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NEWS

There are days when science begins long before you enter the laboratory or the field. It starts at dawn, when the alarm clock goes off too early. When you mentally review the day's list: an experiment that can't be missed, a trip to the field that depends on the weather, an unfinished report, a meeting scheduled at the wrong time. In between, someone to wake up, someone to drop off, someone to call. And yet science moves forward.

At InnovPlantProtect, there are now 15 women who give a face to the science and innovation developed here. Women who represent commitment, demand, resilience, overcoming, quality, talent, excellence and creativity. But they are only part of a greater whole. There are many more - and each one brings with it a story that doesn't fit into a CV, a patent application or an article.

Today, February 11th, marks the International Day of Women and Girls in Science, a UNESCO initiative that underlines the importance of the female role in the production of scientific and technological knowledge and the need to continue promoting equal access to careers in science and innovation. Portugal has encouraging figures: women represent almost 50% researchers in the country. It's a relevant figure, reflecting decades of progress. But the figures don't show what happens between them.

Because science, for many women, is made up of fragile balances.

There are women with intense family lives, others with more solitary journeys, still others who build support networks outside traditional models, with effort and creativity. There are difficult choices and decisions, unexpected circumstances, forced breaks, changes of pace, different phases of life. All legitimate. Many are invisible when you only look at the end result of a project, an article or a biosolution developed. - but they all influence the paths of science.

One day, one of our researchers - let's just call her that - told us that she had finished a field trial close to sunset. The phone rang while she was putting away her materials. It was the school. A delay. Nothing extraordinary. It was business as usual. She came home exhausted, with dirt still on her boots, opened her computer after dinner and went back to her data, because the experiment couldn't wait.
“It wasn't a heroic day,” she said. “It was just a normal day.”

And perhaps that is what is most remarkable.

In the field of crop protection, the work is demanding, technical and often unpredictable. It takes place in the laboratory and in the field, between strict protocols and decisions made under real conditions. It requires persistence, adaptability, attention to detail and an integrated view of problems. Characteristics that so many women bring with them - not by nature, but by experience, by path, by everything they have learned to manage at the same time.

Each personal story profoundly shapes the way we do science. The doubts, the challenges, the forced breaks, the changes of pace, the new beginnings. None of this is left at the laboratory door. It all silently enters into the way we observe, question and build knowledge.

To celebrate the International Day of Women and Girls in Science is to recognise this reality as a whole. It is to honour the women who continue to do science despite the challenges — and often because of them. And it is to remember that innovation is also born from lives fully lived, shaped by imperfection, effort and courage.

Today we celebrate them. Not just for what they produce, but for all that they are. In science, in the field, in the laboratory - and in the life that happens in between.

O InnovPlantProtect (InPP), Collaborative Laboratory specializing in biological and digital solutions for crop protection, aligned with the emerging challenges of agriculture, will launch its new institutional website on January 24th, on a symbolic date marking 7 years working in the agricultural sector.

This launch is part of a phase of institutional evolution and consolidation InPP, reinforcing its strategy of proximity to the sector, clarity in the communication of its competencies and affirmation as a strategic partner for companies, producers, associations and public bodies.

An even clearer, more up-to-date and sector-oriented platform

With a renewed structure and a more intuitive browsing experience, the new website features:

  • an area of Services and Products completely reorganized, which facilitates access to specialized services, laboratory capabilities and biological and digital solutions developed by InPP, as well as to a updated catalog of services and biosolutions;
  • more complete institutional content that reinforces transparency, scientific rigor and CoLAB's mission;
  • a clearer presentation of scientific skills and research areas, highlighting the impact of the work carried out by InPP's multidisciplinary teams.

New image, same mission - but reinforced

The launch of the website is accompanied by the implementation of InnovPlantProtect's new visual identity, This reflects the maturity of CoLAB and its future ambitions.

The new image - accompanied by the slogan “Innovate together. Protect better.” - reflects InPP's ongoing commitment to:

  • Developing new generation biological and digital solutions;
  • Promoting safer, more innovative and more productive agriculture;
  • Strengthen collaboration and partnership with the agricultural sector and the innovation ecosystem.

A new phase for InPP

The digital and visual renovation is part of a broader strategy of maturity and consolidation, Through this initiative, InPP aims to strengthen its role as a scientific and technological partner for the agricultural sector in applied research and the development of crop protection solutions.

