New ‘Ecclesiastical’ Moth named after Pope Leo XIV

Described as Pyralis papaleonei, the finding serves as a powerful call for biodiversity conservation, inspired by a biblical reference.

Distinguished by its striking colors and a name that carries the weight of a high ecclesiastical office, a new species of moth has been discovered in the rugged terrain of Greece. When researchers from the Tyrolean State Museum, the Finnish Museum of Natural History and the Bavarian State Collection of Zoology identified this unique insect in the White Mountains of Crete, they chose a name that reflects both its noble appearance and a message of environmental hope: Pyralis papaleonei – derived from “Papa Leone” (Pope Leo).

The discovery, published in the open-access journal Nota Lepidopterologica on 28 April 2026, highlights that even among such conspicuous European moths, overlooked species remain to be discovered. The new species is currently only known from the White Mountains (Lefka Ori) in the western part of Crete, where it appears to be an endemic treasure of the island.

Type-locality of Pyralis papaleonei sp. nov. (Greece, Crete, Omalos plateau). Image credit: Peter Huemer.

Striking purple forewings

The so-called Pope Leo Moth has a wingspan of around two centimeters, placing it among the medium-sized representatives of its group. Its most distinctive features are its purple forewings with an orange-golden patch and prominent white bands. The moths were recorded at artificial light sources and appear to be mainly active in June. So far, little is known about the biology and lifestyle of the new species. It was distinguished from related species based on classical morphological characteristics – such as wing pattern, coloration, and genital morphology – as well as genetic fingerprinting. Molecular analyses revealed a divergence of around six percent from its closest relative, clearly indicating that it represents a distinct species.

Pyralis papaleonei sp. nov., holotype. Image credit: Peter Huemer.

A tradition of remarkable species names

Butterflies and moths are often named after physical characteristics, geographic origins, or in honor of distinguished individuals. Within the genus Pyralis, however, a particular tradition can be observed: as early as 1775, Austrian naturalists Michael Denis and Ignaz Schiffermüller described the first species of the group as Pyralis regalis (“royal”), inspired by its splendid coloration. This was followed by sonorous names such as Pyralis princeps and Pyralis cardinalis, also referring to the remarkable beauty of these moths.

All these species belong to the diverse superfamily Pyraloidea, which comprises around 16,000 described species worldwide and represents one of the largest groups among micro-moths.

Specimen of Pyralis regalis. Image credit: Peter Huemer.

Taxonomy as the “first profession” of humankind

The naming of living organisms also has a cultural-historical dimension: in the Old Testament (Genesis 2), Adam is firstly tasked with naming all animals. In this sense, taxonomy – the science of classifying, naming, and organising organisms – can be regarded as one of humanity’s earliest endeavors.

For study leader Peter Huemer of the Tyrolean State Museum Ferdinandeum, naming a species is therefore more than a formal scientific act: it also serves as a symbolic appeal to the head of the Catholic Church, Pope Leo XIV, to highlight humanity’s central responsibility in safeguarding creation. This is particularly fitting as butterflies and moths are regarded in Christianity as symbols of resurrection, transformation (metamorphosis), and the immortal soul.

Specimens of Pyralis papaleonei. Image credit: Peter Huemer.

Only a fraction of global biodiversity documented

Peter Huemer, former head of the Natural Science Collections at the Tyrolean State Museums and now a volunteer researcher, explains:

“We are facing a global biodiversity crisis, yet only a fraction of the world’s species has been scientifically documented. Effective conservation of biodiversity requires that species are first recognised, described, and named.”

Around 700 new moth species are described each year, primarily in the tropics. However, fundamental research in Europe is far from complete: in the Alps alone, approximately 200 previously unknown species have been identified in recent decades.

With their internationally significant scientific collections, the Tyrolean State Museums make an important contribution to this work. The discovery of the Pope Leo Moth, Pyralis papaleonei, highlights how much remains to be discovered even in well-studied regions of Europe—and underscores the urgent need to protect sensitive habitats.

Original source:

Huemer P, Kaila L, Segerer AH (2026) Pyralis papaleonei sp. nov. from Crete (Greece) (Lepidoptera, Pyralidae). Nota Lepidopterologica 49: 63-74. https://doi.org/10.3897/nl.49.185483

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Researchers find post-fire logging harms Spotted owls

Wildlife ecologists studying the rare Spotted owl in the forests of California have discovered that large, intense wildfires are not responsible for the breeding territory extinction that has been reported recently.

Instead, the researchers found that post-fire logging operations, which are common on both private and national forest lands, were in fact causing the declines in the territory occupancy of this imperiled wildlife species. In areas, where no logging took place following large forest fires, the scientists failed to detect any significant effect in the spotted owls’ territory occupancy or extinction rate.

“This is good news for declining California spotted owls because this is something that we can control–we can make policy decisions to stop post-fire logging operations in spotted owl habitat,” says Dr. Chad Hanson, a research ecologist with the John Muir Project of the Earth Island Institute and the study’s lead author. His team’s article is published in the open access scientific journal Nature Conservation.

The study sheds light on recent large fires, such as the 99,000-acre King fire from 2014 which affected the Eldorado National Forest in the Sierra Nevada Mountains. As a result, spotted owl occupancy declined in the northern portion of the King fire area. However, the present study finds post-fire logging is to blame.

Post-fire logging removes important spotted owl foraging areas in “snag forest habitats” created by patches of intense fire, explain the scientists. These habitats are rich in small mammal species preyed on by the owls, whereas post-fire logging destroys these habitats, causing higher territory extinction rates.

The study also reports that many of the spotted owl territories in the King fire, which were previously described as lost due to the fire, had in fact already been unoccupied for years before it occurred. Other factors acting before the fire turn out to have been responsible for the occupancy changes at these sites.

The scientists’ findings also help to explain why previous research has found very high spotted owl occupancy in the 257,000-acre Rim fire in the Sierra Nevada prior to post-fire logging, which was then followed by a decline in owl territory occupancy after such logging occurred.

“These results were not surprising considering that spotted owls evolved with forest fires, but logging is a new disturbance to which they are not adapted,” says co-author Monica Bond, a wildlife ecologist with the Wild Nature Institute.

Wildlife researcher and co-author Derek Lee, also affiliated with the Wild Nature Institute, adds, “It is time to stop thinking logging will help the forest; we need to take a much more hands-off approach to forest management, so natural processes can be re-established.”

The study’s results coincide with the strong consensus among hundreds of U.S. scientists opposing post-fire logging operations due to a wide range of ecological harms. Pro-logging members of the U.S. Congress have recently pointed to large forest fires as a justification for proposed logging bills that would override most environmental laws and dramatically increase logging, including post-fire logging, on U.S. National Forests and other public lands.

The results of this study indicate that such legislative proposals would contradict scientific evidence, and harm spotted owls populations. Other studies have also indicated that increased logging would substantially reduce forest carbon storage, and increase greenhouse gas emissions, exacerbating climate change.

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Original source:

Hanson CT, Bond ML, Lee DE (2018) Effects of post-fire logging on California spotted owl occupancy. Nature Conservation 24: 93-105. https://doi.org/10.3897/natureconservation.24.20538