
姓名:任志彤
学历/学位:博士 Degree:Doctor
职称/职务:副教授 Title: Associate Professor
硕导/博导:硕导
研究方向:作物遗传育种 Category:Crop genetic andBreeding
师资类型:教学科研岗 Class of teachers: Teaching and Scientific Research
E-mail:renzhitong124@sicau.edu.cn
学习经历:
1. 2012.09-2018.06 中国农业大学农学院农学博士
2. 2008.09-2012.06 中国农业大学农学与生物技术学院农学学士
工作经历:
1. 2023.03–今 四川农业大学农学院 副教授
2. 2018.12-2022.11 北京大学生命科学学院/现代农学院,博士后
教学课程:
《植物生理学》、《种子检验学》、《生物信息学》等
主要研究方向:马铃薯的品质和抗逆育种
1.马铃薯品质育种(淀粉、类胡萝卜素、花青苷等)
2.马铃薯抗逆育种(高温、冷害、干旱等)
主持及参与项目:
1.国家自然科学基金,青年项目,拟南芥DNA去甲基化酶ROS1调控rDNA表达的分子机制,30万,2025-2027,在研,主持;
2.西南作物基因资源挖掘与利用国家重点实验室青年专项,一般项目,马铃薯MYB转录因子StAN1调控花青苷合成的分子机制解析,10万,2026-2029,在研,主持;
3.四川省重点实验室项目,马铃薯转录因子StMYB3调控花青苷合成的分子机制,4万,2024-2026,已结题;
4.四川省自然科学基金,青年项目,拟南芥MBD-ACD蛋白复合体调控rDNA表达的机理探究,10万,2024-2025,已结题;
5.四川省重点实验室项目,StLCYb 基因调控马铃薯类胡萝卜素合成的分子机理探究,10万,2024-2025,已结题;
6.四川农业大学引进人才科研启动项目,30万,2023-2028,在研,主持;
7.国家自然科学基金面上项目,拟南芥HIT4和HIT4L参与高温条件下染色质松散的机制和功能研究,54万2023-2026,在研,主研;
8.四川省科技教育联合基金重点项目,马铃薯根际微生物组定向重组缓解除草剂胁迫机制研究,40万,2026-2029,在研,主研;
9.四川省衔接推进乡村振兴专项,宝兴县农业科技服务体系建设项目,100万,2025-2028,在在研,主研;
10.西南作物基因资源挖掘与利用国家重点实验室开放课题,马铃薯抗盐耐旱基因SAMS表达调控机制研究记在育种中应用,5万,2024-2026,在研,主研;
发明专利:
1.植物株高相关蛋白IbCbEFP及其编码基因与应用;刘庆昌,翟红,何绍贞,赵宁,任志彤;ZL201810884103.7;
2.一种病原菌侵染马铃薯根部用培养装置;郑顺林, 马海艳,任志彤,张开勤,方小婷;ZL202421214146.1.
3.一种高产吲哚乙酸菌株MCC16及应用;郑顺林, 马海艳,张开勤,方小婷,吴超,石鑫鑫,任志彤;CN202410839481.9
4.一种用于滚珠瓶的蚊虫叮咬止痒消肿乳液及其制备方法;杨翠芹,秦耀国,刘宇,王强,郑顺林,任志彤,王西瑶,黄雪丽,余丽萍,蔡诚诚,刘丽君,董亚楠;CN202411600163.3.
