[1] 国家自然科学基金青年项目:SVP-like调控鸢尾季节性生长暂停与生态休眠诱导的分子机制,2020/01-2022/12,主持
[2] 中国博士后科学基金面上项目:茉莉酸与SVP互作调控鸢尾生态休眠诱导的分子机制,2021/06-2024/02,主持
[3] 中国博士后科学基金面上项目:脱落酸与DAM互作调控鸢尾生态休眠机理研究,2019/05-2020/06,主持
[4] 浙江省教育厅一般科研项目:鸢尾IjSVL2介导茉莉酸信号调控休眠解除的作用机制,2024/10-2026/10,主持
[5] 浙江理工大学科研启动项目:鸢尾属新优种质选育及高效繁育研究,2024/03-2029/03,主持
[6] 国家自然科学基金面上项目:芍药PlOBP1参与茉莉酸信号通路调控芽生理休眠解除的分子机制,2024/01-2027/12,主要参与人
[7] 国家自然科学基金面上项目:PlDAM-PlSOC1互作调控芍药地下芽生理休眠解除的分子机制研究,2021/01-2024/12,主要参与人
[8] 浙江省自然科学基金探索项目:JAs信号转导基因经MADS-box基因介导调控杭白芍地下芽生理休眠解除的机制研究,2023/01-2025/12,主要参与人
发表论文
[1] Shao L, Xu T, Wang X, Chen X, Zhang R, Ren Z, Wu Y, Yang Q, Luo C, Zhang J, Horvath DP, Xia Y*, Li D*. Sucrose-induced transcription factor IjSUSIBA2 fine-tunes growth transition through the IjSVL2-IjFLCL1 module in evergreen irises. Plant Cell & Environment, 2025, 48(12):8928-8946.
[2] Li D*, Ji C, Shao L, Xu T, Chen X, Wang X, Zhang R, Cui Y, Zhang J, Xia Y. An efficient and environmentally friendly strategy for embryogenic callus induction and plant regeneration of Iris pseudacorus L. Journal of Plant Growth Regulation, 2025, 44, 4541–4555.
[3] Wang X, Chen X, Zhang K, Li D, Shao L, Xu T, Ren Z, Wang Q, Guo J, Zhang R, Gao C, Horvath DP, Xia Y, Zhang J. PlOBP1/PlDAM-PlSOC1 module regulates bud dormancy transition in response to low temperature. Plant Cell & Environment. 2026, 49(1):334-351.
[4] Zhang R, Wang X, Shao L, Shen K, Liu Z, Chen X, Xia Y, Zhang J*, Li D*, Feasible strategies for efficient propagation system of Paeonia lactiflora ‘Hang Baishao’: in vitro culture of embryos, Scientia Horticulturae, 2024, 326, 112726.
[5] Li D#, Lin H#, Wang X#, Bo Bi, et al., and Zhang L*. Genome and whole-genome resequencing of Cinnamomum camphora elucidate its dominance in subtropical urban landscapes. BMC Biology, 2023, 21(1), 192.
[6] Li D#, Shao L#, Zhang J, Wang X, et al., Zhang JP*, and Xia Y*. MADS-box transcription factors determine the duration of temporary winter dormancy in closely related evergreen and deciduous Iris spp. Journal of Experimental Botany, 2022, 73(5), 1429–1449.
[7] Li D#, Shao L#, Xu T, Wang X, et al., and Xia Y*, Zhang JP*. Hybrid RNA sequencing strategy for the dynamic transcriptomes of winter dormancy in an evergreen herbaceous perennial, Iris japonica. Frontiers in Genetics, 2022, 13.
[8] Li D, Xia Y, Lou J, Zhang D, Wang X, et al., and Zhang JP*. A comparative study between evergreen and deciduous daylily species reveals the potential contributions of winter shoot growth and leaf freezing tolerance to foliar habits. Journal of Plant Growth Regulation, 2020, 39(3):1030-1045.
[8] Chen X#, Li D#, Guo J, Wang Q, et al., and Zhang JP *. Identification and analysis of the superoxide dismutase (SOD) gene family and potential roles in high-temperature stress response of herbaceous peony (Paeonia lactiflora Pall.). Antioxidants, 2024, 13(9): 1128.
