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Beyond strategy: The secret ingredient of innovation

On the path to success, organizations define strategies, plan each step, and invest in crucial resources such as the sale of services and products, project applications, the development of solid business plans, and the protection of intellectual property. However, there is an often-neglected element that is fundamental to the flourishing of innovation: serendipity. But what exactly is this mysterious force, and why is it so vital to advancing agriculture and so many other areas?

When chance opens doors: The power of unplanned discovery

Serendipity lies in the art of finding something valuable when looking for something else. It's the unintentional discoveries that arise from unexpected situations. Throughout history, some of the most transformative innovations have not been the result of a rigorous plan, but rather of a fortuitous encounter with the unknown. Although deliberate research and methodical experimentation are pillars of scientific and technological progress, openness to the unexpected proves to be a powerful catalyst. When researchers cultivate this openness, they often come across revelations that have the potential to revolutionize entire industries, transform technologies, and expand our understanding of the world around us.

A close look at the “error”: The genesis of an innovative biofungicide

Today, we unveil the surprising and inspiring story of Maria Miguel, a talented researcher from the InPP's New Biopesticides Department, whose insight transformed a fortuitous event into a discovery of inestimable value: a broad-spectrum biofungicide capable of combating Botrytis cinerea, the relentless fungus responsible for the devastating gray mold disease in tomato plants. This pathology represents one of the greatest phytosanitary challenges in tomato cultivation, especially when grown in greenhouses, causing significant losses to producers if not controlled in a timely manner.

From discard to discovery: An investigator's insight

The journey of this discovery began in a scenario familiar to any researcher: the observation of Petri dishes, used to grow cell or microorganism cultures. In Maria Miguel's Petri dishes, colonies of the fungus Botrytis cinerea were growing, intentionally introduced there for study. However, something else caught her attention: one of the plates was contaminated by mold, and curiously, a clear zone surrounded this intruder. Instead of discarding the plate and ignoring it as mere contamination, Maria Miguel decided to investigate the reason behind that clear area. Her curiosity revealed that the mold had a surprising ability to inhibit the growth of Botrytis cinerea in its vicinity.

“Sometimes we look at something and think it's a mistake. The truth is that within a failure, there can be something good,” shares the researcher. The emotion and enthusiasm of a researcher when realizing that what at first seemed like an obstacle, a negative result, can actually be an opportunity, is contagious. For Maria Miguel, this “error” transformed into a serendipitous discovery with enormous potential.

Maria Miguel, a researcher at the InPP's Department of New Biopesticides, transformed an unexpected event into a groundbreaking discovery: a broad-spectrum biofungicide to combat gray mold in tomato plants.

Beyond chance: The active ingredients of scientific discovery

As the story of this biofungicide demonstrates, the world of science is full of examples of discoveries that arose from the unexpected. One of the most famous cases is the discovery of penicillin by Alexander Fleming in 1928. While observing Petri dishes, Fleming noticed that a mold was producing a substance that eliminated Staphylococcus aureus bacteria around it. He identified the mold as Penicillium notatum and named his revolutionary antibiotic penicillin. Penicillin ended up becoming an extremely important drug for fighting infections.

However, chance is not the only protagonist of these important revelations. “Sometimes we have to follow our intuition and be able to prove that we are right or wrong,” explains Maria Miguel. In addition to intuition, a generous dose of curiosity, an open mind to accept unexpected results, a solid scientific knowledge, and the ability to see and advance to further investigations on surprising results play a crucial role in the alchemy of discovery.

The ecosystem of discovery: Fostering an environment conducive to innovation

There are other ingredients that contribute to the recipe for scientific success:

  • Creativity: The ability to generate new perspectives, concepts, questions, or solutions, and the willingness to explore existing ideas under a new light.
  • Flexibility: The courage to venture into unknown territories without fear of failure, thus increasing the odds of serendipitous encounters.

But no discovery flourishes in isolation. At InPP, the strong team spirit and culture of collaboration transcend departmental boundaries. Maria Miguel's discovery is a testament to this synergy, as she herself acknowledges: “My colleagues opened doors so that I could do my research.”

To foster innovation, organizations need to cultivate an environment that stimulates open discussions and connects people from diverse areas of knowledge and life experiences, without judgment; that encourages curiosity and receptiveness to new experiences; and that promotes a relentless pursuit of improving scientific knowledge, the fertile ground where serendipity can germinate.

Sowing the future: The impact of a discovery and the path of research

Although Maria Miguel is about to embark on a new journey, driven by a prestigious Marie Skłodowska-Curie doctoral fellowship - a program that supports the career of researchers and promotes excellence and innovation in research - her legacy at InPP is already flourishing. Her innovative discovery is opening new and promising doors for future research in the area of crop protection, demonstrating how, at times, it is in the unexpected that the potential to transform our world lies.

Beyond strategy: The secret ingredient of innovation

On the road to success, organizations define strategies, plan every step and invest in crucial resources such as selling services and products, applying for projects, drawing up solid business plans and protecting intellectual property. However, there is an element that is often overlooked, but which is fundamental to the flourishing of innovation: serendipity. But what exactly is this mysterious force and why is it so vital to the advancement of agriculture and so many other areas?

