Ä¢¹½ÊÓÆµ

Innovations in entomology

01 October 2026 09:00 - 17:00 Ä¢¹½ÊÓÆµ Free

On Thursday 1 October, Ä¢¹½ÊÓÆµ and Royal Entomological Society will hold a conference on innovations in entomology.

This conference will showcase the innovative science and technology occurring across entomology, as well as the challenge and opportunity for translation in the UK. Talks and panel sessions will include explorations of the major advancements around human disease vectors, agricultural entomology, and biodiversity. This meeting will bring together speakers and delegates from across industry, academia, and the wider entomology community to contribute to these important discussions.

Transforming our future conferences

This conference forms part of Ä¢¹½ÊÓÆµ's industry focused Transforming our future series. These unique meetings showcase cutting-edge science and bring together experts to explore and address key scientific and technical challenges of the coming decade.

Attending the event

In-person attendance is by invitation only. Please email industry@royalsociety.org to enquire.

Watch the livestream

Online attendance is open to all. Please to be notified.


Please note that Transforming our future conferences hosted by Ä¢¹½ÊÓÆµ do not necessarily represent a Royal Society position or signify an endorsement of the speakers or content presented.

Image credit: Nikita Richardson

Organisers

  • Gia Aradottir

    Dr Gia (Gudbjorg Inga) Aradottir FRES

    Gia Aradottir is an entomologist with an interest in the translation of science to innovation and impact. During her academic career at the Icelandic Institute of Natural History, Natural History Museum, Rothamsted Research and NIAB she has tackled diverse challenges, ranging from conducting environmental surveys of fragile ecosystems under consideration for hydroelectric dam development in Iceland, to a global needs assessment on invasive species identification and training bees to detect explosives. She then had a prolonged focus on agricultural entomology, in particular aphid – plant interactions and host-plant resistance.

    Following an MBA at Warwick Business School, Gia pivoted to the strategic side of science and founded Mamore Research and Innovation, a consultancy that supports SMEs, research organisations and government departments with innovation and impact activities.

    Gia is a Royal Society Entrepreneur in Residence at Harper Adams University, Trustee and Treasurer of the Royal Entomological Society and an associate member of the Council for International Congress of Entomology.

  • Image of Janet Hemingway

    Professor Janet Hemingway CBE FMedSci FRES (Hon) FRS

    Janet Hemingway is Professor of Tropical Medicine at the Liverpool School of Tropical Medicine (LSTM) and Founding Director of the Infection Innovation Consortium (iiCON). Responding to the growing challenge of infectious diseases, antimicrobial resistance, and emerging pandemics, iiCON brings together academic, industry, and clinical partners in a £170 million programme to transform the discovery and supply of much-needed anti-infectives and accelerate their journey to market.

    She is a senior technical advisor on Neglected Tropical Diseases for the Bill and Melinda Gates Foundation and has been PI on projects in excess of £370 million including the BMGF funded Innovative Vector Control Consortium, the ERDF funded Formulations programme and the BMGF funded Visceral Leishmaniasis Elimination programme.

    She is a Past President of Ä¢¹½ÊÓÆµ of Tropical Medicine and Hygiene.

    Professor Hemingway was appointed the Director of LSTM in 2001 and stepped down on 1st January 2019. She was awarded a CBE for services to the Control of Tropical Disease Vectors in 2012.

  • Image of Rob Lind

    Dr Rob Lind FRES

    Dr Rob Lind is a Syngenta Fellow in Computer Vision and artificial intelligence. An entomologist by background, he now leads and harmonises the computer vision research network in Syngenta to provide vision solutions for both internal research right through to solutions for farmers and growers. Rob received his fellowship to the Royal Entomological Society recognising his work on the pharmacology of the neonicotinoid insecticides and the development of resistance to this class of control agent early on in his career. He is experienced in many different vision platforms in agriculture including Satellites, drones, phones and more recently robodogs during his 30-year career at Syngenta.

