2020-02-21 17:14:16 浏览数:0
姓名:李夕梅
性别:女
出生年月:1986.07
学历/学位:研究生/博士
职务:无
职称:副教授
研究方向:作物遗传育种
联系电话:13589355348
电子邮箱:okliximei@163.com
2004.09-2008.07:我校,农学专业,本科/学士
2008.09-2013.06:华中农业大学,作物遗传育种,研究生/博士
2013.07-2022.12:我校,学院,讲师
2023.01-至今: 我校,学院,副教授
1、棉花纤维长度主效QTL(qFLA02)候选基因GhLTPG5的功能鉴定与调控机理解析,国家自然科学青年基金,24万,2021.01-2023.12(主持);
2、育种理论与技术研究,山东省重点研发计划(重大科技创新工程)-课题,95万,2021.12-2024.11(主持);
3、小麦耐盐相关QTLs的遗传定位,我校高层次人才基金,6万,2014.01-2016.12(主持);
4、市中区2021-2022年化肥减量增效示范技术服务,枣庄市市中区农业农村局,18万,2021.09-2023.10(主持);
5、小麦盐胁迫响应基因TaHSP70的功能鉴定和调控机理解析,国家自然科学基金面上项目,61万,2019.01-2022.12(参与);
6、大麦D型周期蛋白基因HvCYCD1调控根毛发育的分子机理解析,国家自然科学基金面上项目,58万,2022.01-2025.12(参与);
7、花生株型相关性状的生物学分析及相关QTL的图位克隆,国家自然科学基金,59万,2018.01-2021.12(参与);
8、华北平原区杂交谷子花后源库平衡特征及酶学-激素机理,国家自然科学基金,25万,2014.01-2016.12(参与);
9、小麦产业创新团队建设,山东省现代农业产业技术体系,75万,2016.05-2018.06,(参与);
10、优质小麦高效轻简栽培技术及种子加工检测技术研究,山东省农业良种工程课题,80万,2019.08-2022.08(参与);
11、小麦外源基因/染色质追踪鉴定及优异种质材料创制,山东省农业良种工程课题,60万,2019.08-2022.08(参与);
12、适宜机械化的耐盐碱优质中长绒和早熟棉花新品种选育,山东省农业良种工程课题,135万,2021.03-2024.03(参与);
13、超高产、优质、抗旱、耐盐小麦新品种选育,山东省自主创新重大关键技术项目,30万,2014.01-2018.12(参与);
14、优质作物新品种种植及病害绿色防控,山东省重大科技创新工程,100万,2019.08-2022.08(参与);
15、黄河三角洲盐碱地绿色高效种植制度研究与示范,山东省重点研发计划,50万,2016.10-2018.10(参与);
16、基于生防菌和抗病育种的小麦病害防治机理及关键技术研究,国家部委项目,30万,2022.01-2022.12(参与);
17、主要粮食作物种质创新与育种利用,教育部科技项目,10万,2021.01-2022.12(参与);
18、大黄优质高效规范化栽培及烘干技术研究,中央引导地方科技发展专项资金,20万,2021.11-2023.12(参与);
19、陇南道地药材调优生产技术体系应用与示范基地建设,青岛市科技计划科技惠民专项(对口支援),200万,2019.09-2021.09(参与);
20、新型海藻酸肥料增效技术应用与推广,青岛市科技惠民专项,30万,2022.08-2024.08(参与);
21、小麦抗旱耐盐品种选育及配套栽培技术研发,山东省高等学校青创科技支持计划,20万,2019.03-2022.03(参与);
22、小麦盐胁迫响应的可变剪接基因的克隆与鉴定,山东省高等学校科技计划,4万,2017.05-2019.12(参与);
23、弱筋小麦突变体的筛选及其候选基因的功能鉴定,我校高层次人才基金,6万,2018.09-2021.08(参与);
24、小麦盐胁迫响应基因TaNAC2L的功能鉴定及调控机理解析,山东省旱作技术重点实验室开放课题,5万,2020.01-2021.12(参与);
25、高产节水小麦新品种(系)研发及联合旱地高产攻关,泰安农科院,10万,2016.10-2018.10(参与);
26、优质专用小麦品种筛选及示范推广,青岛助农农业规划有限公司,3万,2022.11-2025.11(参与)。
四、学术成果
1、发表的学术论文
(1)Ximei Li#, Yuan Ji#, Yuting Sheng, Linshan Sheng, Weiwei Guo, Huifang Wang, Yumei Zhang*. Priming with the green leaf volatile (Z)‑3‑hexeny‑1‑yl acetate enhances drought resistance in wheat seedlings. Plant Growth Regulation, 2022, 98:477-490 (IF=3.242)
(2)Ximei Li#, Yuan Ji#, Weiwei Guo, Liping Han, and Yumei Zhang*. Non-uniform salt distribution in the root zone alleviates salt damage in wheat. Canadian Journal of Plant Science, 2021, 101: 107–118. (IF=1.375)
(3)Ximei Li, Xin Jin, Hantao Wang, Xianlong Zhang, Zhongxu Lin*. Structure, evolution, and comparative genomics of tetraploid cotton based on a high-density genetic linkage map. DNA Research, 2016, 23(3): 283-293. (IF=5.404)
(4)Ximei Li, Wenhui Gao, Huanle Guo, Xianlong Zhang, David D Fang and Zhongxu Lin*. Development of EST-based SNP and InDel markers and their utilization in tetraploid cotton genetic mapping. BMC Genomics, 2014, 15:1046. (IF=3.986)
