Area of research
Plant Science · Molecular Biology
Research interest
Research interests include Genetics, Gene, Identification (biology), Computational biology, Biology, and Gene family.
Small particles, big effects: How nanoparticles can enhance plant growth in favorable and harsh conditions
Additional file 7 of Functional structure analysis and genome-wide identification of CNX gene family in cotton
Additional file 5 of Functional structure analysis and genome-wide identification of CNX gene family in cotton
Additional file 2 of GhNFYA16 was functionally observed positively responding to salt stress by genome-wide identification of NFYA gene family in cotton
Additional file 4 of Functional structure analysis and genome-wide identification of CNX gene family in cotton
Additional file 1 of Functional structure analysis and genome-wide identification of CNX gene family in cotton
Additional file 2 of Functional structure analysis and genome-wide identification of CNX gene family in cotton
Additional file 9 of Functional structure analysis and genome-wide identification of CNX gene family in cotton
Additional file 6 of Functional structure analysis and genome-wide identification of CNX gene family in cotton
Additional file 8 of Functional structure analysis and genome-wide identification of CNX gene family in cotton
Additional file 3 of Functional structure analysis and genome-wide identification of CNX gene family in cotton
The Hairless Stem Phenotype of Cotton (<i>Gossypium barbadense</i>) Is Linked to a<i>Copia</i>-Like Retrotransposon Insertion in a<i>Homeodomain-Leucine Zipper</i>Gene (<i>HD1</i>)
Epigenetic mechanisms of salt tolerance and heterosis in Upland cotton (Gossypium hirsutum L.) revealed by methylation-sensitive amplified polymorphism analysis
Analysis of methylation-sensitive amplified polymorphism in different cotton accessions under salt stress based on capillary electrophoresis
Genome sequence of the cultivated cotton Gossypium arboreum
The draft genome of a diploid cotton Gossypium raimondii