个人信息
硕士生导师
Email: zhaojianli95@163.com
研究方向
果树分子生物学,西洋梨采后生物学
个人简介
2013年毕业于山东农业大学园艺专业,2019年获浙江大学果树学博士学位。博士阶段主要从事激素调控梨芽休眠分子机制研究,2019年入职鲁东大学,结合烟台当地西洋梨种植特色,现从事西洋梨采后生物学的相关研究。以第一作者或通讯作者发表SCI论文14篇。
科研项目
1. 山东省自然科学基金青年项目,ZR2021QC157,西洋梨ERF/AP2转录因子PcCBF4调控果实细胞壁降解的分子机制研究,2022-01至2024-12,主持。
2. 国家自然科学基金面上项目,32071733,细胞自我吞噬在杨树应答盐碱胁迫中的分子机制研究,2021-01至2024-12,参加。
发表论文
(1) Yang HY#, Zhang XL#, Wu R, Tang XL, Yang YQ, Fan XG, Gong HS, Grierson D, Yin XR, Li JZ*, Zhang AD*. 2024. Integrated metabolomic and transcriptomic analyses provide comprehensive new insights into the mechanism of chitosan delay of kiwifruit postharvest ripening. Postharvest Biology and Technology 210: 112746.
(2) Tian CP#, Yao RT#, Xu XF, Ai XY, Hu MY, Wang WQ, Liu XQ, Li JZ*, Zhang AD. 2024. Genome-wide characterization and expression analysis of the PavC2H2 gene family to different abiotic stress in sweet cherry (Prunus avium L.). South African Journal of Botany 171: 245-256.
(3) Dai XN#, Jiang FD#, Li QY, Yu XH, Xu XF, Cao WL, Guo TT, Song ZZ, Zhang AD, Zhong HX, Li JZ*. 2023. Transcriptome analysis for key softening-related genes in ‘Docteur Jules Guyot’ pear (Pyrus communis L.). Postharvest Biology and Technology 205: 112484.
(4) Yang HY, Li JZ*, Li XH, Wu R, Zhang XL, Fan XG, Li GT, Gong HS, Yin XR, Zhang AD*. 2023. The mechanism of gibberellins treatment suppressing kiwifruit postharvest ripening processes by transcriptome analysis. Postharvest Biology and Technology 198: 112223.
(5) Li JZ#*, Dai XN#, Li QY, Jiang FD, Xu XF, Guo TT, Zhang HX*. Low temperatures inhibit the pectin degradation of ‘Docteur Jules Guyot’ pear (Pyrus communis L.). 2023. International Journal of Biological Macromolecules 242: 124719.
(6) Li JZ#, Guo TT#, Guo ML, Dai XN, Xu XF, Li YJ, Song ZZ, Liang MX*. 2023. Exogenous BR delayed peach fruit softening by inhibiting pectin degradation enzyme genes. Frontiers in Plant Science 14: 1226921.
(7) Guo TT#, Li JZ#, Guo ML, Yang Q, Dai XN, Qiao XQ, Song ZZ, Tian CP, Li YJ, Ge H, Cheng JS, Liang MX*. 2023. Low temperature inhibits pectin degradation by PpCBFs to prolong peach storage time. Journal of Food Science 88: 3725-3736.
(8) Dai XN#, Li QY#, Jiang FD, Song ZZ, Tang XL, Su SQ, Yao RT, Yang HY, Yang YQ, Zhang HX*, Li JZ*. 2022. Transcriptome analysis of branches reveals candidate genes involved in anthocyanin biosynthesis of ‘Red Bartlett’ pear (Pyrus communis L.). Scientia Horticulturae 305:111392.
(9) Zhang AD#, Yang HY#, Ji SJ, Tian CP, Chen N, Gong HS*, Li JZ*. 2022. Metobolome and transcriptome analyses of anthocyanin accumulation mechanisms reveal metabolite variations and key candidate genes involved in the pigmentation of Prunus tomentosa Thunb. Cherry fruit. Frontiers in Plant Science 13:938908.
(10) Song ZZ#*, Lin SZ#, Fu JY, Chen YH, Zhang HX, Li JZ*, Liang MX*. 2022. Heterologous expression of ISU1 gene from Fragaria vesca enhances plant tolerance to Fe depletion in Arabidopsis. Plant Physiology and Biochemistry 184:65-74.
(11) Li JZ#, Yan XH#, Ahmad M, Yu WJ, Song ZZ, Ni JB, Yang QS, Teng YW, Zhang HX*, Bai SL*. 2021. Alternative splicing of the dormancy-associated MADS-box transcription factor gene PpDAM1 is associated with flower bud dormancy in ‘Dangshansu’ pear (Pyrus pyrifolia white pear group). Plant Physiology and Biochemistry 166:1096-1108.
(12) Li JZ, Yan XH, Yang QS, Ma YJ, Yang B, Tian J, Teng YW*, Bai SL*. 2019. PpCBFs selectively regulate PpDAMs and contribute to the pear bud endodormancy process. Plant Molecular Biology 99: 575-586.
(13) Li JZ, Xu Y, Niu QF, He LF, Teng YW*, Bai SL*. 2018. Abscisic acid (ABA) promotes the induction and maintenance of pear (Pyrus pyrifolia White Pear Group) flower bud endodormancy. International Journal of Molecular Science. 19: 310.
(14) Ahmad M#, Li JZ# (Co-first author), Yang QS, Jamil W, Teng YW*, Bai SL*. 2019. Phylogenetic, Molecular, and Functional Characterization of PpyCBF Proteins in Asian Pears (Pyrus pyrifolia). International Journal of Molecular Science. 20: 2074.
专利
(1)滕元文、牛庆丰、王涛、杨奉霞、李建召,一种诱导梨无籽早熟的方法,2015,专利号ZL 201410057840.1。
(2)惠伟、滕元文、何炉芳、赵磊、李建召,抗坏血酸作为休眠解除促进剂在打破种子休眠中的应用,2020,专利号ZL 201810323079.X。