(5)Ximei Li, DaojunYuan, Jinfa Zhang, Zhongxu Lin*, Xianlong Zhang. Genetic mapping and characteristics of genes specifically or preferentially expressed during fiber development in cotton. PLoS ONE, 2013, 8(1): e54444*. (IF=4.092)
(6)Ximei Li, Daojun Yuan, Hantao Wang, Xuemei Chen, Bin Wang, Zhongxu Lin*, Xianlong Zhang. Increasing cotton genome coverage with polymorphic SSRs as revealed by SSCP. Genome, 2012, 55(6):459-470. (IF=1.653)
(7)李夕梅,韩伟,郭卫卫,张洪生,穆平,张玉梅*. 有机肥与过磷酸钙混施对盐碱地冬小麦生长发育的影响. 沈阳农业大学学报,2018,49(3): 257-262.
(8)生林山#,韩佳一#,盛雨婷,陆峻一,纪元,张玉梅*,李夕梅*. 外源(Z)-3-己烯基乙酸酯缓解小麦盐胁迫的作用机制. 植物生理学报,2022,58 (7): 1263-1274.
(9)纪元#,盛雨婷#,林琪,李夕梅*. 小麦粒型与抗旱耐盐性相关性的研究. 山东农业科学,2021,53( 5) : 112-116.
(10)盛雨婷,生林山,陆峻一,赵爱菊*,李夕梅*. 基于形态指标和转录组的小麦抗旱与耐盐相关性分析. 山西农业科学,2021,49(12):1426-1432.
(11)陈祥萍#,宋婵媛#,李夕梅*. 旱地区域试验小麦品系的遗传多样性分析. 山东农业科学,2017,49( 3): 21-26.
(12)Gaofeng Ren, Ximei Li, Zhongxu Lin*. Mining, genetic mapping and expression analysis of EST-derived resistance gene homologs (RGHs) in cotton. BMC Plant Biology, 2014, 14:203.
(13)De Zhu, Ximei Li, Zhiwei Wang, Chunyuan You, Xinhui Nie, Jie Sun, Xianlong Zhang, Dawei Zhang* and Zhongxu Lin*. Genetic dissection of an allotetraploid interspecific CSSLs guides interspecific genetics and breeding in cotton. BMC Genomics, 2020, 21:431.
(14)Chao Shen, Ximei Li, Ruiting Zhang, Zhongxu Lin*. Genome-wide recombination rate variation in a recombination map of cotton. PLoS One, 2017, 12(11): e0188682.
(15)Hantao Wang, Ximei Li, Wenhui Gao, Xin Jin, Xianlong Zhang, Zhongxu Lin*. Comparison and development of EST–SSRs from two 454 sequencing libraries of Gossypium barbadense. Euphytica, 2014, 198:277-288.
(16)Xuemei Chen, Xin Jin, Ximei Li, Zhongxu Lin*. Genetic mapping and comparative expression analysis of transcription factors in cotton. PLoS One, 2015, 10(5): e0126150.
(17)Xiaqing Wang, Gaofeng Ren, Ximei Li, Jianli Tu, Zhongxu Lin*, Xianlong Zhang. Development and Evaluation of Intron and Insertion–Deletion Markers for Gossypium barbadense. Plant Molecular Biology Reporter, 2012, 30(3): 605-613.
(18)Weiwei Guo, Liping Han, Ximei Li, Huifang Wang, Ping Mu, Qi Lin, Qingchang Liu and Yumei Zhang*. Proteome and lysine acetylome analysis reveals insights into the molecular mechanism of seed germination in wheat. Scientific Reports, 2020, 10:13454。
(19)Weiwei Guo, Jiayi Han, Ximei Li, Zihan He, Yumei Zhang*Large-scale analysis of protein crotonylation reveals its diverse functions in Pinellia ternate. BMC Plant Biology,2022,22:457
(20)Le Chang, Zhiyuan Guo, Ximei Li and Ping Mu*. Genetic mapping and QTL analysis associated with Fusarium heat blight resistance at different developmental stages in wheat (Triticum aestivum L.) using recombinant inbred lines. Pakistan Journal of Botany, 2018, 50(6): 2215-2221.
