Call Me Invasive: New Evidence Confirms the Status of the Giant Asian Mantis in Europe

These mantises are increasingly threatening local biodiversity through aggressive predation and reproductive competition.

In the realm of entomology, few creatures command as much fascination as the mantis. Throughout history, these striking insects have been deeply woven into local myths and legends, sometimes respected as mystical soothsayers that can guide lost travelers home, and other times feared as little devils. 

Today they remain captivating animals, serving as excellent bioindicators of biodiversity, and helping us identify rich and diverse ecosystems when present as native species. 

However, a new study published in the open-access Journal of Orthoptera Research reports that two mantis species identified in Europe – Hierodula tenuidentata and Hierodula patellifera – have been formally recognised as Invasive Alien Species (IAS). This shift in status highlights a growing threat to the biodiversity that native mantises typically help us protect. Led by Roberto Battiston of the Museum of Archaeology and Natural Sciences “G. Zannato”, a team of researchers investigated the impacts of these native to Asia species on European ecosystems which, until now, were largely unknown.

According to Battiston, these mantises have been present in Europe for about a decade, but their numbers have recently exploded in the Mediterranean and continental regions. 

“They are pushing increasingly further north, thanks to climate change,” Battiston explains, noting that viable populations are now frequently spotted by the public in local parks and gardens. Because they are large and fascinating, they often inspire more curiosity than concern, with members of the public frequently wondering if these striking insects are a positive sign for their local environment.

“This study was born to give people those answers and to develop strategies to contain them.”

Hierodula tenuidentata and Hierodula patellifera are large and adaptable tree-dwelling predators, characterised by their high reproductive potential. They are capable of hatching an average of around 200 nymphs per egg case, which is almost double that of the native European mantis (Mantis religiosa). Coupled with their low rate of cannibalism among young nymphs, they are able to grow very rapidly. 

These species are considered particularly dangerous to local biodiversity because they fatally lure native males into mating attempts that end in the males being eaten, potentially depressing native populations. They additionally consume a wide range of other native species, including essential pollinators like honeybees, and small protected vertebrates such as lizards and tree frogs. These negative interactions demonstrate the need for urgent assessments, particularly in Mediterranean islands with endemic species of invertebrates and vertebrates.

Interestingly, domestic cats have emerged as the primary vertebrate predator of the invasive Asian mantises, accounting for 45% of recorded positive predation events. Battiston notes that while cats serve as an effective means of containment for these invaders, they are unable to distinguish between alien and native species. Consequently, roaming cats also prey on native species like the European mantis, which already suffer competition from their exotic cousins in peri-urban environments and are in decline. 

Human-modified environments, particularly in urban and suburban areas, significantly facilitate the expansion of Hierodula mantises. These insects utilise artificial structures, such as insect hotels, as concentrated hunting grounds, and leverage urban heat islands to survive longer into colder months. Thus, by exploiting human infrastructure and localised warming, these mantises are successfully extending their range and survival beyond natural limits.

To mitigate the spread of Hierodula, Battiston mentions the following initiative:

“My colleagues William di Pietro and Antonio Fasano (GRIO) have managed to set up a huge citizen science project and collect over 2,300 reports from enthusiasts and citizens. Citizen science is a fundamental tool not only for monitoring but also for raising awareness and informing people in an active and participatory way about these issues.”

Hierodula patellifera. (Video credit: Roberto Battiston).

Beyond reporting sightings, the public can also take direct action by intervening during the winter months when trees and shrubs are leafless. During this time, the oothecae – brownish, spongy egg cases about 2-3 cm in size – are well-exposed and easily recognisable on branches. While these cases are easy to remove and their destruction is painless, Battiston cautions that the public should always consult a specialist before removal to ensure that they are not accidentally targeting native mantises.

Hierodula patellifera eating a wasp and a bee at the same time. (Video credit: Roberto Battiston).

The expansion of the Asian mantis is a powerful reminder of how human activity shifts natural boundaries and makes active community-led conservation more important than ever. As these adaptable invaders continue to reshape European ecosystems, our collective vigilance and participation in citizen science are effective tools for protecting Europe’s native biodiversity.