When chance opens doors: The power of unplanned discovery

Serendipity is the art of finding something valuable when you're looking for something else. It's the unintentional discoveries that arise from unexpected situations. Throughout history, some of the most transformative innovations have not been the result of a rigorous plan, but rather a chance encounter with the unknown. While deliberate research and methodical experimentation are pillars of scientific and technological progress, openness to the unexpected proves to be a powerful catalyst. When researchers cultivate this openness, they often stumble upon revelations that have the potential to revolutionize entire industries, transform technologies and expand our understanding of the world around us.

A close look at “error”: The genesis of an innovative biofungicide

Today, we unveil the surprising and inspiring story of Maria Miguel, a talented researcher from InPP's New Biopesticides Department, whose acumen turned a chance event into a priceless discovery: a broad-spectrum biofungicide capable of combating the Botrytis cinerea, the relentless fungus responsible for the devastating gray rot disease in tomato plants. This pathology represents one of the biggest phytosanitary challenges in tomato cultivation, especially when grown in greenhouses, causing significant losses to producers if it is not controlled in good time.

From discard to discovery: The insight of a researcher

The journey of this discovery began in a setting familiar to any researcher: the observation of Petri dishes, used to grow cultures of cells or microorganisms. On Maria Miguel's plates, colonies of the fungus Botrytis cinerea were growing, intentionally introduced there for study. However, something else caught her eye: one of the plates was contaminated by mold, and curiously, a clear area surrounded this intruder. Instead of discarding the plate and dismissing it as mere contamination, Maria Miguel decided to investigate the reason behind the clear area. Her curiosity revealed that the mold had a surprising ability to prevent the growth of Botrytis cinerea in its vicinity.

“Sometimes we look at something and think it's a mistake. The truth is that in a failure there can be something good,” the researcher shares. The excitement and enthusiasm of a researcher realizing that what at first glance seemed like an obstacle, a negative result, could actually be an opportunity, is contagious. For Maria Miguel, this “mistake” turned into a serendipitous discovery with enormous potential.

Maria Miguel, a researcher at InPP's New Biopesticides Department, who turned an unexpected event into a discovery that changed the course of her work: a broad-spectrum biofungicide to combat gray rot in tomato plants.

Beyond chance: The active ingredients of scientific discovery

As the history of this biofungicide shows, the world of science is full of examples of discoveries that came out of the blue. One of the most famous cases is Alexander Fleming's discovery of penicillin in 1928. While observing Petri dishes, Fleming noticed that a mold was producing a substance that eliminated bacteria Staphylococcus aureus around him. He identified the mold as Penicillium notatum and named his revolutionary antibiotic penicillin. Penicillin ended up becoming an extremely important medicine for fighting infections.

However, chance is not the only protagonist of these important revelations. “Sometimes we have to follow our intuition and be able to prove ourselves right or wrong,” explains Maria Miguel. In addition to intuition, a generous dose of curiosity, an open mind to accept unexpected results, solid scientific knowledge and the ability to see and move on to further research into surprising results play a crucial role in the alchemy of discovery.

The discovery ecosystem: Fostering an environment conducive to innovation

There are other ingredients that contribute to the recipe for scientific success:

  • Creativity: The ability to generate new perspectives, concepts, questions or solutions, and the willingness to explore existing ideas in a new light.
  • Flexibility: The courage to venture into unknown territory without the fear of failure, thus increasing the chances of serendipitous encounters.

But no discovery flourishes in isolation. At InPP, the strong team spirit and culture of collaboration transcend departmental boundaries. The case of Maria Miguel's discovery is testimony to this synergy, as she herself acknowledges: “My colleagues opened doors so that I could do my research”.

To foster innovation, organizations need to cultivate an environment that encourages open discussions and connects people from different areas of knowledge and life experiences, without judgment; that encourages curiosity and receptiveness to new experiences; and that promotes an incessant quest to improve scientific knowledge, the fertile ground where serendipity can germinate.

Sowing the future: The impact of a discovery and the path of research

Although Maria Miguel is about to embark on a new journey, boosted by a prestigious Marie Skłodowska-Curie PhD scholarship - a program that supports the careers of researchers and promotes excellence and innovation in research - her legacy at InPP is already flourishing. Her groundbreaking discovery is opening promising new doors for future research in the field of crop protection, demonstrating how sometimes it is in the unexpected that the potential to transform our world lies.

In the March issue of Fruits, vegetables and flowers you will find the opinion article entitled “The role of InnovPlantProtect in Organic Farming: Paths to sustainable and efficient solutions”, in which the executive director of InnovPlantProtect (InPP), António Saraiva, reveals how our CoLAB is contributing to the success of organic farming.

“By boosting research, collaboration and knowledge sharing, InPP is helping to solve the central challenges of this practice [organic farming], allowing it to expand and enhancing the supply of agricultural products to consumers. The solutions developed by InPP make organic farming a more viable option for producers,” says the executive director.

Read the full article and find out how we are shaping the future of agriculture.

We thank Frutas, legumes e flores magazine for its recognition and reiterate our commitment to the agriculture of the future.

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

Financing: