Area of research
Plant Science · Soil Science
Research interest
Research interests include Biology, Rhizosphere, Agronomy, Genetics, Gene, and Microbial population biology.
Selenium nanoparticles and glutathione synergistically enhance salt tolerance in soybean via the jasmonic acid pathway and arbutin-regulated rhizosphere microbiota
Microbial enhancement of plant aluminum tolerance
Diversified rotation reduced N2O emissions by shaping N-cycling microbial communities and increasing their network complexity
Chemical communication between plant and microbe in the phyllosphere
GmAP2 enhances plant tolerance to aluminum toxicity and phosphorus deficiency in Arabidopsis
Fine Mapping of Phytophthora sojae PNJ1 Resistance Locus Rps15 in Soybean (Glycine max (L.) Merr.)
Organic management improved the multifunctionality in recolonization soil by increasing microbial diversity and function
Small peptides: novel targets for modulating plant–rhizosphere microbe interactions
Continuous planting of euhalophyte <i>Suaeda salsa</i> enhances microbial diversity and multifunctionality of saline soil
GmAMT2.1/2.2-dependent ammonium nitrogen and metabolites shape rhizosphere microbiome assembly to mitigate cadmium toxicity
GsMYB10 encoding a MYB-CC transcription factor enhances the tolerance to acidic aluminum stress in soybean
Investigating the synergistic effects of nano-zinc and biochar in mitigating aluminum toxicity in soybeans
MOTHER‐OF‐FT‐AND‐TFL1 regulates the seed oil and protein content in soybean
Transgenic soybean of GsMYB10 shapes rhizosphere microbes to promote resistance to aluminum (Al) toxicity
Potential relevance between soybean nitrogen uptake and rhizosphere prokaryotic communities under waterlogging stress
Ridge intertillage alters rhizosphere bacterial communities and plant physiology to reduce yield loss of waterlogged cotton
Sugarcane straw returning is an approaching technique for the improvement of rhizosphere soil functionality, microbial community, and yield of different sugarcane cultivars
Transgenic Soybean of Gsmyb10 Shapes Rhizosphere Microbes to Promote Resistance to Aluminum (Al) Toxicity
Linking plant functional genes to rhizosphere microbes: a review
Plants and rhizospheric environment: Affected by zinc oxide nanoparticles (ZnO NPs). A review
Soil microbial metabolism on carbon and nitrogen transformation links the crop-residue contribution to soil organic carbon
Effects of Waterlogging on Soybean Rhizosphere Bacterial Community Using V4, LoopSeq, and PacBio 16S rRNA Sequence
Silicon-enhanced tolerance to cadmium toxicity in soybean by enhancing antioxidant defense capacity and changing cadmium distribution and transport
Identification of quantitative trait loci (QTLs) and candidate genes of seed Iron and zinc content in soybean [Glycine max (L.) Merr.]
GmWRKY81 Encoding a WRKY Transcription Factor Enhances Aluminum Tolerance in Soybean
The rhizospheric microbiome becomes more diverse with maize domestication and genetic improvement
GmRmd1 encodes a TIR-NBS-BSP protein and confers resistance to powdery mildew in soybean
Saline soil reclamation by halophytes increased soil multifunctionality through modulation of soil microbial communities
Rhizosphere Soil Bacterial Communities of Continuous Cropping-Tolerant and Sensitive Soybean Genotypes Respond Differently to Long-Term Continuous Cropping in Mollisols
CRISPR/Cas9‐mediated gene editing of <i>GmJAGGED1</i> increased yield in the low‐latitude soybean variety Huachun 6