Area of research
Plant Science · Molecular Biology
Research interest
Research interests include Context (archaeology), Subject (documents), Data science, Engineering ethics, and Epistemology.
Non-Nitrogen-Fixing <i>Sinorhizobium meliloti</i> Can Escape Sanctions in Indeterminate Alfalfa Nodules, Exhibiting Parasitic Growth
Both obesogenic and isocalorically-controlled diets drive changes in microbiota composition in a sex-dependent manner in mice
A broadly distributed predicted helicase/nuclease confers phage resistance via abortive infection
Effects of laboratory domestication on the rodent gut microbiome
Tad pilus-mediated twitching motility is essential for DNA uptake and survival of Liberibacters
‘<i>Candidatus</i> Liberibacter asiaticus’-Encoded BCP Peroxiredoxin Suppresses Lipopolysaccharide-Mediated Defense Signaling and Nitrosative Stress In Planta
Focus on How Plants Engage With Beneficial Microorganisms While at the Same Time Restricting Pathogens
What are the Top 10 Unanswered Questions in Molecular Plant-Microbe Interactions?
Metagenome-Assembled Genome Sequences of Five Strains from the <i>Microtus ochrogaster</i> (Prairie Vole) Fecal Microbiome
<i>Sinorhizobium meliloti</i> succinylated high‐molecular‐weight succinoglycan and the <i>Medicago truncatula</i> LysM receptor‐like kinase MtLYK10 participate independently in symbiotic infection
Growth Dynamics and Survival of <i>Liberibacter crescens</i> BT-1, an Important Model Organism for the Citrus Huanglongbing Pathogen “ <i>Candidatus</i> Liberibacter asiaticus”
Features of <i>Sinorhizobium meliloti</i> exopolysaccharide succinoglycan required for successful invasion of <i>Medicago truncatula</i> nodules
Complete Genome Sequence of Sinorhizobium Phage ΦM6, the First Terrestrial Phage of a Marine Phage Group
Structure, proteome and genome of Sinorhizobium meliloti phage ΦM5: A virus with LUZ24-like morphology and a highly mosaic genome
Function of Succinoglycan Polysaccharide in Sinorhizobium meliloti Host Plant Invasion Depends on Succinylation, Not Molecular Weight
Sinorhizobium meliloti Phage ΦM9 Defines a New Group of T4 Superfamily Phages with Unusual Genomic Features but a Common T=16 Capsid
Expression and purification of putative Y‐family polymerase DinB from Sinorhizobium meliloti
The structure of Sinorhizobium meliloti phage ΦM12, which has a novel T=19l triangulation number and is the founder of a new group of T4-superfamily phages
Characterization of putative mutagenesis cassettes in <i>Sinorhizobium meliloti</i> (927.1)
The genome, proteome and phylogenetic analysis of Sinorhizobium meliloti phage ΦM12, the founder of a new group of T4-superfamily phages
The Succinoglycan Endoglycanase Encoded by <i>exoK</i> Is Required for Efficient Symbiosis of <i>Sinorhizobium meliloti</i> 1021 with the Host Plants <i>Medicago truncatula</i> and <i>Medicago sativa</i> (Alfalfa)
Single-plant, Sterile Microcosms for Nodulation and Growth of the Legume Plant <em>Medicago truncatula</em> with the Rhizobial Symbiont <em>Sinorhizobium meliloti </em>
Increased Production of the Exopolysaccharide Succinoglycan Enhances Sinorhizobium meliloti 1021 Symbiosis with the Host Plant Medicago truncatula
Multiple Strategies for Translesion Synthesis in Bacteria
A comparative genomics screen identifies a Sinorhizobium meliloti 1021 sodM-like gene strongly expressed within host plant nodules