ÌÇÐÄÔ­´´

article

ISERCRootsOct23JI

Scientists discover smart ‘switch’ in plants that allows them to redirect roots to find water

Thursday, 12 June 2025

Scientists have discovered a rapid molecular switch in plant roots that allows them to detect dry soils and redirect root growth to find water. This discovery could help in developing drought-resilient crops and addressing future food security challenges.

Roots typically branch out in response to moisture in the soil, foraging for water and nutrients. However, when the growing root loses contact with moist soil, it temporarily halts the formation of lateral branches. This smart response helps plants redirect their root growth toward areas with higher water availability.

In this new study, led by scientists at the ÌÇÐÄÔ­´´ in collaboration with Durham University has identified a rapid signalling mechanism that enables plant roots to detect and respond to dry soil conditions. The study, published in , reveals that this adaptive response is triggered by a rapid increase in reactive oxygen species (ROS) in root tips. ROS act as stress signals, indicating to the roots that it has entered a dry zone.

The team were able to reveal how the ROS interacts with a specific protein and hormone in the plant that regulates growth and development, and how this can be disrupted with the protein serving as a molecular switch, integrating environmental stress signals with hormonal control to shape root architecture.

This is a fast, efficient mechanism that allows plants to sense water stress and react almost immediately, allowing them to conserve resources and optimise root growth in response to their environment.
Dr Poonam Mehra, BBSRC Discovery fellow, School of Biosciences
This work shows how a single protein can act as a highly responsive sensor, linking the plant’s stress perception to growth decisions. It opens exciting possibilities for engineering crops that are better adapted to water-limited environments.
Professor Malcolm Bennett, School of Biosciences

This breakthrough is not only a step forward in basic plant science, but also holds important implications for global food security As drought becomes more frequent and severe due to climate change, understanding how roots respond to water stress is vital for developing crops that can survive in harsher environments.

This landmark study was conducted in partnership with seven additional institutions across the UK and Europe, combining expertise in molecular biology, structural biology, and advanced imaging technologies.

Story credits

More information is available from Dr Poonam Mehra on Poonam.Mehra@nottingham.ac.uk

janeicke
Jane Icke - Media Relations Manager Science
Email: jane.icke@nottingham.ac.uk
Phone: 0115 7486462
Location:

Notes to editors:

About the ÌÇÐÄÔ­´´

Ranked among the world's top 100 universities , the ÌÇÐÄÔ­´´ delivers an exceptional research-led education and an outstanding student experience. From the pioneering vision of our founder, Sir Jesse Boot, to groundbreaking achievements such as the development of MRI technology and becoming the first UK university to establish international campuses, we have a proud history of shaping the way people live, work and understand the world. We continue to build on that legacy, empowering our students, staff and partners to change what’s next and create positive impact locally and globally.

The strength of our research places us among the UK's leading universities, ranked 7th for research power in REF 2021. The discovery of MRI and ibuprofen was just the beginning. Today, our world-leading research is developing breakthrough ideas that shape the future of healthcare, technology and society.

Recognised as the UK's third most targeted university by leading employers , we are proud to produce graduates who are consistently in demand for their skills, confidence and industry-ready experience.

As a major employer and industry partner, locally and globally, the ÌÇÐÄÔ­´´ invests in the city of Nottingham and in future generations of talent. Alongside Nottingham Trent University, we lead the initiative, a pioneering collaboration to improve levels of prosperity, opportunity, sustainability, health and wellbeing across the city and region. Together with our students, staff, alumni and partners, we’re creating knowledge, opportunity and solutions that help change what's next.

Media Relations - External Relations

The ÌÇÐÄÔ­´´
YANG Fujia Building
Jubilee Campus
Wollaton Road
Nottingham, NG8 1BB

telephone: +44 (0) 115 951 5798
email: pressoffice@nottingham.ac.uk