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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

Discover the latest advances in project WhYRust, regarding fungal epidemiology and population structure studies, data collection and model validation of a warning system, and identification of wheat genes involved in YR resistance.

Supporting the Portuguese wheat breeding program in the climate change scenario is the purpose of the WhYRust project. Yellow rust (YR), caused by Puccinia striiformis f. sp. tritici (Pst), is one of the most destructive diseases for wheat (Triticum ssp.), with global annual losses of US$ 979 million. Planting resistant cultivars is the most effective, economic, and environmental-friendly way to control diseases. Among other things, WhYRust aims to identify the wheat's genome areas associated with resistance or susceptibility to YR, a major threat to this cereal.

InnovPlantProtect, namely through its Department of Protection of Specific Crops - Department 2, leads this project, with the participation of INIAV Elvas and ITQB NOVA, and the collaboration of ANPOC and CERSUL. We are (1) studying the fungus epidemiology in Portugal, evaluating the fungal pathogenesis mechanisms by (2) sequencing the fungus genome, (3) investigating its transcriptome during plant interaction and (4) proteome of secreted proteins under conditions of low versus high temperature, (5) performing genome-wide association studies to identify resistance genes in the plant, and (6) developing genomic prediction models through machine learning in order to support precision breeding.

As far as fungal epidemiology and population structure studies are concerned, the quarantine enforced by COVID-19 in the first trimester of 2020 imposed some difficulties, but some wheat infected leaves were sampled in the 2019/2020 season. New sampling will be performed for the 2020/2021 season. Collected spores are being used to isolate single pustules, which will be further used to identify the specific fungus races.

Germination of YR fungus spores (called urediniospores) in vitro conditions (by Miguel Teixeira and Cláudia Rato)
Sampling app, by iLaria Marengo

InPP's Department 2 is also collaborating with Department 4 (Monitoring and Diagnosis). Portuguese agronomists are going to be trained on data collection and model validation of a yellow rust warning system. The goal is to use Open Data Kit (ODK), an open source software for (android) mobile devices that uses a form designed by InPP (Dep. 4) to collect data in the field and offline. The submission of the data to the InPP server is made once back to the office, when Internet connectivity is available. The app not only speeds up the data collection but also improves its management and accessibility.

Regarding the identification of wheat genes involved in YR resistance, the first field trial for the evaluation of disease symptoms in a panel of 250 wheat accessions of INIAV's breeding pool has been sown in the INIAV Elvas field. The crop of common or bread wheat (Triticum aestivum) is checked by the team every week, to remove weeds and check accessions status.

Disease evaluation will begin as soon as first symptoms develop. Image analysis of infected leaves will be performed to identify the percentage of pustules per leaf. This experiment will be performed in three consecutive years, and the data will be used to access the genetic and phenotypic variability within this panel and for future genome-wide association studies.

Field work by researchers Miguel Teixeira, Asmae Jlilat, Ana Miguel Reis, Diana Acácio, Flavio Storino, Diana Sousa and Hadi Sheikhnejad

For 2021, we also expect the most prevalent YR fungus race will have its genome sequenced and potential virulent factors will be identified by in silico analysis.

© 2021 InnovPlantProtect, All rights reserved

Accelerating technological innovation and creating new sustainable solutions for the protection of agricultural crops against pests, diseases and weeds, while protecting ecosystems, is the aim of the new collaboration between Syngenta Crop Protection, an InnovPlantProtect (InPP) member, and Insilico Medicine, which specializes in artificial intelligence (AI) and deep learning.

The partnership “will further transform agriculture by providing farmers around the world with the tools they need to produce healthy, nutritious, affordable and sustainably grown food in the most efficient way, while minimizing environmental impact,” Camilla Corsi said in a statement, head of Crop Protection Research at Syngenta.

Insilico Medicine's solid and proven experience in the use of AI and deep learning to develop, synthesize and validate new active substances promises to “transform the development of new solutions that help keep plants safe, from planting to harvest,” Syngenta points out. The safety of agricultural products and the protection of human health, in the short and long term, are also top priorities.

Find out more at https://bit.ly/3rjheJH

Twelve founding members, the InnovPlantProtect team and all those who contributed to giving birth to this young CoLab are to be congratulated today: two years ago, the formal constitution of InPP was registered with a notary in Elvas.

On January 24, 2019, in pre-pandemic times, the public deed was signed to establish the InnovPlantProtect - Associação collaborative laboratory in Elvas. Today, a highly qualified team is now complete, work is underway and projects are in progress, marking the second anniversary of the formal establishment of the collaborative laboratory, which has twelve founding partners.

Despite the restrictions imposed on all of us by the Covid-19 crisis, 2021 promises to be auspicious. “The conditions are beginning to be created for the careful and dedicated management to achieve the desired results,” says the mayor of Elvas (CME), an InnovPlantProtect (InPP) member. “Now it's ‘hands on’,” says Nuno Mocinha.

