Area of research
Plant Science · Endocrinology
Research interest
Research interests include Potassium, Gossypium hirsutum, Yield (engineering), Gossypium, Chemistry, and Transcriptome.
Improving the soil K+/Na+ ratio under moderate salt stress synergistically increases the yield and quality of cotton fiber and cottonseed
Weighted gene co-expression network analysis revealed the key pathways and hub genes of potassium regulating cotton root adaptation to salt stress
Integrative transcriptomic, metabolomic and physiological analyses revealed the physiological and molecular mechanisms by which potassium regulates the salt tolerance of cotton (Gossypium hirsutum L.) roots
Potassium ameliorates cotton (<scp><i>Gossypium hirsutum</i></scp> L.) fiber length by regulating osmotic and K<sup>+</sup>/Na<sup>+</sup> homeostasis under salt stress
Potassium Application Increases Cotton (Gossypium hirsutum L.) Fiber Length by Improving K+/Na+ Homeostasis and Potassium Transport Capacity in the Boll-Leaf System under Moderate Salinity
Potassium application alleviates the negative effects of salt stress on cotton (Gossypium hirsutum L.) yield by improving the ionic homeostasis, photosynthetic capacity and carbohydrate metabolism of the leaf subtending the cotton boll
Effects of potassium application on soil ecological resistance to Verticillium wilt of cotton (<i>Gossypium hirsutum</i> L.)