← Meio Ambiente Ciência

Rede subterrânea de fungos ganha imagem 3D sem mexer nas raízes

04 de August de 2026 368 leituras
Rede subterrânea de fungos ganha imagem 3D sem mexer nas raízes
Foto: Ruyat Supriazi / Pexels

by Technical University Munich

edited by Swati Mestri, reviewed by Robert Egan

This article has been reviewed according to Science X's editorial process and policies. Editors have highlighted the following attributes while ensuring the content's credibility:

peer-reviewed publication

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.

Directly in the soil and left intact

The newly developed method is based on synchrotron computed tomography. 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," says Mutez Ahmed, professor of root-soil interaction at TUM.

Previous imaging techniques required roots to be cleaned of surrounding soil. In the process, fine structures and 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 work is published in the journal New Phytologist.

New approaches to combating drought stress

"The better we understand mycorrhizae and their connections to plant roots, the better we can make use of this symbiosis," says 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."

Henri M. Braunmiller et al, Opening the black box: in situ imaging of arbuscular mycorrhizal fungal structures in soil using synchrotron‐based micro‐ CT, New Phytologist (2026). DOI: 10.1111/nph.71379

Journal information: New Phytologist

Provided by Technical University Munich

Swati Mestri holds a bachelor's degree in Electronics Engineering and has worked as a content editor since 2019. She has experience editing research documents across technology, health care, and materials science, and has a particular interest in technology and space. Full profile →

Bachelor's in mathematical biology, Master's in creative writing. Well-traveled with unique perspectives on science and language. Full profile →

Acompanhe a Recifes.net

Gostou desta leitura? Siga a Recifes nas redes e receba as proximas pautas no WhatsApp.

#biodiversidade #fungos #micorrizas #plantas #solo
Rodapé editorial

Matéria produzida com curadoria editorial assistida por IA, a partir de pauta de phys.org.

Compartilhar:
Leia também