万向元
个人信息Personal Information
教师英文名称:Wanxiangyuan
职称:研究员(自然科学)
博士生导师
毕业院校:南京农业大学
学科:生物化学与分子生物学
学历:研究生
学位:博士
所在单位:生物农业研究院
职务:生物与农业研究院院长,精准医疗与健康研究院常务副院长
电子邮箱:
- Molecular regulation of ZmMs7 required for maize male fertility and development of a dominant male-sterility system in multiple species.
- Breeding with Dominant Genic Male-Sterility Genes to Boost Crop Grain Yield in Post-Heterosis Utilization Era.
- Youhui Tian; Lipid Metabolism: Critical Roles in Male Fertility and Other Aspects of Reproductive Development in Plants.
- ZmMs30 Encoding a Novel GDSL Lipase is Essential for Male Fertility and Valuable for Hybrid Breeding in Maize.
- Maize Genic Male-sterility Genes and Their Applications in Hybrid Breeding: Progress and Perspectives.
- CRISPR/Cas9-based Discovery of Maize Transcription Factors Regulating Male Sterility and Their Functional Conservation in Plants.
- Construction of a Multicontrol Sterility System for a Maize Male-sterile Line and Hybrid Seed Production basedon the ZmMs7 Gene Encoding a PHD-finger Transcription Factor.
- ZmMs25 encoding a plastid-localized fatty acyl reductase is critical for anther and pollen development in maize.
- Genome-wide analysis of maize GPAT gene family and cytological characterization and breeding application of ZmMs33/ZmGPAT6 gene.
- Map-based cloning and characterization of Zea mays male sterility33 (ZmMs33) gene, encoding a glycerol-3-phosphate acyltransferase.
- . Phylogeny and Functions of LOB Domain Proteins in Plants.
- Discovering and Constructing ceRNA-miRNA-Target Gene Regulatory Networks during Anther Development in Maize.
- Map-Based Cloning, Phylogenetic, and Microsynteny Analyses of ZmMs20 Gene Regulating Male Fertility in Maize.
- Genome-wide Analyses on Transcription Factors and Their Potential microRNA Regulators involved in Maize Male Fertility.
- Engineering a Trypsin-Resistant Thermophilic α-Galactosidase to Enhance Pepsin Resistance, Acidic Tolerance, Catalytic Performance, and Potential in the Food and Feed Industry.