5.薯类储运箱;杨翠芹, 秦耀国,王强,郑顺林,任志彤,王西瑶,黄雪丽,余丽萍,蔡诚诚,刘丽君;CN202422739313.0
品种:
“蜀彩芋1号”,第11完成人。
近期发表学术论文:
第一作者和通讯作者文章:
1.Wu, C., Fang, X.T., Liu, L.J., Zhang, Q.Y., Zhu, X., Shahzad, M.A., Liu, J.J., Zhang, K.Q., Ren, Z.T. * Zheng, S.L.* Exogenous brassinolide improves processing quality of cold-stored potato tubers by mitigating sweetening through integrated physiological and transcriptional regulation, Food Chemistry, 2026, 515, 149266. (共同通讯作者,Web of Science 高被引论文,IF:10.4, 1区TOP);
2.Shen, H., Zou. X., Li, P.H., Huang, H.L., Zheng, S.L.* Ren, Z.T.* Phase separation in plants: mechanisms, functions, and a simplified workflow for investigation. Frontiers in Plant Science, 2026, 17, 1858323.(共同通讯作者,IF:5.9, 2区);
3.Shen, H., Zhang, Q.Y., Tang, N.J., Li, P.H., Zhang, K.M., Wang, Z.S.Y., Fang, X.T., Wu, C., Wang, F., Huang, H.L., Yang, C.Q., Zhai, H., Zheng, S.L.* Ren, Z.T.* Genome-Wide Identification, Characterization and Expression Profiles of the CCD Gene Family in Potato. Agronomy, 2026, 16, 250 (共同通讯作者,IF:4.1, 2区);
4.Ma, H.Y., # Ren, Z.T., # Luo, A.H., Fang, X.T., Liu, R.L., Wu, C., Shi, X.X., Li, J.L., Lv, H.P., Sun, X.H., Zhang, K.Q., Zheng, S.L.* Self-alleviation of continuous-cropping obstacles in potato via root-exudate-driven recruitment of growth-promoting bacteria. Plant Communications. 2025. (共同第一作者,IF:13.7, 1 区 TOP,Web of Science高被引论文);
5.Fang, X.T., Li, P.H., Luo, C., Wu, C., Shi, X.X., Lan, J.B., Zhao, F., Wang, F., Zhang, K.Q., Yang, C.Q., Ren, Z.T.* Zheng, S.L.* Epiphytic bacterial consortia drive growth regulation in potato under methyl jasmonate elicitation: A leaf surface multi-omics perspective. Plant Physiology and Biochemistry, 2025, 222, 109737. (共同通讯作者,IF:6.2, 2区TOP);
6.Ren, Z.T., # Gou, R.Y., # Zhuo, W.Q., #Chen, Z.Y., # Yin, X.C., Cao, Y.X., Wang, Y., Mi, Y.J., Liu, Y.N., Wang, Y.X., Fan, L.M., Deng, X.W., Qian, W.Q.* The MBD–ACD DNA methylation reader complex recruits MICRORCHIDIA6 to regulate ribosomal RNA gene expression in Arabidopsis. The Plant Cell, 2024, 36(4), 1098-1118 (共同第一作者,IF:13.5, 1区TOP);
7.Tong, J.J., # Ren, Z.T., # Sun, L.H., # Zhou, S.X., Yuan, W., Hui, Y.F., Ci, D., Wang, W., Fan, L.M., Wu, Z., Qian, W.Q.* ALBA proteins confer thermotolerance through stabilizing HSF mRNA in cytoplasmic granules, Nature Plants, 2022, 8(7): 778-791 (共同第一作者,IF:15.0, 1区TOP, Web of Science高被引论文) ;
8.Ren, Z.T., He, S.Z, Zhou, Y.Y., Zhao, N., Jiang, T., Zhai, H., Liu, Q.C.* A sucrose non-fermenting-1-related protein kinase-1 gene, IbSnRK1, confers salt, drought and cold tolerance in sweet potato,The Crop Journal,2020,8(6):905-917 (封面文章, IF:6.7, 1区TOP) ;
9.Ren, Z.T., He, S.Z, Zhao, N., Zhai, H., Liu, Q.C.* A sucrose non-fermenting-1-related protein kinase-1 gene, IbSnRK1, improves starch content, composition, granule size, degree of crystallinity and gelatinization in transgenic sweet potato, Plant Biotechnology Journal, 2019, 17(1): 21-32 (IF:12.8, 1区TOP) ;
10.Ren, Z.T., Zhao, H.Y., He, S.Z, Zhai, H., Zhao, N., Liu, Q.C.* Overexpression of IbSnRK1 enhances nitrogen uptake and carbon assimilation in transgenic sweet potato. Journal of Integrative Agriculture, 2018, 17(2): 296-305 (IF:5.7, 1区TOP) ;
