Delia A. Narváez-Barragán
Delia A. Narváez-Barragán
Postdoctoral fellow
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Expansin-like Exl1 from Pectobacterium is a virulence factor required for host infection, and induces a defence plant response involving ROS, and jasmonate, ethylene and …
DA Narváez-Barragán, OE Tovar-Herrera, M Torres, M Rodríguez, ...
Scientific Reports 10 (1), 7747, 2020
Expansin-related proteins: biology, microbe–plant interactions and associated plant-defense responses
DA Narváez-Barragán, OE Tovar-Herrera, L Segovia, M Serrano, ...
Microbiology 166 (11), 1007-1018, 2020
Aerobic bacteria produce nitric oxide via denitrification and promote algal population collapse
A Abada, R Beiralas, D Narvaez, M Sperfeld, Y Duchin-Rapp, V Lipsman, ...
The ISME journal 17 (8), 1167-1183, 2023
Mechanisms of plant cell wall surveillance in response to pathogens, cell wall-derived ligands and the effect of expansins to infection resistance or susceptibility
DA Narváez-Barragán, OE Tovar-Herrera, A Guevara-García, M Serrano, ...
Frontiers in Plant Science 13, 969343, 2022
Analysis of two Mexican Pectobacterium brasiliense strains reveals an inverted relationship between c-di-GMP levels with exopolysaccharide production and swarming motility
DA Narváez-Barragán, A de Sandozequi, M Rodríguez, K Estrada, ...
Microbiological research 235, 126427, 2020
Bacterial lag phase shortening is triggered by methyl groups
M Sperfeld, DA Narváez-Barragán, S Malitsky, V Frydman, L Yuda, ...
BioRxiv, 2023.06. 06.543872, 2023
Algal methylated compounds shorten the lag phase of Phaeobacter inhibens bacteria
M Sperfeld, DA Narváez-Barragán, S Malitsky, V Frydman, L Yuda, ...
Nature Microbiology, 1-16, 2024
Reducing the Bacterial Lag Phase Through Methylated Compounds: Insights from Algal-Bacterial Interactions
M Sperfeld, DA Narváez-Barragán, S Malitsky, V Frydman, L Yuda, ...
bioRxiv, 2024
The bacterial Bmt methionine synthase is involved in lag phase shortening
E Segev, DA Narváez-Barragán, M Sperfeld
bioRxiv, 2024.06. 19.599700, 2024
Identification of Pectobacterium species isolated from the soft rot of tetecho (Neobuxbaumia tetetzo), a columnar cactus, and associated metagenomics
D Vargas-Peralta, DA Narváez-Barragán, A de Sandozequi, ...
bioRxiv, 2021.02. 01.429127, 2021
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Articles 1–10