests are earlier, and be able to identify them and find them earlier, then we can potentially eradicate them before they spread and become pervasive pests,鈥 Havill said.

Mech and Havill both see this tool as a proactive solution to the reactive work they both do daily. With the tool鈥檚 ability to help predict the next ecological disaster, their next step is to spread the word and connect with researchers worldwide to determine how it can make an impact in their own countries. 

Contact: Shelby Hartin, shelby.hartin@maine.edu