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NEWS

Every year, crop diseases cause devastating losses in agricultural production, threatening the food security and livelihoods of millions of farmers. In the heart of the Alentejo, an innovative project is using the power of genomics to help combat these invisible threats. The AlViGen Project, with the participation of InnovPlantProtect researchers Rute Rego and João Bilro, is paving the way for a new era of crop surveillance and protection.

The Problem and the Solution

“Yellow rust on wheat and gafa in olive groves are real scourges for farmers,” explains Rute Rego, a researcher at AlViGen. “These diseases can wipe out entire harvests, leading to severe economic losses and compromising food quality.”

But AlViGen isn't just observing the problem. The team is using cutting-edge technology to detect and identify the strains of fungi that cause these diseases, long before the symptoms become visible.

“We use traps to collect spores that circulate in the air,” continues Rute. “These traps allow us to monitor the presence of fungi in real time, which gives us an important advantage in preventing infections.”

But the magic happens in the laboratory, where the team extracts DNA from the spores and carries out advanced genomic analysis using powerful DNA sequencing technology based on the metabarcoding, The Nanopore portable sequencer is a state-of-the-art technology.

Rute Rego, InnovPlantProtect researcher, analyzes samples of the fungus that causes gafa, as part of the AlViGen project.

Unlocking the genetic code of fungi

To explain more about metabarcoding and its advantage for detecting the presence of species or strains of fungi that cause diseases in crops, the researcher gives the example of a bag full of different types of grain: rice, beans, corn, which is being analyzed by the reader. “Metabarcoding is like putting a unique label (a ‘barcode’) on each type of grain. You can then mix all the grains into a single sample and, by reading the labels, you can identify the amount of each type of grain present.”

In the case of AlViGen, this technique makes it possible to analyze multiple species of fungi at the same time (in multiple samples), each with its own genetic ‘barcode’ and “identify exactly which fungi are present, even in small quantities”, explains the researcher.

And what is the practical impact of this method for monitoring and predicting the disease? The researcher of the AlViGen project is able to identify, with high precision, the moment when the pathogen begins to appear in the field, which makes it possible to alert farmers in real time to the risk of the disease. Producers can adopt preventive measures and apply the necessary products to avoid infection, contributing to a rapid and effective response to disease prevention.

The Timeline of Fungal Evolution

AlViGen's research is not limited to identifying microorganisms that damage crops; it also seeks to understand their evolution and diversity. João Bilro, another researcher on the project, is studying the phylogeny of the fungus Colletotrichum, This is a microorganism responsible for causing gafa or anthracnose, a disease that affects olive groves in Portugal. This disease mainly affects the olives, which compromises the quality of the oil.

“Phylogeny is crucial to understanding how the different strains of Colletotrichum are related and how they have evolved over time,” explains João. “Just as a family tree traces the history of a family, showing how the members are related to each other, phylogenetic trees reveal the evolutionary relationships between the different strains of this fungus. Each branch of the tree represents an evolutionary lineage, and the nodes indicate common ancestors. By comparing the DNA sequences of these strains, we can reconstruct their evolutionary history, identifying which ones are closer or more genetically distant, and thus infer characteristics such as virulence or resistance to fungicides,” he reveals.

This knowledge allows researchers to identify patterns of spread and adaptation of the fungus, which is fundamental to developing more effective strategies to contain and/or reduce the damage this fungus causes to Portuguese olive groves.

“One of the challenges of our research is the great genetic diversity of the Colletotrichum,” admits João. “However, by uncovering their evolutionary secrets, we are paving the way for the development of more precise and targeted detection and control methods.”

Photo from left: João Bilro, InnovPlantProtect bioinformatician, studying the phylogeny of the fungus Colletotrichum as part of the AlViGen project; Photo right: Rute Rego and João Bilro discuss ideas about the AlViGen project

The Future of Agriculture Starts Here

The AlViGen Project aims to have a significant impact on the agricultural landscape, especially in the Alentejo, a region with a strong agricultural tradition. By providing farmers with early detection tools and accurate information on the microorganisms that cause crop diseases, the project aims to help with decision-making, enabling farmers to protect their crops and reduce production losses.

“Our ultimate goal is to empower farmers with the knowledge and tools they need to protect their crops sustainably,” says Rute. “We believe that genomic surveillance is a key tool for the future of crop protection.”

João Bilro agrees and adds: “Continuous research is essential to monitor the evolution of harmful microorganisms and develop new control strategies that are always effective. In the future, we hope to expand the scope of AlViGen to include other microorganisms and crops, and make genomic surveillance an accessible tool for all farmers.”