其他文章:
1.Shahzad, M.A., Bibi, N., Fang, X.T., Fan, X.Q., Huang, X.L., Zhang, K.Q., Zhu, X., Bashir. A., Ren, Z.T., Zheng, S.L.* Deciphering phosphorus acquisition and partitioning in potato: Root architecture, physio-biochemical adaptations, and tuber quality modulated by carbon quantum dots. Scientia Horticulturae, 2026, 357, 114645 (IF:4.6, 2区)
2.Wu, C., Huang, W.S., Fang, X.T., Ma, H.Y., Song, W.W., Zhang, K.Q., Ren, Z.T., Shahzad, M.A., Liu, J.J., Yang, C.Q., Zheng, S.L.* Foliar Spraying with Plant Growth Regulators Mitigate Heat Stress in Late-Planted Potatoes: Enhancing Morpho-physiological Traits, Yield, and Quality. Potato Research, 2026, 69(2): 60 (IF:3.4, 3区) ;
3.Liu, J.X., Ding, F., Zou, X., Qin, Y.G., Zheng, S.L., Ren, Z.T., Wang, Q., Yang, C.Q.* Comprehensive Evaluation of Cracking Characteristics in Sweet Potato Tubers and Screening for Crack-Tolerant Varieties, Horticulturae, 2025, 11(6): 674 (IF:3.4, 2区);
4.Li, J.C., Wang, C., Liang, W.J., Zhang, J, Jiang, C.K., Liu, Y., Ren, Z.T., Ci, D., Chang, J.J., Wang, Y.X., Han, S.L., Deng, X.W.,* Qian, W.Q.* Functional importance and divergence of plant apurinic/apyrimidinic endonucleases in somatic and meiotic DNA repair, The Plant Cell, 2023, 35(6): 2316-2331 (IF:13.5, 1区TOP) ;
5.Ma, H.Y., Li, J.J., Luo, A.H., Aihua Luo, Ren, Z.T., Yang, H.K., Fang, X.T., Shahzad M.A., Qu, H.J., Zhang, K.Q., Wang, Q., Zheng, S.L.* Vanillin, a Newly Discovered Autotoxic Substance in Long-Term Potato Continuous Cropping Soil, Inhibits Plant Growth by Decreasing the Root Auxin Content and Reducing Adventitious Root Numbers, Journal of Agricultural and Food Chemistry, 2023, 71(45): 16993-17004 (IF:7.2, 1区TOP);
6.Li, J.C., Liang, W.J., Liu, Y., Ren, Z.T., Ci, D., Chang, J.J., Qian, W.Q.* The Arabidopsis ATR-SOG1 signaling module regulates pleiotropic developmental adjustments in response to 3'-blocked DNA repair intermediates, The Plant Cell, 2022, 34(2):852-866 (IF:13.5, 1区TOP) ;
7.Wang, Y., Liu, Y., Qu, S.F., Liang, W.J., Sun, L.H., Ci, D., Ren, Z.T., Fan, L.M.,* Qian, W.Q.* Nitrogen starvation induces genome-wide activation of transposable elements in Arabidopsis. Journal of Integrative Plant Biology, 2022, 64(12):2374-2384 (IF:12.5, 1区TOP);
8.Zhang, H., Zhang, Q., Zhai, H., Gao, S.P., Li, Y., Wang, Z., Xu, Y.T., Huo, J.X., Ren, Z.T., Zhao, N., Wang, X.F., Li, J.G., Liu, Q.C.* He, S.Z.* IbBBX24 Promotes the Jasmonic acid pathway and enhances fusarium wilt resistance in sweet potato,The Plant Cell, 2020, 32:1102-1123 (IF:13.5, 1区TOP);
9.Wang, B., Zhai, H., He, S.Z., Zhang, H., Ren, Z.T., Zhang, D.D., Liu, Q.C.* A vacuolar Na+/H+ antiporter gene, IbNHX2, enhances salt and drought tolerance in transgenic sweetpotato. Scientia Horticulturae, 2016, 201, 153-166 (IF:4.6, 2区);
10.Liu, D.G., He, S.Z., Song, X.J., Zhai, H., Liu, N., Zhang, D.D., Ren, Z.T., Liu, Q.C.* IbSIMT1, a novel salt-induced methyltransferase gene from Ipomoea batatas, is involved in salt tolerance. Plant Cell, Tissue and Organ Culture, 2015, 120, 701-715 (IF:2.8, 3区).