Xianlong Ding
xlding2012@163.com
Chinese, English
Jiangsu
Nanjing Agricultural University
Agriculture
  • 2014.9-2017.6 PhD in Crop Genetics and Breeding, Nanjing Agricultural University
  • 2008.9-2012.12 Bachelor in Biotechnology, Anhui Science and Technology University
  • 2019.7-2022.12 Postdoctoral Researcher in Crop Science, Nanjing Agricultural University
  • 2017.6-2019.6 Postdoctoral Researcher in Biology, Nanjing Agricultural University
Utilization of soybean hybrid vigor
Exploration and utilization of soybean fertility materials
Gene editing technologies for soybean fertility and heat tolerance
  • Overexpression of GmNF-YA14 produced multiple phenotypes in soybean, Wang Tanliu et al., 2023
  • The miR156b-GmSPL2b module mediates male fertility regulation of cytoplasmic male sterility-based restorer line under high-temperature stress in soybean, Ding Xianlong et al., 2023
  • A small heat shock protein GmHSP18.5a improves the male fertility restorability of cytoplasmic male sterility-based restorer line under high temperature stress in soybean, Ding Xianlong et al., 2023
  • Transcriptome Analysis Reveals the Genes Related to Pollen Abortion in a Cytoplasmic Male-Sterile Soybean (Glycine max (L.) Merr.), Bai Zhiyuan et al., 2022
  • Exploration of miRNA-mediated fertility regulation network of cytoplasmic male sterility during flower bud development in soybean, Ding Xianlong et al., 2019
  • Differential proteomics analysis to identify proteins and pathways associated with male sterility of soybean using iTRAQ-based strategy, Li Jiajia et al., 2016
Soybean Hybrid Vigor Fertility Gene Editing Crispr/Cas9 Heat Tolerance Molecular Mechanisms High-Throughput Sequencing Male Fertility Cytoplasmic Male Sterility

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