Mayra E. Gavito
mayraelenagavitop.bsky.social
Mayra E. Gavito
@mayraelenagavitop.bsky.social
Researcher at IIES-UNAM and Coordinator of the Sustainable Soils Group. My work focuses on soil biological activity, resilience, and management to preserve ecosystem functions and services for future generations
¿Por qué los alimentos de hoy nutren menos que los de antes?
En este reportaje para Milenio platico sobre el "hambre oculta" y cómo la pérdida de vida en los suelos afecta los nutrientes en nuestras cosechas www.milenio.com/ciencia-y-sa... #Suelos #Sustentable #DivulgacionCientifica #Milenio
¿Los alimentos de hoy son menos nutritivos? La verdad sobre la calidad
Descubre por qué frutas y verduras han perdido hasta un 50 % de sus nutrientes en los últimos 70 años y la urgencia de recuperar la salud del suelo.
www.milenio.com
September 15, 2026 at 4:10 PM
La divulgación nos permite traducir la ciencia del suelo para todas las edades

Lucía la jardinera (@smecologia.bsky.social) muestra cómo las infancias y adultos podemos aprender a valorar los microorganismos que devuelven la fertilidad a la tierra

🎬 youtu.be/csTqsQ12hVI

#DivulgaciónCiencia
July 28, 2026 at 3:23 PM
Soil health is still the most overlooked variable in global discussions about climate change and biodiversity loss. We cannot talk about ecological restoration or food security while ignoring the living universe beneath our feet. 🌱

#SoilScience #Ecology #AcademicSky #SoilEcology
July 22, 2026 at 5:21 PM
Honored to receive the State Science Award for our contributions to the scientific, economic, and social development of Michoacán.

Thank you to my team, colleagues, and institution. Let's keep pushing boundaries! 🔬🌱

#Science #WomenInSTEM #Michoacan #Research
June 24, 2026 at 3:40 PM
What drives forest recovery?🌲

Our new study highlights that collective action and overcoming socio-economic "lock-ins" are vital for sustainable landscape restoration.

Read the full study here:
doi.org/10.1016/j.gl...

#Restoration #ForestTransition #Sustainability #Agroecology #Mexico #Brazil
Redirecting
doi.org
June 5, 2026 at 2:49 PM
Less tillage, more nutrients.🌿

Excited to share our new paper. We used phosphorus isotopes to prove that conservation systems strengthen natural AMF networks, optimizing plant uptake.

Check it out here:
doi.org/10.1007/s135...

#SoilScience #SustainableAgriculture #Mycorrhiza #SciencePost
Arbuscular mycorrhizal fungi contribute more to phosphorus uptake by oats under long-term conservation agriculture than under conventional tillage - Agronomy for Sustainable Development
Arbuscular mycorrhizal fungi, important soil phosphorus mobilizers in natural systems, become gradually impoverished by high fertilization and tillage in conventional agricultural systems. The effects of management practices on their capacity to transfer phosphorus to crops have however not been directly measured under field conditions and their contribution to crop nutrition when management changes remain unknown. We compared the specific contribution of native arbuscular mycorrhizal fungi to P uptake of oats under long-term conservation agriculture or conventional tillage and explored whether 19 years of conservation agriculture had improved their P transfer capacity to oat plants. We expected that preserved mycorrhizal communities and hyphal networks under conservation agriculture increased the transfer of labeled P from a confined location in the soil to oat shoots. Local soil labeled with 33P was buried between rows in mesh bags that excluded roots or allowed roots and mycelium. Plant and mycorrhizal development, and 33P transfer to shoots, were followed in mesh bags and shoots from seedling to grain filling stage. 33P transferred to shoots and root-length specific 33P uptake were significantly higher in the conservation agriculture than in the conventional tillage treatment. 33P transfer by conventional tillage roots was similar to transfer by non-mycorrhizal roots. 33P transfer to oats plants was positively related to root length and root colonization by arbuscular mycorrhizal fungi. Our results provide evidence of higher P transfer capacity of mycorrhizal oat roots when native arbuscular mycorrhizal fungi communities and their networks were preserved through long-term conservation agriculture. This is one of the few studies showing the otherwise hidden specific contribution of arbuscular mycorrhizal fungi to crop P nutrition under realistic field conditions and the first to document the improvement in 33P transfer when oat roots were colonized by local fungi from the soil under long-term reduced disturbance by tillage.
doi.org
June 5, 2026 at 2:20 PM