Original source:

Battiston R, Di Pietro W, Boscato F, Fasano A (2026) Call me invasive: Testing the first impacts of the alien mantises Hierodula patellifera and Hierodula tenuidentata on European biodiversity. Journal of Orthoptera Research 35(1): 179-190. https://doi.org/10.3897/jor.35.165233

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Rare grasshopper thought extinct rediscovered after 40 years

Unique to the island of São Nicolau, the insect is a “living fossil” that has shown remarkable resilience, surviving for millions of years.

The Monte Gordo Grasshopper (Eyprepocprifas insularis) has proved to be a rare and elusive species: its last, and, until now, only sighting was a single specimen found in 1980. This is why researcher Dr. Michel Lecoq declared it extinct in 1996.

A photo of a holotype grasshopper, Eyreprocoprizias insularis, labeled with collection details from San Nicolau, Cape Verde, 1980.
Eyprepocprifas insularis, male, holotype. This specimen, collected by the Programme de Recherche Interdisciplinaire Francais sur les Acridiens du Sahel team at São Nicolau, Cape Verde, in Oct. 1980, was the only known for many decades. Scale bar: 1 cm. Photo credit: Christophe Herve, MNHN, Paris.

After more than 40 years of no records, an exciting discovery happened thanks to a holiday Rob Felix took with his fellow researcher Annelies Jacobs in Cape Verde, the insect’s only known location, “to look for birds and other interesting stuff for field biologists like us. Before going on our trip, we looked for information about this peculiar grasshopper that was thought to be extinct for a long time. We were hoping and dreaming that maybe we could find it again.”

“During a night walk on our first evening on São Nicolau to a colony of a unique seabird species, the Fea, I stumbled upon a grasshopper sitting on the path. When I looked closer in the torch’s light, I immediately recognised its unique appearance. I shouted out loud: it’s Eyprepocprifas! To my surprise, correct at once because it’s not the most easily pronounceable genus name,” he says.

Close-up photo of a brown grasshopper perched on textured, reddish-brown rocks.
Eyprepocprifas insularis, male. This endemic to Monte Gordo Natural Park, São Nicolau, Cape Verde, was rediscovered in 2023 after being declared extinct. Photo credit: Rob Felix

In the following days, Rob and Annelies found several other specimens in Monte Gordo Natural Park and its surroundings.

Endemic to the island of São Nicolau, this grasshopper is a “living fossil,” meaning it hasn’t evolved significantly for millions of years and has few or no living relatives.

Habitat of Eyprepocprifas insularis on São Nicolau, Cape Verde. Photo credit: Rob Felix

“E. insularis must have been there for a very long time and has been able to withstand the severe ecological conditions,” the researchers write in their paper, which was published in the Journal of Orthoptera Research.

  • A close-up photo of a brown grasshopper perched on vibrant green leaves.
  • A close-up photo of a brown grasshopper with two white stripes along its back resting on a vibrant green leaf.
  • Close-up photo of a brown and tan grasshopper resting on earthy soil with dried plant material.
  • Close-up photo of a dark, textured grasshopper on a rocky surface.
  • Close-up photo of a brown grasshopper perched on a wooden surface.
  • A close-up photo of a brown grasshopper resting on a green leaf.
  • Close-up photo of a brown, textured grasshopper perched on green leaves.
  • A photo of a small, brown grasshopper sitting on a green leaf.

This montane grasshopper has shown remarkable resilience, surviving in the challenging environment of Cape Verde’s islands and enduring periods of intense drought and strong winds that can introduce new species from the African continent.

“The rediscovery of the only endemic brachypterous (short-winged) grasshopper, Eyprepocprifas insularis, on São Nicolau, an island with a volcanic origin dating back approximately five million years, provides significant insight into the island’s ecological and evolutionary history,” the researchers write.

They say this rediscovery is a crucial first step toward the insect’s conservation: as a threatened species restricted to a small area, E. insularis might actually be closer to extinction than we think.  Now that it has been found again, we have the opportunity to take steps to protect this unique species and its habitat.

Research article:

Felix R, Jacobs A, Lecoq M (2025) Rediscovery of the Monte Gordo Grasshopper Eyprepocprifas insularis: An ancient brachypterous species endemic to São Nicolau, Cape Verde (Orthoptera, Eyprepocnemidinae). Journal of Orthoptera Research 34(2): 159-168. https://doi.org/10.3897/jor.34.144016