  • Image of Simon Ward

    Simon Ward

    Simon is the Chief Executive Officer of the Royal Entomological Society (RES) having joined in 2021. Before this he held senior and board-level roles in the Field Studies Council. Simon has worked in the life science and environmental sectors for over two decades and has an MRes in Ecology and Environmental Management. He has had extensive experience in the charity sector with particular strengths in strategy development and stakeholder engagement.

    Simon has led the RES through a transformational period which has resulted in multiple successes across publishing, policy and public affairs, outreach and engagement and income diversification and growth. This was recognised at the Memcom Awards in 2025 with the RES winning the Best Professional Body/Learned Society Award.

    Simon is a Fellow of the Royal Geographical Society. He is a trustee for the Council for Learning Outside the Classroom and is both a School Governor and trustee of a Multi Academy Trust. He lives with his family in Surrey and loves getting outdoors in his spare time.

Schedule

09:00-09:10
Sir David Baulcombe

Sir David Baulcombe

Cambridge University

Simon Ward

Simon Ward

The Royal Entomological Society

Chair

Image of Janet Hemingway

Professor Janet Hemingway CBE FMedSci FRES (Hon) FRS

Liverpool School of Tropical Medicine

09:10-09:45 Staying ahead, changing the game: the next era of vector control

Vector control stands at an inflection point. Thirty years on from the first pyrethroid-treated bednets — a technology with deep UK roots that has helped avert well over a billion malaria cases — the field is entering a fundamentally different era. Genetically modified mosquitoes are moving toward field release, dual active ingredient nets and spatial repellents are expanding the insecticidal toolkit, and AI and digital tools are reshaping new active ingredient discovery, vector control deployment and surveillance. At the same time, a warming climate is pushing vectors into regions that have never needed vector control, philanthropic timelines are contracting, and the skilled, multidisciplinary workforce we need must be built now, not later. Drawing on three decades across academia, industry, and global health, I will map the innovations transforming our field, the gaps still to close, and the partnerships needed to turn discovery into durable impact.

Dr Helen Jamet

Dr Helen Jamet

Gates Foundation

Chair

Image of Janet Hemingway

Professor Janet Hemingway CBE FMedSci FRES (Hon) FRS

Liverpool School of Tropical Medicine

09:45-09:50 Introduction to Session 1
Professor Janet Hemingway CBE FMedSci FRES (Hon) FRS

Professor Janet Hemingway CBE FMedSci FRES (Hon) FRS

Liverpool School of Tropical Medicine

09:50-10:05 Scalable genetic control of harmful insects

Harmful insects can be modified to carry traits that, once released to mate with the wild pest population, cause it to collapse. These approaches are species-specific, complementary to conventional control, and could be transformative towards the elimination of vector-borne disease and invasive agricultural pests. Gene drives and self-limiting alternatives have both been demonstrated in the laboratory, yet the transition to the field has proven challenging: the colonies that carry these traits demand maintenance that is laborious, costly and prone to error, and the route through regulation is not yet clear. At Biocentis our aim is to make genetic control inherently scalable, low-cost, and infrastructure-light, so that it can be produced in the settings most in need of effective control.

Dr Andrew Hammond

Dr Andrew Hammond

Biocentis

10:05-10:20 Building on innovations in malaria vector control to enhance progress on Neglected Tropical Diseases

The World Health Organization (WHO) estimates that 2.3 billion malaria cases and 14 million deaths have been averted since 2000, largely through vector control. Although current tools remain insufficient for elimination, this achievement demonstrates the impact of well-coordinated, adequately funded, evidence-based interventions at scale. In contrast, progress against vector-borne neglected tropical diseases (NTDs) has lagged and, in some cases, reversed. I will examine barriers limiting the impact of vector control for NTDs, including stagnation in research and development, gaps in the evidence base, insufficient capacity strengthening, and the absence of guidelines. Drawing on recent work, I will highlight opportunities to adapt innovations developed for malaria and other mosquito vectors to strengthen NTD vector surveillance and integrated vector management. Finally, I will discuss how WHO's new integrated vector control guideline initiative could accelerate progress beyond malaria. Greater collaboration between malaria and NTD research can maximize impact and expand access to innovative vector control.

