Einar Martinez de la Parte

Einar Martinez de la Parte

Bezoekadres

Droevendaalsesteeg 10
6708 PB Wageningen

+31 (0) 317 47 34 00

The Netherlands

Netwerk

Over

My current research is focused on evaluating the functional potential of soil- and plant-associated fungi to disrupt the Striga life cycle

Biografie

I am a mycologist and plant pathologist with a PhD in Plant Sciences from Wageningen University and a Masters in Microbial Ecology from the University of Havana. My PhD thesis focused on Fusarium species diversity, plant-microbe interactions and host resistance mechanisms. Prior to my doctoral studies, I worked as a researcher at the Plant Health Research Institute in Cuba, where I conducted studies on fungal plant pathogens in different crops and developed sustainable disease management strategies. I am interested in interdisciplinary research to develop practical solutions to global agricultural challenges. During my postdoc at NIOO, we will be evaluating the potential of fungal candidates to minimize yield losses caused by Striga, a root parasitic weed that affects many cereal crops throughout the sub-Saharan region.

Onderzoeksgroepen

Onderzoeksexpertise

Mycology Plant pathogens

Publicaties

Peer-reviewed publicaties

  • Environmental Microbiome
    13-07-2026

    Disentangling the importance of microbiological and physico-chemical properties of Ethiopian field soils for the Striga seed bank and sorghum infestation

    Tamera Taylor, Lorenzo Lombard, Jose Maciá Vicente, Stefan Sanow, Einar Martinez de la Parte, Daniel Yimer Legesse, Urguesa Tsega, Jiregna Daksa, Roy van Doorn, Taye Tessema, Pedro W. Crous, Dorota Kawa, Eiko Kuramae, Jos M. Raaijmakers, Siobhan M. Brady
    Striga hermonthica (Striga) is a parasitic weed that severely affects sorghum yields in sub-Saharan Africa. Recent studies highlighted the soil microbiome’s potential to suppress Striga through interference with specific stages in its life cycle. In this study, meta-analysis of 48 Ethiopian field soils revealed that microbial communities and their interactions with soil physico-chemical properties correlated with Striga field occurrence. Striga infestation of sorghum and soil seedbank levels were negatively correlated with clay content and the nutrients potassium, sulfur, calcium, and carbon. Microbiome analyses indicated that fungal communities were more responsive than bacteria to changes in Striga infestation and seedbank levels, with distinct microbial compositions even in soils where Striga was not detected. Specific fungal and bacterial genera showed both positive and negative correlations with Striga measures, but patterns rarely held across taxonomic levels, highlighting the complexity of microbiometextendashStriga interactions. To begin to validate these correlations, we tested an isolate from the fungal genus Neocosmospora, which negatively correlated with the Striga seedbank, and showed that this isolate promotes Striga seed germination in vitro, suggesting potential for biological control of Striga. The data and analysis methods are integrated and shared in a public Shiny App for broader analysis and continued research on soil-Striga interactions.Competing Interest StatementThe authors have declared no competing interest.Gates Foundation, https://ror.org/0456r8d26, OPP1082853
    https://doi.org/10.1186/s40793-026-00926-3

Outreach

Categorieën