Area of research
Plant Science · Computer Networks and Communications
Research interest
Research focused on Nitrate and Transporter, with related work in Assimilation (phonology), Nitrogen, Agronomy. Notable publications include 'Plant Nitrogen Assimilation and Use Efficiency', 'Overexpression of a pH-sensitive nitrate transporter in rice increases crop yields', and 'Plant nitrate transporters: from gene function to application'.
Carbon stabilization by iron plaque on rice roots: The role of oxygen loss
Rice Yield and Nitrogen Use Efficiency Under Climate Change: Unraveling Key Drivers with Least Absolute Shrinkage and Selection Operator Regression
Mutation of strigolactone biosynthetic gene <i>DWARF 17</i> impairs the responses of rice tillering to N supply
Nuclear Accumulation of <scp>OsMADS27</scp> Was Promoted by <scp>OsNAR2.1</scp> in Response to Nitrate to Control Root Growth by Directly Targeting <i>OsMADS57</i> in Rice
The beneficial rhizobacterium <i>Bacillus velezensis</i> SQR9 regulates plant nitrogen uptake via an endogenous signaling pathway
Elucidating the genetic basis of bulb-related traits in garlic (Allium sativum) through genome-wide association study
Nuclear translocation of OsMADS25 facilitated by OsNAR2.1 in reponse to nitrate signals promotes rice root growth by targeting OsMADS27 and OsARF7
A novel high-affinity potassium transporter SeHKT1;2 from halophyte Salicornia europaea shows strong selectivity for Na+ rather than K+
High-yielding nitrate transporter cultivars also mitigate methane and nitrous oxide emissions in paddy
Overexpression of a nitrate transporter NtNPF2.11 increases nitrogen accumulation and yield in tobacco
Genome-Wide Identification and Characterization of GASA Gene Family in Nicotiana tabacum
High-temperature adaptation of an <i>OsNRT2.3</i> allele is thermoregulated by small RNAs
Watermelon responds to organic fertilizer by enhancing root-associated acid phosphatase activity to improve organic phosphorus utilization
Raman spectroscopy to study biomolecules, their structure, and dynamics
OsTBP2.1, a TATA-Binding Protein, Alters the Ratio of OsNRT2.3b to OsNRT2.3a and Improves Rice Grain Yield
Comprehensive analysis of the LHT gene family in tobacco and functional characterization of NtLHT22 involvement in amino acids homeostasis
Ecotoxicity of nickel and its possible remediation
Plant DNA methylation is sensitive to parent seed N content and influences the growth of rice
Plant nitrogen uptake and assimilation: regulation of cellular pH homeostasis
OsPIN9, an auxin efflux carrier, is required for the regulation of rice tiller bud outgrowth by ammonium
Co-Overexpression of OsNAR2.1 and OsNRT2.3a Increased Agronomic Nitrogen Use Efficiency in Transgenic Rice Plants
A Rice Autophagy Gene OsATG8b Is Involved in Nitrogen Remobilization and Control of Grain Quality
Limited aerenchyma reduces oxygen diffusion and methane emission in paddy
OsNAR2.1 Interaction with OsNIT1 and OsNIT2 Functions in Root-growth Responses to Nitrate and Ammonium
Overexpression of the High-Affinity Nitrate Transporter OsNRT2.3b Driven by Different Promoters in Barley Improves Yield and Nutrient Uptake Balance
Reducing phenanthrene uptake and translocation, and accumulation in the seeds by overexpressing OsNRT2.3b in rice
Genetic and Global Epigenetic Modification, Which Determines the Phenotype of Transgenic Rice?
Knockdown of a Novel Gene OsTBP2.2 Increases Sensitivity to Drought Stress in Rice
Leaf nitrate accumulation influences the photorespiration of rice (Oryza sativa L.) seedlings
Water-saving irrigation is a ‘win-win’ management strategy in rice paddies – With both reduced greenhouse gas emissions and enhanced water use efficiency