Professor Heather Ferguson

Professor Heather Ferguson

University of Glasgow

10:20-10:35 A pragmatic model for evaluating new malaria control interventions at scale: lessons from embedding cluster-randomised trials of long-lasting insecticidal nets within Uganda's national mass distribution campaigns (LLINEUP trials)

Cluster-randomised trials are essential for evaluating the community-level impact of vector control interventions, but they are typically expensive and resource-intensive to conduct, particularly at the scale needed to inform policy. Working closely with the Uganda Ministry of Health, we embedded a series of large cluster-randomised trials within successive national mass distribution campaigns for insecticide-treated nets, enabling rigorous evaluation of next-generation nets combining pyrethroid insecticides with piperonyl butoxide (PBO), pyriproxyfen, or chlorfenapyr at scale. Here, we describe the approach underpinning this model, including aligning trial randomisation with the logistics of routine universal coverage campaigns, and strengthening existing health facility-based malaria surveillance to serve as a platform for measuring malaria incidence outcomes. This pragmatic design offers a scalable, cost-effective framework for generating the epidemiological evidence needed to evaluate future malaria control interventions under real-world conditions.

Professor Sarah Staedke

Professor Sarah Staedke

Liverpool School of Tropical Medicine

10:35-10:50 Q&A

Chair

Image of Rob Lind

Dr Rob Lind FRES

Syngenta

11:20-11:25 Introduction to Session 2
Dr Rob Lind FRES

Dr Rob Lind FRES

Syngenta

11:25-11:40 New tools for Integrated Pest Management on the horizon

One of humanity’s greatest challenges this century will be sustaining a growing global population’s food demand, under climate change, declining pesticide availability and limited land area for crop production.

This talk will cover innovative solutions from Integrated Pest Management (IPM), including the current development rapid and user-friendly pest and disease monitoring at scale, using semiochemicals to indicate plant stress from pathogen or pest attack. Mechanical application technology, enabling affordable treatment of macro biological control agents, such as arthropod predators, at field scale. A novel class of biopesticides, promising species-specific control, with reduced environmental impact on non-target organisms.

Jasper Hubert FRES

Jasper Hubert FRES

JasperIPMConsultancy

11:40-11:55 Discovering novel insecticides from natures microbes 

Crop pests can result in up to 40% of crop losses, yet the tools available to growers are becoming increasingly constrained. Regulatory pressure is removing established chemistries, resistance continues to erode the efficacy of existing insecticides, and many current biological products lack the potency, consistency or field performance required to replace them at scale. BugBiome develops microbial insecticides by searching crop-associated microbes for new insect-active natural chemistry. Our discovery platform combines ecological bioprospecting, metabolic phenotyping and insect-behavioural screening, allowing us to identify activity that conventional screening approaches miss. This talk will explore how integrating microbiology, insect behaviour and data science can find and develop new insecticides to protect crops from pests.

Dr Alicia Showering

Dr Alicia Showering

BugBiome

11:55-12:10 Susceptibility factors for resistance to sap-feeding insects and the pathogens they transmit

Phloem-feeding insects transmit many pathogens that constrain crop production. Phytoplasmas are phloem-limited bacteria transmitted by leafhoppers and related hemipterans, and they reprogram plant development to promote vector colonisation and transmission. We use these interactions to identify plant proteins exploited by pathogens and insects. The phytoplasma effector SAP05 induces ubiquitin-independent degradation of SPL and GATA transcription factors through the proteasomal subunit RPN10, causing profound developmental changes, including inhibition of flowering and fruit and seed production. Two amino acid substitutions in RPN10 confer resistance while preserving native function. We are extending this strategy to sap-feeding insects, whose effectors manipulate plant immunity. Combining AI-guided protein engineering, CRISPR editing and breeding, we aim to redesign host targets so they retain native functions but escape effector manipulation. Moreover, plant immune receptors can be engineered to recognise these effectors and activate defence. Together, these approaches could reduce both insect damage and pathogen spread.