According to António Saraiva, InPP's executive director: “This new website isn't just a digital revamp - it's a reflection of the ambition we have for our future and how we want to communicate with the sector. We want every visitor to understand the purpose that drives us: to create innovative solutions that protect crops, boost productivity and contribute to more sustainable agricultural systems. InPP is entering a new phase, with a clearer, more accessible identity aligned with the real needs of agriculture and a renewed commitment to real impact on the ground.”

Available from January 24th

The new InnovPlantProtect website will be available from January 24th at: https://iplantprotect.pt/

The start of a new year also marks a new cycle for InnovPlantProtect. In 2026, InPP enters a phase of evolution and consolidation, with several new features that reinforce its position as a strategic partner for the intelligent transformation of agriculture.

Over the next few months, initiatives, content and tools will be presented that reflect the work carried out by our teams in the areas of applied research, biological solutions, specialized services and digital innovation.

The first step in this new phase will be presented in the next January 24th, InnovPlantProtect is celebrating the date 7 years in business at the service of the agricultural sector.

Until then, we continue to prepare a range of new products that reflect our mission to promote safer, more innovative and more productive agriculture.

Stay tuned. What's coming is just the beginning.

EVENTS

Sometimes, if you're inside a building, it's hard to tell whether or not it's raining outside. However, you will easily conclude that it is raining if you see people with open umbrellas. The umbrella is an accessory that helps human beings deal with their environment.

Bacteria can also use “accessories” to better cope with their environments. These accessories, however, have much more profound effects on the lives of microbes, as they take the form of genes that can be integrated into their own genomes. These “accessory” genes are obtained from other microbes or from the environment, and can play various roles, from allowing bacteria to resist antibiotics to enabling symbiotic associations with plants.

Image: Adrianna Calvo/ Pexels

At InPP, the Data Management and Risk Analysis Department is comparing bacterial genomes to identify those that have “accessory” genes that can help plants defend themselves better against pathogens. On the other hand, these analyses also allow us to rule out bacterial strains that could have adverse effects. This information will be crucial for identifying microbes and microbial characteristics that are important for plant protection.

Tobacco whitefly uses a stolen gene to avoid the host's defenses. The discovery is highly relevant to pest control.

The first known case of a natural gene transfer from a plant to an insect has been identified by an international team of researchers. The insect is a whitefly and the discovery could pave the way for new pest control strategies, according to a report published in the newspaper Nature.

Scientists have discovered that Bemisia tabaci appropriated a gene from a host plant millions of years ago, reveals a article published in Cell. The gene allows this pest to neutralize a toxin produced by certain plants to defend themselves against insects.

Some whiteflies use plant genes to render toxins harmless. Image: Gaucho/ Wiki

This aleirodid, also known as the bean or sweet potato whitefly, although it attacks many other vegetable crops, is a worldwide pest and one of the most destructive we know of. A Bemisia tabaci ingests the sugary sap of hundreds of types of plants, excreting a sweet, sticky substance, honeydew, which then serves as a medium for fungi to grow. Whiteflies are also vectors for more than a hundred viruses that are pathogenic to plants.

“It's a remarkable example of how the study of evolution can underpin new approaches to applications such as crop protection,” says Andrew Gloss, who studies plant-pest interactions at the University of Chicago in the USA. The study suggests that inhibiting the gene identified could make this whitefly vulnerable to the toxin, opening up a new way of combating this pest.

Protecting plants from pathogens without genetically modifying crops? A team of Chinese researchers suggests an alternative strategy in the latest issue of Plant Communications.

The biotechnological methods that currently exist to create crops that are resistant to pests and diseases are limited in their applicability, mainly because they are based on transgenics or surface application (which does not allow access to the inner areas of the plant). A scientists' proposal involves the use of small RNA produced by beneficial microbes for crop protection, guaranteeing the stability and delivery of these RNAs to the appropriate place and time.

RNA associated with beneficial microbes in the microbiome to protect crops against pathogens.

The strategy, which eliminates “the need for genetic modification of cultures”, assumes that small RNAs (sRNAs) can be transferred from the microbiome to the host and pathogen, or between elements of the microbiome.

sRNAs are the crucial molecular devices of so-called gene silencing via RNA interference, a mechanism that regulates gene expression at both the transcriptional and post-transcriptional levels.

Title of original article: Trans-kingdom RNAs and their fates in recipient cells: advances, utilization, and perspectives

doi.org/10.1016/j.xplc.2021.100167