Area of research
Pollution · Molecular Biology
Research interest
Research interests include Biology, Manure, Chemistry, Antibiotics, Bacteria, and Compost.
Nanoplastics and co-pollutants negatively affect the photosynthesis of photosynthetic organisms: insights from meta-analysis and machine learning
Microplastics in livestock manure and compost: environmental distribution, degradation behavior, and their impact on antibiotic resistance gene dissemination
The Glutamatergic System Regulates Feather Pecking Behaviors in Laying Hens Through the Gut–Brain Axis
Review: Gut Microbiota—A Powerful Tool for Improving Pig Welfare by Influencing Behavior Through the Gut–Brain Axis
Identification of key species and molecular mechanisms driving conjugative transfer of antibiotic resistance genes in swine manure-derived bacterial communities
Influence of Astragalus extract on Gut Microbiome Regulation and Ammonia Emission Mitigation in Laying Hens
Rosemary Extract Reduces Odor in Cats Through Nitrogen and Sulfur Metabolism by Gut Microbiota–Host Co-Modulation
Removal of antibiotic resistance genes during swine manure composting is strongly impaired by high levels of doxycycline residues
Priority establishment of soil bacteria in rhizosphere limited the spread of tetracycline resistance genes from pig manure to soil-plant systems based on synthetic communities approach
Short-, long-read metagenome and virome reveal the profile of phage-mediated ARGs in anoxic-oxic processes for swine wastewater treatment
Mitigation of ammonia and hydrogen sulfide emissions during aerobic composting of laying hen waste through NaOH-modified biochar
Community coalescence and plant host filtering determine the spread of tetracycline resistance genes from pig manure into the microbiome continuum of the soil–plant system
<i>De novo</i> Design of Biocompatible Nanomaterials Using Quasi-SMILES and Recurrent Neural Networks
Firmicutes primarily drive odor emission profiles in poultry manure treatments
Balancing the Functionality and Biocompatibility of Materials with a Deep-Learning-Based Inverse Design Framework
Intramuscular therapeutic doses of enrofloxacin affect microbial community structure but not the relative abundance of fluoroquinolones resistance genes in swine manure
The production of methyl mercaptan is the main odor source of chicken manure treated with a vertical aerobic fermenter
Residual ciprofloxacin in chicken manure inhibits methane production in an anaerobic digestion system
Biosafety assessment of laying hens fed different treatments of black soldier flies (Hermetia illucens) under doxycycline stress
High Concentrations of Tilmicosin Promote the Spread of Multidrug Resistance Gene tolC in the Pig Gut Microbiome Through Mobile Genetic Elements
Pentachlorophenol affects doxycycline and tetracycline resistance genes in soil by altering microbial structure
Pet cats may shape the antibiotic resistome of their owner’s gut and living environment
Degradation characteristics of intracellular and extracellular ARGs during aerobic composting of swine manure under enrofloxacin stress
Doxycycline induces the rebound of three tetracycline resistance genes during maturation of laying hen manure composting by increasing the abundance of potential host bacteria
The addition of nano zero-valent iron during compost maturation effectively removes intracellular and extracellular antibiotic resistance genes by reducing the abundance of potential host bacteria
The tigecycline resistance gene tetX has an expensive fitness cost based on increased outer membrane permeability and metabolic burden in Escherichia coli
Nitrogen removal characteristics of heterotrophic nitrification-aerobic denitrification bacterium Acinetobacter ZQ-A1 and community characteristics analysis of its application in pig farm wastewater
Differences in peripheral and central metabolites and gut microbiome of laying hens with different feather-pecking phenotypes
The abundance and diversity of antibiotic resistance genes in layer chicken ceca is associated with farm enviroment
Doxycycline Attenuates Pig Intestinal Microbial Interactions and Changes Microbial Metabolic Pathways