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Amelia H Lovelace

Showing results (1-10 of 15) with videos related to

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Molecular Plant-Microbe Interactions : MPMI|June 27, 2024
<i>Burkholderia</i> Tolerate Nature's Tearful Defense in the <i>Allium</i> Chemical Arms RaceAmelia H Lovelace
Molecular Plant-Microbe Interactions : MPMI|December 1, 2023
ROS, Moss, and a Rossmann Fold Protein: Identification of a Key Signaling Component for Plant ImmunityAmelia H Lovelace
Molecular Plant-Microbe Interactions : MPMI|September 13, 2023
Unraveling the Function of FgNls1, a <i>Fusarium graminearum</i> Effector Critical for Full Virulence on WheatManish Tiwari, Amelia H Lovelace
Molecular Plant-Microbe Interactions : MPMI|October 27, 2023
Sowing Symbiotic Success: Defining the Role of O-Antigen Polymerase in a Legume-Rhizobia InteractionManish Tiwari, Amelia H Lovelace
Cell Host & Microbe|April 14, 2022
How do bacteria transform plants into their oasis?Amelia H Lovelace, Wenbo Ma
Molecular Plant-Microbe Interactions : MPMI|July 29, 2023
Playing with FIRE: How an RXLR Oomycete Effector Fuels Disease by Hijacking 14-3-3 ProteinsManish Tiwari, Amelia H Lovelace
Molecular Plant-Microbe Interactions : MPMI|February 21, 2018
Pattern-Triggered Immunity Alters the Transcriptional Regulation of Virulence-Associated Genes and Induces the Sulfur Starvation Response in Pseudomonas syringae pv. tomato DC3000Amelia H Lovelace, Amy Smith, Brian H Kvitko
Molecular Plant-Microbe Interactions : MPMI|February 14, 2018
Validation of RT-qPCR Approaches to Monitor Pseudomonas syringae Gene Expression During Infection and Exposure to Pattern-Triggered ImmunityAmy Smith, Amelia H Lovelace, Brian H Kvitko
Molecular Plant-Microbe Interactions : MPMI|November 5, 2024
Transcriptomic Profiling of '<i>Candidatus</i> Liberibacter asiaticus' in Different Citrus Tissues Reveals Novel Insights into Huanglongbing PathogenesisAmelia H Lovelace, Chunxia Wang, Amit Levy, et al.
Phytopathology|May 1, 2023
Effector Identification in Plant PathogensAmelia H Lovelace, Sara Dorhmi, Michelle T Hulin, et al.
Pageof 2

Showing results (1-10 of 15) with videos related to

Sort By:
Pageof 2
Molecular Plant-Microbe Interactions : MPMI|June 27, 2024
<i>Burkholderia</i> Tolerate Nature's Tearful Defense in the <i>Allium</i> Chemical Arms RaceAmelia H Lovelace
Molecular Plant-Microbe Interactions : MPMI|December 1, 2023
ROS, Moss, and a Rossmann Fold Protein: Identification of a Key Signaling Component for Plant ImmunityAmelia H Lovelace
Molecular Plant-Microbe Interactions : MPMI|September 13, 2023
Unraveling the Function of FgNls1, a <i>Fusarium graminearum</i> Effector Critical for Full Virulence on WheatManish Tiwari, Amelia H Lovelace
Molecular Plant-Microbe Interactions : MPMI|October 27, 2023
Sowing Symbiotic Success: Defining the Role of O-Antigen Polymerase in a Legume-Rhizobia InteractionManish Tiwari, Amelia H Lovelace
Cell Host & Microbe|April 14, 2022
How do bacteria transform plants into their oasis?Amelia H Lovelace, Wenbo Ma
Molecular Plant-Microbe Interactions : MPMI|July 29, 2023
Playing with FIRE: How an RXLR Oomycete Effector Fuels Disease by Hijacking 14-3-3 ProteinsManish Tiwari, Amelia H Lovelace
Molecular Plant-Microbe Interactions : MPMI|February 21, 2018
Pattern-Triggered Immunity Alters the Transcriptional Regulation of Virulence-Associated Genes and Induces the Sulfur Starvation Response in Pseudomonas syringae pv. tomato DC3000Amelia H Lovelace, Amy Smith, Brian H Kvitko
Molecular Plant-Microbe Interactions : MPMI|February 14, 2018
Validation of RT-qPCR Approaches to Monitor Pseudomonas syringae Gene Expression During Infection and Exposure to Pattern-Triggered ImmunityAmy Smith, Amelia H Lovelace, Brian H Kvitko
Molecular Plant-Microbe Interactions : MPMI|November 5, 2024
Transcriptomic Profiling of '<i>Candidatus</i> Liberibacter asiaticus' in Different Citrus Tissues Reveals Novel Insights into Huanglongbing PathogenesisAmelia H Lovelace, Chunxia Wang, Amit Levy, et al.
Phytopathology|May 1, 2023
Effector Identification in Plant PathogensAmelia H Lovelace, Sara Dorhmi, Michelle T Hulin, et al.
Pageof 2