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丁先龙

最高学位博士

职        称讲师

邮        箱:xlding2012@njau.edu.cn

                    xlding2012@163.com

办公地点理科南楼F505

研究方向:

大豆杂种优势利用研究,包括:1)大豆育性材料的挖掘和利用;2)利用高通量测序、CRISPR/Cas9基因编辑等技术开展大豆育性调控基因和耐热基因的挖掘与分子机理解析。


教育经历:

1. 2012.09–2017.06  澳门十大正规老牌网赌作物遗传育种专业硕-博连读,获博士学位

                                  导师:杨守萍 教授

2. 2008.09–2012.07  安徽科技学院生物技术专业本科,获学士学位

                    

工作经历:

1. 2023.01–至今    澳门十大正规老牌网赌,澳门十大正规老牌网赌,讲师

2. 2017.06–2022.12  南京农业大学,博士后


讲授课程:

《生物统计与试验设计I》,《生物统计与试验设计II》


科研项目:

1. 中国博士后科学基金面上项目(2020M681635),高温胁迫下miR156b-生长素调控大豆三系杂种F1雄性育性的分子机制研究,2020.09–2022.12,主持

2. 江苏省博士后科研资助计划(2021K311C),miR156b 调控气孔关闭和提高大豆苗期耐热性的分子机制研究,2021.06-2022.12,主持


代表性论文(#,共同第一作者;*,通讯作者):

1. Ding XL, Guo JF, Lv ML, Wang HJ, Sheng Y, Liu Y, Gai JY, Yang SP*. The miR156b-GmSPL2b module mediates male fertility regulation of cytoplasmic male sterility-based restorer line under high-temperature stress in soybean. Plant Biotechnology Journal, 2023, 21: 1542–1559.

2. Ding XL, Lv ML, Liu Y, Guo QL, Gai JY, Yang SP*. 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. Plant Science, 2023 (accepted).

3. Ding XL, Chen LF, Guo JF, Gai JY, Yang SP*. A small RNA of miR2119b from soybean CMS line acts as a negative regulator of male fertility in transgenic Arabidopsis. Plant Physiology and Biochemistry, 2021, 167: 210–221.

4. Ding XL, Guo QL, Li Q, Gai JY, Yang SP*. Comparative transcriptomics analysis and functional study reveal important role of high-temperature stress response gene GmHSFA2 during flower bud development of CMS-based F1 in soybean. Frontiers in Plant Science, 2020, 11: 600217.

5. Ding XL, Guo JF, Zhang QQ, Yu LF, Zhao TJ*, Yang SP*. Heat-responsive miRNAs participate in the regulation of male fertility stability in soybean CMS-based F1 under high temperature stress. International Journal of Molecular Sciences, 2021, 22, 2446.

6. Ding XL, Wang X, Li Q, Yu LF, Song QJ, Gai JY, Yang SP*. Metabolomics studies on cytoplasmic male sterility during flower bud development in soybean. International Journal of Molecular Sciences, 2019, 20: 2869.

7. Ding XL, Li JJ, Zhang H, He TT, Han SH, Li YW, Yang SP*, Gai JY*. Identification of miRNAs and their targets by high-throughput sequencing and degradome analysis in cytoplasmic male-sterile line NJCMS1A and its maintainer NJCMS1B of soybean. BMC Genomics, 2016, 17: 24.

8. Ding XL, Ruan H, Yu LF, Li Q, Song QJ, Yang SP*, Gai JY*. miR156b from soybean CMS line modulates floral organ development. Journal of Plant Biology, 2020, 63: 141–153.

9. Ding XL, Zhang H, Ruan H, Li YW, Chen LF, Wang TL, Jin L, Li XQ, Yang SP*, Gai JY*. Exploration of miRNA-mediated fertility regulation network of cytoplasmic male sterility during flower bud development in soybean. 3 Biotech, 2019, 9: 22.

10. Bai ZY#, Ding XL#, Zhang RJ, Yang YH, Wei BG, Yang SP*, Gai JY*. Transcriptome analysis reveals the genes related to pollen abortion in a cytoplasmic male-sterile soybean (Glycine max (L.) Merr.). International Journal of Molecular Sciences, 2022, 23: 12227.


专利:

1. 杨守萍,丁先龙, 李强, 郭庆玲, 盖钧镒. 大豆GmHSFA2 GmHSP20a 在增强植物开花期耐热性能中的应用. 专利号ZL202011167479.X


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