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Butterfly and moth genomes unchanged for 250 million years
New understanding about the evolution of butterflies and moths is expected to inform future conservation efforts.
Their chromosomes remain the same despite 160,000 diverse species.

An analysis of butterfly and moth genomes has revealed that their chromosomes remain largely unchanged since their last common ancestor, over 250 million years ago.

The findings highlight key insights into their biology, evolution and diversification, and could inform future conservation efforts.

Researchers from the Wellcome Sanger Institute, in collaboration with the University of Edinburgh, analysed over 200 high-quality chromosome-level genomes to understand their evolutionary history.

They identified a genetic stability across the samples, despite the diversity in wing patterns, size and caterpillar form across over 160,000 species globally.

They also discovered rare groups of butterfly and moth species which broke from these genetic norms, and underwent genetic rearrangements. This included chromosome fusions, where two chromosomes merge, and chromosome fissions, where a chromosome splits.

These findings highlight the constraints which govern the genome evolution of these ecologically vital insects. It also offers insights into the factors which enable some species to defy these rules of evolution.

New understanding about the evolution of butterflies and moths is expected to better inform future conservation efforts, supporting the creation of targeted strategies, monitoring of ecosystem health, adapting to climate change, and incorporating of genetic information into other conservation initiatives.

The work forms part of the Darwin Tree of Life Project, which aims to sequence all 70,000 species in Great Britain and Ireland.

It also contributes to ongoing studies, as researchers aim to identify the processes which drive the evolution of chromosomes in these diverse species.

Charlotte Wright, the first author of the study at the Wellcome Sanger Institute, said: “It is striking that despite species diversifying extensively, their chromosomes have remained remarkably intact. This challenges the idea that stable chromosomes may limit species diversification.

“Indeed, this feature might be a base for building diversity. We hope to find clues in rare groups that have evaded these rules.”

The full study can be found in the journal Nature Ecology and Evolution.

Image © Shutterstock

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Webinar to explore AMR in vet dentistry

News Story 1
 The WSAVA has invited veterinary professionals to a webinar on responsible antibiotic usage in dentistry.

On 19 November 2025, at 1am, Dr J Scott Weese and Dr Brooke Niemiec will share the latest advice for antimicrobial use. They will present research on oral bacterology, and explain how attendees can choose appropriate antibiotics.

The session will cover pre-, intra- and post-operative guidelines, with recommendations for various pathologies.

The webinar is designed to support veterinary professionals to make informed decisions and tackle antimicrobial resistance.

Attendees can register here

Click here for more...
News Shorts
Bluetongue reaches Wales for first time in 2025

The Animal and Plant Health Agency (APHA) has revealed that bluetongue has been confirmed in Wales for the first time in 2025.

In their latest statistics, APHA records a total of 109 cases of BTV-3 or BTV-8 in Great Britain in the 2025-2026 vector season.

The total number of BTV-3 cases in Great Britain this season is 107. This includes 103 cases within the England restricted zone and four cases in Wales.

There has also been two cases of BTV-8, which were both in Cornwall.

As a result of the cases in Wales, a Temporary Control Zone (TCZ) is enforced in Monmouthshire. Animals can move freely under general license within the England Restricted Zone, however animals with suspected bluetongue must stay on their holding.

All premises testing positive for blue tongue can be viewed on this map.