Admitting that “it's been a Herculean task to set up the CoLab”, the chairman of the board of Casa do Arroz has no doubt that “it's been worth it” and that InPP “will be on the map”. “It has everything it takes to succeed,” assures Pedro Monteiro. “For us, the CoLab is our insurance for the future. It's a laboratory that represents a great opportunity for the defense of rice cultivation in Portugal.”

The great satisfaction with the quality of the technical staff is shared by CME, CEBAL and Fertiprado - and by InPP's executive director and “man at the helm”, Pedro Fevereiro. “The high level of professionalism, the dedication of all the professionals who make it up and its great organization put this institution on the map of major international organizations in the field of plant protection,” says Liliana Marum, a researcher at CEBAL. “CEBAL, as a founding partner, congratulates InnovPlantProtect on its excellent work and its mission of great importance for the sustainability of national agriculture.”.

“Although it's still in the installation phase, the excellent team already set up by Professor Pedro Fevereiro gives us high hopes for the success of the important projects already underway in the InnovPlantProtect collaborative laboratory,” says Ana Barradas, Fertiprado's R&D director. The company is already working with InPP on the Pythium project, the aim of which is to “identify the pathological organism that causes root rot and find a solution to eliminate it”.

“The CoLab is our insurance for the future.”
Pedro Monteiro, Casa do Arroz

“Fertiprado is very proud to be a founding member of the InnovPlantProtect CoLab and we are very pleased to be celebrating its second anniversary,” concludes Ana Barradas. “After two years, the CoLab has a team of 38 employees, the vast majority of whom are highly educated, highly motivated and competent. It's a team that is expected to make a difference on the agricultural innovation scene and to be able to respond to the challenge of developing biopesticides and services that reduce the impact of pests and diseases on Mediterranean crops,” stresses Pedro Fevereiro.

“Our resilience lies and will lie in the fact that we have created a friendly and interactive working environment, which we want to maintain and expand,” argues InPP's CEO, who bet on this project “because it is a way of participating in the transfer of academic knowledge to real life, on the one hand, and of participating in the construction of solutions for a more productive and sustainable agriculture, on the other.”.

For Pedro Fevereiro, the second anniversary of the establishment of CoLab means above all that the institution has survived the initial installation phase, “which is not over yet, even despite the pandemic situation we are living in”. “It means that what we invested in is still in a position to progress and develop. The preliminary process of setting up was the effort of a team that knew how to put the common interest ahead of individual agendas and that knew how to find a way to make this project viable,” stresses the executive director.

“CoLab has a team of 38 highly motivated and competent employees.”
Pedro Fevereiro, CEO of InPP

In the current context, the biggest challenge “is to keep the team active and working, while we wait for the possibility of having everyone working in the same place and in suitable conditions to develop the projects we already have in hand” - a goal that Pedro Fevereiro hopes to achieve within six months. “Another challenge is to create a modern institution of reference in a territory far from the major centers.” For Nuno Mocinha, InnovPlantProtect represents, in fact, “a qualitative leap in the affirmation of Elvas as a research hub in the national context and a special partnership between academia, companies and local government”.

The 38 members of the InnovPlantProtect team in January 2021.

The main objective now is to “develop national and international projects in the field of crop protection that have the capacity to present solutions as soon as possible, while guaranteeing the CoLab's financial balance,” says Pedro Fevereiro. New bio-based solutions for protecting plants against pests and diseases are “a market that is expected to double in the next five years at international level and which will certainly expand enormously in the European Union in the light of the European Green Deal and the ‘Farm to Fork’ and ‘Biodiversity’ Strategies”, recalls Felisbela Torres de Campos, responsible for Regulatory and Business Sustainability at Syngenta Portugal, an InPP member.

“This collaborative laboratory is on the right track: towards the sustainability of agriculture,” says Felisbela Campos, who considers CoLab a strategic partnership for Syngenta and also because of the company's strong commitment to R&D in biological solutions for agriculture”. In addition, “InnovPlantProtect positions Portugal as a creator of technologies to solve specific phytosanitary problems in Portuguese agriculture, which will certainly help to reduce the country's dependence on foreign technologies and ensure that the solutions found are more effective from the outset”.

“We welcome this partnership and its potential to accelerate innovation for farmers and nature”.
Felisbela Torres de Campos, Syngenta Portugal

“CEBAL, as a founding partner, congratulates InnovPlantProtect for its excellent work and its mission of great importance for the sustainability of national agriculture,” agrees Liliana Marum, a researcher at the biotechnology center based in Beja.

InPP's founding partners are the National Institute for Agricultural and Veterinary Research, Elvas City Council, the New University of Lisbon, Syngenta Crop Protection, the Alentejo Agricultural and Agri-Food Biotechnology Center, Casa do Arroz, Bayer Crop Science, the University of Évora, Fertiprado, the National Federation of Fruit and Vegetable Producers' Organizations, the National Association of Protein, Oilseed and Cereal Producers, and the National Association of Maize and Sorghum Producers.

By Rita Hasse Ferreira
January 24, 202
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