Area of research
Plant Science · Molecular Biology
Research interest
Research focused on Photosynthesis and Drought tolerance, with related work in Strigolactone, Root (linguistics), Camellia sinensis. Notable publications include 'Fine mapping of a major locus controlling plant height using a high-density single-nucleotide polymorphism map in Brassica napus', 'Overexpression of MdATG8i improves water use efficiency in transgenic apple by modulating photosynthesis, osmotic balance, and autophagic activity under moderate water deficit', and 'Physiological mechanism of strigolactone enhancing tolerance to low light stress in cucumber seedlings'.
Physiological mechanism of strigolactone enhancing tolerance to low light stress in cucumber seedlings
CsbZIP2-miR9748-CsNPF4.4 Module Mediates High Temperature Tolerance of Cucumber Through Jasmonic Acid Pathway
Overexpression of MdATG8i improves water use efficiency in transgenic apple by modulating photosynthesis, osmotic balance, and autophagic activity under moderate water deficit
Overexpression of MdATG8i Enhances Drought Tolerance by Alleviating Oxidative Damage and Promoting Water Uptake in Transgenic Apple
Cadmium stress suppresses lateral root formation by interfering with the root clock
Conserved MicroRNA Act Boldly During Sprout Development and Quality Formation in Pingyang Tezaocha (Camellia sinensis)
Fine mapping of a major locus controlling plant height using a high-density single-nucleotide polymorphism map in Brassica napus