(21)Hantao Wang, Ruiting Zhang, Chao Shen, Ximei Li, De Zhu, Zhongxu Lin*. Transcriptome and QTL analyses reveal candidate genes for fiber quality in Upland cotton, 2019, Crop Journal, https://doi.org/10.1016/j.cj.2019.05.002
(22)Yu Yu, Daojun Yuan, Shaoguang Liang, Ximei Li, Xiaqing Wang, Zhongxu Lin*, Xianlong Zhang. Genome structure of cotton revealed by a genome-wide SSR genetic map constructed from a BC1 population between gossypium hirsutum and G. barbadense. BMC Genomics, 2011, 12(15)
(23)Weiwei Guo, Kuohai Yu, Liping Han, Ximei Li, Huifang Wang, Yiguo Liu, Yumei Zhang*. Global profiling of alternative splicing landscape responsive to salt stress in wheat (Triticum aestivum L.). Plant Growth Regulation, 2020, https://doi.org/10.1007/s10725-020-00623-2.
(24)Hantao Wang, Cong Huang, Huanle Guo, Ximei Li, Wenxia Zhao, Baosheng Dai, Zhenhua Yan, Zhongxu Lin*. QTL mapping for fiber and yield traits in upland cotton under multiple environments. PLoS One, 2015, 10(6): e0130742.
(25)Huifang Wang, Xiaofan Han, Xiaofeng Fu, Xinling Sun, Hailong Chen, Xirui Wei, Shubin Cui, Yiguo Liu, Weiwei Guo, Ximei Li, Jiewen Xing, Yumei Zhang*Overexpression of TaLBD16-4D alters plant architecture and heading date in transgenic wheat. Frontiers in Plant Science, 2022, 13:911993
(26)韩丽萍,郭卫卫,韩晓凡,李夕梅,王会芳,张玉梅*,仇宏伟*. 利用SOM 聚类分析及主成分分析方法鉴定小麦品种萌发期耐盐性. 中国农学通报,2021,37(24):6-17.
(27)冯常辉,张胜昔,王志伟,王夏青,李夕梅. 棉花染色体单片段导入系的研究进展.湖北农业科学,2009,48(12): 3159-3162
2、授权专利
(1)李夕梅. 一种盐碱地小麦沟播模拟装置. ZL 2017 2 0046717.9,2017.08
(2)李夕梅.一种聚丙烯酰胺凝胶银染显色装置. ZL 2017 2 0009245.X,2017.09
(3)李夕梅.一种小麦抗盐剂均匀播撒装置. ZL 2016 2 1475167.4,2017.09
(4)李夕梅,穆平.一种保湿抗旱小麦育秧盘. ZL 2016 2 1467637.2,2017.07
(5)杜金哲,张玉梅,李夕梅,张守福.一种精准施肥的水肥一体化施肥机. ZL 2021 2 2186072.8,2022.04
(6)王会芳,张玉梅,刘义国,孙新灵,付晓凤,郭卫卫,李夕梅. Molecular Marker Closely Linked with Major QTL of Lateral Root Number in Wheat Seedling Stage and Application thereof. 2021106536,2021.10
(7)郭卫卫,张玉梅,贺子涵,刘荫榆,李夕梅,王会芳. Culture Method for Improing Quality of Wheat. 2021/08812,2022.05
3、获奖情况
(1)旱地冬小麦高产高效技术体系与应用,中华农业科技奖一等奖,2015.09,位次:8/20
(2)抗旱耐盐冬小麦品种“青麦6号”选育及示范推广,青岛市科技进步奖一等奖,2016.04,位次:7/15
(3)小麦亩产800公斤关键集成技术示范与推广,全国农牧渔业丰收奖,2016.12,位次:22/29
4、制定标准
(1)冬小麦机械镇压作业技术规程,DBNY3702/T 0011—2021(参与);
(2)小麦滴灌水肥一体化栽培技术规程,DBNY3702/T 0010—2021(参与);
(3)旱地小麦节水高产栽培技术规,DBNY3702/T 0012—2021(参与);
(4)特色石磨小麦面粉加工技术规程,T/SDAS 391-2022(参与);
(5)强筋冬小麦优质高效生产栽培技术规程,T/SDAS 393-2022(参与);
(6)冬小麦灌浆期耐盐性鉴定技术规程,T/SDAS 394-2022(参与);
(7)旱肥地冬小麦早深平高产栽培技术规程,T/SDAS 390—2022(参与)。
5、审定品种
青麦11号,山东省主要农作物品种审定,鲁审麦20210018(参与)
五、学术兼职
山东省科技特派员、青岛市科技特派员
六、研究生培养质量情况
2019级—1名专硕,2020级—1名专硕,2021级—1名专硕,2022级—1名专硕+1名学硕。
2019级专硕于2022年6月顺利毕业,该生共同第一作者发表SCI论文2篇,第一作者发表中文核心论文1篇,参与发表核心论文1篇。