Area of research
Materials Chemistry · Ecology
Research interest
Research interests include Microbial Community Ecology and Physiology, Crystallization and Solubility Studies, X-ray Diffraction in Crystallography, and Pancreatic function and diabetes.
Genomic analysis of two Leisingera strains SA32 and SA215 reveals their distinct roles in marine sulfur cycling
Spatiotemporal Dynamics of the Suaeda salsa Rhizosphere-Endophyte Microbiota and Driving Forces for N-P Cycling
Invasion of <i>Spartina alterniflora</i> on <i>Zostera japonica</i> enhances the abundances of bacteria by absolute quantification sequencing analysis.
Unveiling the occurrence, hosts and mobility potential of antibiotic resistance genes in the deep ocean
Nutrient depletion is the main limiting factor in the crude oil bioaugmentation process.
Seagrass vegetation affect the vertical organization of microbial communities in sediment.
Long-term monoculture reduces the symbiotic rhizobial biodiversity of peanut.
CheY1 and CheY2 of Azorhizobium caulinodans ORS571 Regulate Chemotaxis and Competitive Colonization with the Host Plant.
Microbial degradation kinetics and molecular mechanism of 2,6-dichloro-4-nitrophenol by a Cupriavidus strain.
LuxR-Type Regulator AclR1 of <i>Azorhizobium caulinodans</i> Regulates Cyclic di-GMP and Numerous Phenotypes in Free-Living and Symbiotic States.
Engineering Burkholderia xenovorans LB400 BphA through Site-Directed Mutagenesis at Position 283.
A novel green approach for fabricating visible, light sensitive nano-broccoli-like antimony trisulfide by marine Sb(v)-reducing bacteria: Revealing potential self-purification in coastal zones.
Biodegradation of 2,6-dibromo-4-nitrophenol by Cupriavidus sp. strain CNP-8: Kinetics, pathway, genetic and biochemical characterization.
Structural characterization of a novel mannogalactoglucan from Fortunella margarita and its simulated digestion in vitro.
Molecular and biochemical characterization of 2-chloro-4-nitrophenol degradation via the 1,2,4-benzenetriol pathway in a Gram-negative bacterium.
Biosynthesis of au nanoparticles by a marine bacterium and enhancing their catalytic activity through metal ions and metal oxides.
Assessing pollution-related effects of oil spills from ships in the Chinese Bohai Sea
Hyperinsulinemia Drives Diet-Induced Obesity Independently of Brain Insulin Production