[9] Shao L#, Xu T#, Wang X, Zhang R, et al., and Xia Y*, Li D*. Integrative comparative assessment of cold acclimation in evergreen and deciduous iris species. Antioxidants, 2022, 11(5), 977.
[10] Li J, Pan W, Liang J, Liu C, Li D, Yang Y, Qu L, Gazzarrini S, Yi M, Wu J, BASIC PENTACYSTEINE2 fine-tunes corm dormancy release in Gladiolus, Plant Physiology, 2023, 191(4), 2489-2505.
[11] Ren Z., Zhang D, Jiao C, Li D, et al., and Ruan Y*, Xia Y*. Comparative transcriptome and metabolome analyses identified the mode of sucrose degradation as a metabolic marker for early vegetative propagation in bulbs of Lycoris. The Plant Journal, 2022, 112(1), 115-134.
[12] Wang X#, Gao Y#, Wu X#, Wen X, Li D, et al., and Zhang C*, Zhang L*, Xia Y*. High-quality evergreen azalea genome reveals tandem duplication-facilitated low-altitude adaptability and floral scent evolution. Plant Biotechnology Journal, 2021, 19(12), 2544–2560.
[13]许曈,邵灵梅,王小斌,张润龙,张凯靖,夏宜平,张佳平*,李丹青*.多年生单子叶植物的越冬休眠研究进展[J].园艺学报,2022,49(12):2703-2721.
[14]季晨曦,邵灵梅,张娇,张佳平,夏宜平,李丹青*. 鸢尾属蝴蝶花新品种‘紫霞仙子’. 园艺学报, 2023, 50 (S2): 121-122.
[15]许曈,楼建华,史小华,夏宜平,李丹青*,张佳平*. 花菖蒲新品种‘夏日活力’. 园艺学报, 2022-11-23, 49, S2, 203-204.
[16]邵灵梅,李康,邱帅,魏建芬,楼建华,李丹青*,夏宜平*.高原鸢尾新品种‘月光精灵’.园艺学报,2022,49(S2):195-196.
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专利情况
授权专利:
[1]蝴蝶花SVP-like基因的应用及获得蝴蝶花基因沉默或敲除植株的方法, 国家发明专利,ZL 202111025324.7(1/7).
[2]蝴蝶花MYC2基因作为正调控因子在促进植物生态休眠解除的应用,国家发明专利, ZL 2024 1 1736022.4(2/9).
[3]一种蝴蝶花基因沉默体系的构建方法, 国家发明专利, 202111024072.6(5/7)。
[4]一种提高黄菖蒲愈伤组织诱导率的方法, 国家发明专利, ZL 201510512559.7(1/5).
[5]杭白芍盆花促成栽培方法, 国家发明专利, ZL 201510698370.1(2/7)
[6] 一种有效保存黄菖蒲胚性愈伤组织的方法, 国家发明专利, ZL 201510514069.0(2/5).
[7] 一种矮壮素促进德国鸢尾侧芽萌发的方法, 国家发明专利, ZL 201410448169.3(3/5).
[8] 一种植物生长延缓剂促进德国鸢尾侧芽萌发的方法, 国家发明专利, ZL 201410447184.6(3/5).
[9] 一种路易斯安娜鸢尾杂交种子萌发的方法, 国家发明专利, ZL 201310539514.X(3/5).
[10]一种植物组织培养容器,实用新型专利, ZL 201921834995.6(1/6,已转化).
植物新品种权
[1]鸢尾属植物新品种‘夏日霓裳’, 国家林业和草原局植物新品种权, 20250947(1/8).
[2]鸢尾属植物新品种‘夏日羽衣’, 国家林业和草原局植物新品种权, 20250949(1/8).
[3]鸢尾属植物新品种‘夏日紫霞’, 国家林业和草原局植物新品种权, 20250950(8/8).
[4]鸢尾属植物新品种‘夏之梵绘’, 国家林业和草原局植物新品种权, 20250943(4/7).
[5]鸢尾属植物新品种‘夏日晨曦’, 国家林业和草原局植物新品种权, 20250945(5/7).
[6]鸢尾属植物新品种‘夏日霓裳’, 国家林业和草原局植物新品种权, 20250948(4/7).
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