Science at the Service of Agriculture

The AlViGen Project, supported by the Promove Program of the “la Caixa” Foundation, in partnership with Banco BPI and the Foundation for Science and Technology (FCT), is an inspiring example of how science and technology can be applied to solve real problems and transform agriculture. By unlocking the genetic secrets of crop microorganisms, Rute Rego and João Bilro are paving the way for safer, more sustainable and resilient agriculture.

The fight against crop diseases continues, but with AlViGen, farmers can finally see the enemy before it becomes visible.

On May 13th, the project team AI4Leafhopper presented the new application iCountPests, an innovative solution that uses Artificial Intelligence (AI) to detect and count green leafhoppers in chromotropic traps - quickly, accurately and in real time.

Developed as an intuitive mobile application, the iCountPests was designed to facilitate the monitoring of various agricultural pests. With a simple and accessible interface, it allows users to record the evolution of pests in their crops by submitting photographs of the traps installed in the field.

The application uses advanced computer vision models to automatically detect and count insects, delivering results in around a minute - a much faster and more practical process than traditional manual counting.

In its first version, the app already has a model for detecting the green leafhopper (Jacobiasca lybica), achieving an average accuracy of approximately 90%. Functionalities will soon be added to identify other relevant pests, such as curl moth (Cryptoblabes gnidiella) and grape moth (Lobesia botrana).

In addition to automatic counting, the iCountPests makes it possible to monitor the evolution of pest populations over time, making it easier to identify trends and plan more effective interventions.

This project is the result of a multidisciplinary team combining skills in ecology, entomology, artificial intelligence, computer vision, remote sensing and software development, with the aim of making pest monitoring simpler, more accurate and more accessible.

During the presentation session, it was possible to hear the opinions and suggestions of future users of the application. These contributions are essential if we are to continue to improve the tool and ensure that it responds in a practical way to the real needs of farmers and technicians in the sector. We want to develop solutions that evolve with agriculture!

Innovation is at the heart of everything we do and our motto is clear:
“Innovate together, protect better.”

If you want to know more about iCountPests, contact us by email:
📩 apps@iplantprotect.pt

Image credits: InnovPlantProtect

The executive director of InnovPlantProtect (InPP), António Saraiva, took part in the conference “What are the challenges facing the national agroforestry sector over the next decade?”, which took place at the Escola Superior Agrária de Coimbra (ESAC) of the Polytechnic Institute of Coimbra last Tuesday, April 22.

The event, which brought together more than 150 participants and was organized by 17 national Competence Centres, discussed topics such as innovation, sustainability, soil conservation, monitoring cork oak forests and efficient agricultural management.

António Saraiva was part of the panel of commentators, whose speaker was Pedro Santos, Director General of CONSULAI, and moderated by Maria Custódia Correia, Coordinator of the AKIS Portugal Network. The opening session was attended by the Minister for Agriculture and Fisheries, José Manuel Fernandes, who announced the publication of the Ordinance of April 21 to open the Grant for Initiatives for the creation of Operational Groups (OG).

This initiative provides a total of 11 million euros for new GOs, with a maximum of 350,000 euros per project and eligible funding of 100%.

The GOs are considered crucial structures for transferring knowledge and strengthening the AKIS (Agricultural Knowledge and Innovation System).

Special thanks to the 17 Competence Centers for the opportunity to participate in this productive meeting!

Image credits: Rede Rural Nacional

EVENTS

Farming is considered by many to be a traditional activity, carried out by hand and managed according to the dictates of the Borda d'Água. But is that really the case? Or is it an activity guided by scientific knowledge and which shows leaps in quality, sustainability and productivity when science is applied judiciously in agricultural fields?

This is the theme of the debate, organized by InnovPlantProtect (InPP), which will take place on National Scientific Culture Day, November 24, at 6pm, in the InPP Auditorium, in Elvas, and which brings together a CEO, António Serrano, a scientist, Rosário Félix, a science communicator, Cristina Nobre Soares, and an agricultural producer, Paulo Maria, at the same table to answer the question: “Does agriculture need Scientific Culture?”.

The debate will be moderated by Pedro Fevereiro, executive director of InPP.

Participation is open to all interested parties, subject to prior registration here.

Meet the panel of speakers here.

Celebrate this day with us and come and enrich this debate by asking your questions.

The initiative is part of Science and Technology Week 2022, promoted by Ciência Viva, which runs from November 19 to 27 and celebrates science and technology at national level, with the aim of bringing science closer to society and promoting scientific and technological culture in Portugal.