Professor Saskia Hogenhout FRS

Professor Saskia Hogenhout FRS

John Innes Centre

12:10-12:25 Q&A

Chair

Image of Simon Ward

Simon Ward

The Royal Entomological Society

13:30-13:35 Introduction to Session 3
Simon Ward

Simon Ward

The Royal Entomological Society

13:35-13:50 Using AI to shine a light on nocturnal insects?

Insects are hyper-diverse, hugely abundant and play a critical role in all terrestrial ecosystems. There is growing evidence that insects are declining in most places they’ve been monitored, raising concern from researchers, policymakers and the wider public. Rapid development of AI methods, often combined with novel sensors, is offering a step-change towards more standardised and scalable monitoring of insects. I give examples of how AI approaches are performing at identification of photos collected through smartphone apps, in processing samples from simple traps for engaging farmers and as a key component of an EU Pollinator Monitoring Scheme, and the potential of automated sensors for monitoring in remote locations and biodiversity hotspots. I use nocturnal insects as a focal insect group given their ecological and taxonomic diversity and summarise the key remaining challenges for realising the potential of AI for more effective monitoring of this important biodiversity indicator.

Professor David Roy

Professor David Roy

UK Centre for Ecology & Hydrology

13:50-14:05 Increasing the resolution and precision of insect science: from ant genomes to ecosystem resilience

Insects underpin every terrestrial ecosystem, yet entomology has long worked at low resolution. Biomedicine and engineering show what happens when automation and AI make measurement cheap, continuous, and precise. My work repeatedly imported those innovations. Sequencing the genome of the invasive red fire ant Solenopsis invicta revealed a "social chromosome" controlling colony organisation — and forced us to build SequenceServer, now used in thousands of labs. Molecular diagnostics capture 30,000 datapoints from each individual bee to almost instantly quantify pollinator health. Sensibee's autonomous AI cameras are a step towards weather stations for insect biodiversity. Commercialising these tools taught us what grants could not: cost, reliability, and user needs decide what leaves the lab. At ARIA, I fund teams creating engineering-inspired precision measurement and intervention tools. The goal is translation: technologies that reach the field as products and ventures — helping wild species overcome the challenges they face and improving our relationship with nature.

Professor Yannick Wurm

Professor Yannick Wurm

Pollinatework, Queen Mary University of London, ARIA

14:05-14:20 Beyond monitoring: molecular insights into insect ecology and evolution

Innovations in sequencing technologies and bioinformatic tools are providing new insights into fundamental questions in insect science, from behaviour and foraging ecology to life-history evolution. By revealing the mechanisms that generate and maintain variation within and among species, these approaches are transforming our understanding of the processes that underpin insect biodiversity. My research uses molecular methods to uncover previously inaccessible aspects of insect ecology and evolution. Population genomics reveals how insect populations are structured across scales, from colonies to landscapes. Genome and transcriptome sequencing are exposing hidden diversity, identifying evolutionary changes associated with key biological traits, and revealing how shared genomes generate alternative phenotypes in response to environmental cues. Metabarcoding and environmental DNA approaches are uncovering hidden dimensions of insect diets, interactions and foraging behaviour. As sequencing becomes increasingly affordable and accessible, the challenge is extracting biological insight from complex datasets. We are addressing this through open-source bioinformatic pipelines that make advanced omics analyses accessible, reproducible and scalable for insect scientists.

Professor Seirian Sumner FRES

Professor Seirian Sumner FRES

University College London

14:20-14:35 Q&A

Chair

Gia Aradottir

Dr Gia (Gudbjorg Inga) Aradottir FRES

Mamore Research and Innovation Limited

15:05-16:15
Dr Roma Gwynn

Dr Roma Gwynn

Biorationale Limited

Professor James Logan

Professor James Logan

Digital Odour Technologies Limited

Amy Weatherup

Amy Weatherup

Cambridge Angels

Jon Williams

Jon Williams

BASF