殷恒霞,博士,教授,博士生导师;2016年6月于中国科学院寒区旱区环境与工程研究所获得生态学博士学位,同年7月入职青海大学ac米兰官网中文从事科研教学工作;高寒植物极端环境适应与微生物互作研究团队负责人;2024年青海省“昆仑英才·高端创新创业人才"培养领军人才;2019年9月至2020年9月国家留学基金委资助在日本理化学研究所(RIKEN)访学;目前担任《Plant Molecular Biology Reporter》期刊副主编;《植物生态农业学报》、《BMC plant biology》等期刊审稿人。
主讲本科生《分子生态学》、《专业英语》、《微生物学》、《微生物学实验》等课程,硕士研究生《生物化学与分子生物学前沿》课程。
(1) Insights into tissue-specific and species-dependent divergence in endophytic microbial communities of two closely related halophytes Reaumuria kaschgarica and R. songarica[J]. Plant and Soil 517, 769–789(2025) (通讯作者)
(2) Tissue-specific assembly of endophytic microbiota in Agriophyllum squarrosum (L.) Moq[J]. BMC Microbiology. 2026. doi: 10.1186/s12866-026-05010-x (通讯作者)
(3) 红豆草根际可培养细菌多样性及其植物促生抗旱功能[J]. 中国生态农业学报 (中英文), 2026, 34(6): 1−14. (通讯作者)
(4) Streptomyces longbaonensis sp. nov., a novel actinomycete from an alpine meadow that enhances plant salt tolerance via antioxidative and osmotic regulation. Plant Stress. 2025, 101018(通讯作者)
(5) Genome-Wide Insights into Streptomyces Novel Species Qhu-G9 and Its Potential for Enhancing Salt Tolerance and Growth in Avena sativa L. and Onobrychis viciifolia Scop. Plants. 2025, 14, 2135. (通讯作者)
(6) Ameliorating drought resistance in Arabidopsis and alfalfa under deficit water conditions via inoculation of Bacillus tequilensis G128 and B. velezensis G138 derived from the arid environment. Plant Stress. 2025, 15,100727.(第一作者)
(7) UDP-glycosyltransferase Gene OvIF7GT from Onobrychis viciifolia Scop. discovered through IISMTA Confers Drought Tolerance to Arabidopsis thaliana. Physiologia Plantarum. 2025,177(2):e70214.(第一作者)
(8) Characterization of Bacillus pacificus G124 and its promoting role in plant growth and drought tolerance. Plants. 2024, 13, 2864.(通讯作者)
(9) Transcriptome Analysis Reveals Potential Roles of Abscisic Acid and Polyphenols in Adaptation of Onobrychis viciifolia to Extreme Environmental Conditions in the Qinghai-Tibetan Plateau. Biomolecules 2020, 10, 967.(第一作者)
(10) Evidence for miRNAs involved in the high-altitude responses of sainfoin (Onobrychis viciifolia) grown in the Qinghai-Tibetan plateau. Journal of Plant Biochemistry and Biotechnology 2022, 31, 533–544.(第一作者)
(11) The East Asian Winter Monsoon Acts as a Major Selective Factor in the Intraspecific Differentiation of Drought-Tolerant Nitraria tangutorum in Northwest China. Plants 2020, 9, 1100. (第一作者)
(12) 外源ABA对干旱胁迫下红豆草种子萌发及幼苗生理生化特性的影响.中国生态农业学报(中英文),2024,32(11),1882-1890. (通讯作者)
(13) 红豆草OvIF7GT基因克隆与表达分析[J].草业科学,2024,41(12):2917-2927. (通讯作者)
(14) 外源IAA对干旱胁迫下红豆草种子萌发及幼苗生长的影响.草地学报,2023,31(03):796-803. (通讯作者)
(15)高寒牧草红豆草OvI7OMT基因的克隆及表达分析. 分子植物育种,2023. (通讯作者)
(16) Geographical or ecological divergence between the parapatric species Ephedra sinica and E. intermedia? Plant Systematics and Evolution, 2016, 302(8): 1157-1170. (第一作者)
(17) The role of East Asian monsoon system in shaping population divergence and dynamics of a constructive desert shrub Reaumuria soongarica. Scientific Reports, 2015, 5: 15823.(第一作者)
(18)春性甘蓝型油菜BnFY34基因的克隆及序列分析.广西植物, 2018, 38(01):84-89.(通讯作者)
(19)荒漠植物红砂基因组微卫星富集文库的构建及特性[J].中国沙漠,2016,36(02):374-382.(第一作者)
(20) Chaoju Qian, Xia Yan, Hengxia Yin,et al. Adaptive signals of flowering time pathways in wild barley from Israel over 28 generations. Heredity, 2019, DOI: 10.1038/s41437-019-0264-5.
(21) Yong Shi, Xia Yan, Heng Xia Yin, et al. Divergence and hybridization in the desert plant Reaumuria soongarica. Journal of Systematics and Evolution, 2019, Doi.org/10.1111/jse.12490.
(22) Jin Xu*, Hengxia Yin, Yulong Li, Xiaojing Liu. Nitric Oxide Is Associated with Long-Term Zinc Tolerance in Solanum nigrum. Plant Physiology. 2010, 154: 1319-1334.
(23) Jin Xu*, Hengxia Yin, Lilin Yang, Zhixia Xie, Xiaojing Liu. Differential salt tolerance in seedlings derived from dimorphic seeds of Atriplex centralasiatica: from physiology to molecular analysis. Planta. 2011, 33:859–871.
(24) Jin Xu*, Hengxia Yin, Xiaojing Liu, Xia Li. Salt affects plant Cd-stress responses by modulating growth and Cd accumulation. Planta. 2010, 231:449–459.
1.高寒草地生态学研究 科学出版社 2025(副主编)
2.青海省草地资源及其可持续发展 四川民族出版社2022 (参编)
3.青海省海南藏族自治州维管植物图谱 科学出版社 2020 (参编)
4.青海省建设国家公园示范省重大问题研究 青海民族出版2020(参编)
5.青海省草原生态保护补助奖励政策绩效评价青海民族出版社 2020(参编)
申请专利
1.链霉菌Qhu-M48及其在植物抗盐中的应用(202510938374 .6)(第一发明人)
2.藤黄色单胞菌Luteimonas_sp._AS-9X6及其在植物抗旱中的应用(202511822193.3)(第一发明人)
3.一株抗旱太平洋芽孢杆菌及其应用(202410852208.X)(第一发明人)
4.一株抗旱贝莱斯芽孢杆菌及其应用(202410886016.0)(第一发明人)
5. 链霉菌 ZX181 及其在植物抗旱中的应用(2025113776146) (第一发明人)
6. 杨奇青霉菌RS4.5及其在植物抗盐中的应用(202510805529.9) (第二发明人)
7. 一株稀有放线菌及其在饲草促生和抗盐中的应用(202510777975.3) (第二发明人)
8. 一株链霉菌及其在提高牧草抗盐中的应用(202510777973.4) (第二发明人)
科技成果
1.基于多组学关联分析探索红豆草的高寒环境适应性机制,登记号:9632021J0526,第一完成人,2021年5月.
2.红豆草类黄酮代谢关键基因发掘及抗旱分子调控机制研究,第一完成人,2026.04
本课题组主要围绕干旱、低温、盐碱等高寒极端环境问题,从事高寒植物极端环境适应的生理与分子机制研究;并联合植物微生物互作机制,挖掘提高高寒植物抗逆的益生菌,探究植物微生物互作提高其逆境适应性的机制。