On November 7, the executive director of InPP, Pedro February, took part in the first session of EDE-X - Entrepreneurial Discovery Spaces, a cycle of participatory events dedicated to technology transfer, R&D and innovation, promoted by National Innovation Agency (ANI), which took place in Évora, at the Alentejo Science and Technology Park.

The main objective of the initiative was the collaborative mapping of technology transfer, R&D and innovation models and processes in the context of smart specialization in Portugal.

This session was an opportunity to involve the entire innovation community in the construction of an operational governance model for the National Strategy for Intelligent Specialization (ENEI 2030), made up of multiregional thematic platforms, and a system for monitoring the dynamics of technology transfer in the areas of intelligent specialization.

ENEI 2030, approved in June, served as the motto for the discussion, in which participants were invited to contribute, through co-creation methodologies, to the definition of the lines of action that give shape to its six major priority areas: Digital Transition; Materials, Systems and Information Technologies; Green Transition; Society, Creativity and Heritage; Health, Biotechnology and Food; Major Natural Assets: Forest, Sea and Space.

(Re)watch the best moments of this session in the video available on ANI's YouTube channel here.

The EDE-X series of events was promoted within the framework of the Support System for Collective Actions - Transfer of Scientific and Technological Knowledge, TECH4INNOV, co-financed by the European Union through the European Regional Development Fund, under the Competitiveness and Internationalization Operational Programme (COMPETE 2020) of Portugal 2020.

Image credits: ANI

AlViGen, coordinated by InnovPlantProtect, was one of the innovative pilot projects recently selected and funded under the 4th edition of the Promove Program.

The project “AlViGen: Creation of a hub in ALentejo for the GENomic VIgilance of diseases in agriculture”, led by InnovPlantProtect (InPP) in partnership with the University of Évora (WOW), is one of the winners of the 4th edition of the Promove Program (in the category of innovative pilot projects), financed by the La Caixa Foundation, BPI and the Foundation for Science and Technology (FCT). This project will enable the InPP to create the capacity for early detection of multiple crop diseases, using molecular methods that make it possible to identify important characteristics of pathogens, such as virulence, susceptible varieties and resistance to phytopharmaceuticals, benefiting producers and government authorities.

AlViGen aims to create the first genomic surveillance center in the Alentejo, applied to important agricultural crop diseases, a unique structure at local and national level, with state-of-the-art equipment. Genomic surveillance, a methodology widely applied to the SARS-CoV2 virus (which causes COVID-19), makes it possible to characterize pathogens in detail down to the strain level, enabling the agricultural sector to obtain better information on crop pests and diseases, and to manage the means of control (e.g. pesticides) based on data, in order to reduce possible economic, social and environmental impacts.

Ricardo Ramiro, The InPP researcher responsible for the project explains that “the AlViGen project is important to us so that we can establish the conditions for applying genomic surveillance. Once these conditions are established, we will apply genomic surveillance to fungi in olive groves and wheat fields. We will identify which species of fungi are circulating in the air and also characterize the strains of two key fungi in these crops: Puccinia striiformis f.sp. tritici (yellow rust on wheat) and Colletotrichum spp. (olive galls). This will allow early and rapid detection of strains of these fungi and some of their characteristics, including virulence and resistance to fungicides or pesticides.”.

The information obtained could be used to prevent sharp losses in the production of these essential crops for the Alentejo region, which is the main producer at national level,” adds Rosário Félix, a UÉ professor also involved in the project.

In addition to bringing benefits to producers in crop management, the service provided by the AlViGen hub will also be of great interest to government entities or non-governmental organizations focused on protecting agricultural crops or biodiversity, since the genomic information produced makes it possible to identify pathways and routes of pest transmission, allowing authorities to implement policies that minimize the risks of transmission.

The AlViGen project is the result of an international collaboration with institutions in Portugal, Spain and the United Kingdom, bringing together research centers, companies, producer associations and public administration institutions. In addition to InPP and UÉ, the project includes the British research center John Innes Center, the National Institute for Agricultural and Veterinary Research (INIAV), Spanish companies De Prado and Roma/Roma-Bio, the Agrupamento de Produtores de Cereais do Sul (CERSUL) and the General Directorate of Food and Veterinary (DGAV).

The fourth edition of the Promove 2022 competition received 29 proposals divided into three categories, with funding of over 3.6 million euros awarded to just 13 pilot projects across the Iberian Peninsula. The Promove Program aims to support innovative initiatives in strategic areas to boost the sustainable development of Portugal's inland and border regions and which can be replicated in other regions with similar characteristics.

Find out more about this competition at la Caixa“ website”.

AlViGen project logo

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