
BioTechniques News
Beatrice Bowlby

Original story from the Technical University of Munich (Germany).
Researchers have visualized the complex network of plant roots and mycorrhizal fungi in soil in 3D for the first time, offering a promising tool for studying climate-resilient plants.
Symbioses between plants and fungi are essential for most plants. Fungal structures known as mycorrhizae extend the area from which plants can draw water and nutrients from the soil. In return, plants supply the fungi with carbohydrates produced through photosynthesis. Although the importance of this symbiosis has been known for decades, researchers have not previously been able to study the underground network in its natural structure. Now, the team based at the Technical University of Munich (TUM; Germany) has changed that.
The newly developed method is based on synchrotron computed tomography (CT). This technique makes it possible to visualize the finest structures, which are often not visible using conventional CT methods. The plants grow in a ‘basket’ that allows them to be removed from the soil together with the surrounding material without damaging the root system. A three-dimensional model is then reconstructed from many high-resolution projection images of the sample, revealing plant roots, fungal hyphae and fungal spores in their natural environment. “With our newly developed method, we have opened a ‘black box’ of plant research,” shared Mutez Ahmed, Professor of Root-Soil Interaction at TUM.
Deadly flowers may unlock the secret to synthesizing potent new medicines
Lurking within two deadly blooms, researchers have discovered a suite of enzymes that catalyze the production of an essential metabolite, potentially opening the door to new medicines.
Previous imaging techniques required roots to be cleaned of surrounding soil. In the process, fine structures and the spatial connections between plants and fungi were lost. The new method makes it possible to study the entire network in its natural environment for the first time. According to the researchers, the experimental results can also be applied to plants outside laboratory conditions.
“The better we understand mycorrhizae and their connections to plant roots, the better we can make use of this symbiosis,” concluded Henri Braunmiller, lead author of the publication. “We can now see exactly how plants and fungi interact in the soil and, for example, observe which mycorrhizal networks are particularly effective in supplying plants with water and nutrients. In the long term, this could help us develop ways to make crops more resilient to drought and other consequences of climate change.”
This article has been republished from the following materials. Material may have been edited for length and house style. For further information, please contact the cited source. Our press release publishing policy can be accessed here.
The post 3D fungal networks could lead to more climate-resilient crops appeared first on BioTechniques.
Powered by WPeMatico
