Area of research
Plant Science
Research interest
Research interests include Biology, Biotechnology, Genetics, Genome, Genomics, and Crop.
Integration of single‐nuclei transcriptome and bulk <scp>RNA</scp>‐seq to unravel the role of <scp><i>AhWRKY70</i></scp> in regulating stem cell development in <i>Arachis hypogaea</i> L.
Chromosome-level genome assembly of the autotetraploid yellow pitaya provides novel insights into evolution of trait patterning in pitaya species with different ploidy
A single-nucleus transcriptomic atlas of peanut seedlings unveils gene regulatory dynamics governing hypocotyl development
Single-cell resolution transcriptional atlases of aerial and subterranean pegs reveals auxin signaling associated with peg development in peanut
Pan-genome bridges wheat structural variations with habitat and breeding
Physiological, molecular, and environmental insights into plant nitrogen uptake, and metabolism under abiotic stresses
<scp>ScRNA</scp>‐seq reveals dark‐ and light‐induced differentially expressed gene atlases of seedling leaves in <i>Arachis hypogaea</i> L.
Chromosome‐level reference genome and resequencing of 322 accessions reveal evolution, genomic imprint and key agronomic traits in adzuki bean
Chromosome-level genome assembly of autotetraploid <i>Selenicereus megalanthus</i> and gaining genomic insights into the evolution of trait patterning in diploid and polyploid pitaya species
Milletdb: a multi‐omics database to accelerate the research of functional genomics and molecular breeding of millets
Cell‐type proteomic and metabolomic resolution of early and late grain filling stages of wheat endosperm
Fast integration and accumulation of beneficial breeding alleles through an AB–NAMIC strategy in wheat
A Single‐Nucleus Resolution Atlas of Transcriptome and Chromatin Accessibility for Peanut (<i>Arachis Hypogaea</i> L.) Leaves
scRNA-seq Reveals the Mechanism of Fatty Acid Desaturase 2 Mutation to Repress Leaf Growth in Peanut (Arachis hypogaea L.)
Genome-Wide Identification and Analysis of the Hsp40/J-Protein Family Reveals Its Role in Soybean (Glycine max) Growth and Development
Abiotic stress tolerance: Genetics, genomics, and breeding
Single cell RNA-seq in phytohormone signaling: a promising future
Editorial: Advances in plant cultivation and physiology of oilseed crops
Genome-wide association study, haplotype analysis, and genomic prediction reveal the genetic basis of yield-related traits in soybean (Glycine max L.)
Identification of superior haplotypes in a diverse natural population for breeding desirable plant height in soybean
Designing Future Crops: Genomics-Assisted Breeding Comes of Age
Reap the crop wild relatives for breeding future crops
A chickpea genetic variation map based on the sequencing of 3,366 genomes
Features and applications of haplotypes in crop breeding
Metabolomics Intervention Towards Better Understanding of Plant Traits
Spatial distribution of proteins and metabolites in developing wheat grain and their differential regulatory response during the grain filling process
The celery genome sequence reveals sequential paleo‐polyploidizations, karyotype evolution and resistance gene reduction in apiales
Mobilizing Crop Biodiversity
A sorghum practical haplotype graph facilitates genome‐wide imputation and cost‐effective genomic prediction
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