Area of research
Genetics · Plant Science
Research interest
Research interests include Biology, Quantitative trait locus, Epistasis, Oryza sativa, Genetics, and Agronomy.
Allelic Variation of Hd17 for Rice Heading Date is Caused by Natural Selection
Design of rice with low cadmium accumulation in grain using single segment substitution line
QTL epistasis plays a role of homeostasis on heading date in rice
Epistatic interaction has the reverse effects with its constitutive quantitative trait loci
Pyramiding of Low Chalkiness QTLs Is an Effective Way to Reduce Rice Chalkiness
Four QTLs control stigma exsertion rate by changing stigma size in rice
Grain shape is a factor affecting the stigma exsertion rate in rice
qGLF5 from Oryza rufipogon Griff. improves kernel shape, plant architecture, and yield in rice
GS6.1 controls kernel size and plant architecture in rice
QTL Epistasis Plays a Role of Homeostasis on Heading Date in Rice
QTL Epistasis Plays a Role of Homeostasis on Heading Date in Rice
Natural variations in grain length 10 (GL10) regulate rice grain size
GL9 from Oryza glumaepatula controls grain size and chalkiness in rice
Reconstruction of the High Stigma Exsertion Rate Trait in Rice by Pyramiding Multiple QTLs
Dynamic analysis of QTLs on plant height with single segment substitution lines in rice
Fine Mapping of Two Major Quantitative Trait Loci for Rice Chalkiness With High Temperature-Enhanced Additive Effects
Identification, Interaction, Expression, and Function of QTLs on Leaf Numbers with Single-Segment Substitution Lines in Rice
Fine mapping of two grain chalkiness QTLs sensitive to high temperature in rice
GW10, a member of P450 subfamily regulates grain size and grain number in rice
Dissection of closely linked QTLs controlling stigma exsertion rate in rice by substitution mapping
Substitution Mapping of Two Closely Linked QTLs on Chromosome 8 Controlling Grain Chalkiness in Rice
Integrative QTL Identification, Fine Mapping and Candidate Gene Analysis of a Major Locus qLTG3a for Seed Low-Temperature Germinability in Rice
Functional mapping of tillering QTLs using the Wang–Lan–Ding model and a SSSL population
Mapping QTLs controlling low-temperature germinability in rice by using single segment substitution lines derived from 4 AA-genome species of wild rice
GW10, a Member of P450 Subfamily Regulates Grain Size and Grain Number in Rice
Substitution Mapping of the Major Quantitative Trait Loci Controlling Stigma Exsertion Rate from Oryza glumaepatula
Unconditional and conditional analysis of epistasis between tillering QTLs based on single segment substitution lines in rice
Substitution mapping of the major quantitative trait loci controlling stigma exsertion rate from Oryza glumaepatula
Identification and application of major quantitative trait loci for panicle length in rice (<i>Oryza sativa</i>) through single‐segment substitution lines
Breeding by design of CMS lines on the platform of SSSL library in rice