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个人简介

2000/9-2004/7 山东农业大学 园艺科学与工程学院 农学学士 2004/9-2009/6 山东农业大学 园艺科学与工程学院 农学博士

研究领域

植物营养基因工程;植物逆境生理与分子生物学

近期论文

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(1)Qi Qi, Zhaolai Guo, Yuanlin Liang, Kunzhi Li, Huini Xu* (2019) Hydrogen sulfide alleviates oxidative damage under excess nitrate stress through MAPK/NO signaling in cucumber. Plant Physiology and Biochemistry135:1-8 (2)Yuanlin Liang, Pan Zheng, Shun Li, Kun-zhi Li, Hui-ni Xu* (2018) Nitrate reductase-dependent NO production is involved in H2S-induced nitrate stress tolerance in tomato via activation of antioxidant enzymes. Scientia Horticulturae 229:207–214. (3)Zhaolai Guo, Xudong Sun, Huini Xu* (2018) Gateway-compatible inducible vector set for the functional analysis of transcription factors in plants. Planta 247:1261–1266 (4)Zhaolai Guo, Yuanlin Liang, Jinping Yan, En Yang, Kunzhi Li, Huini Xu* (2018) Physiological response and transcription profiling analysis reveals the role of H2S in alleviating excess nitrate stress tolerance in tomato roots. Plant Physiology and Biochemistry 124:59–69. (5)Xuegui Bai, Juan Long, Xiaozhao He, Jinping Yan, Xuanqin Chen, Yong Tan, Kunzhi Li, Limei Chen, Huini Xu* (2016) Overexpression of spinach non-symbiotic hemoglobin in Arabidopsis resulted in decreased NO content and lowered nitrate and other abiotic stresses tolerance. Scientific Reports (6)Huini Xu, Xiuling Zhao, Chuanlong Guo, Limei Chen, Kunzhi Li*(2016) Spinach 14-3-3 protein interacts with the plasma membrane H+-ATPase and nitrate reductase in response to excess nitrate stress. Plant Physiology and Biochemistry 106:187-197 (7)Pan Zheng, Xuegui Bai, Juan Long, Kunzhi Li, Huini Xu* (2016) Nitric oxide enhances the nitrate stress tolerance of spinach by scavenging ROS and RNS. Scientia Horticulturae 213: 24–33 (8) Huini Xu, Xiaozhao He, Xuanqin Chen, Juan Long, Limei Chen, Kunzhi Li* (2015) Molecular cloning and functional analysis of spinach SoSMT2 in response to excess nitrate stress. Scientia Horticulturae 184:93–100 (9)S. LI, J. P.YAN, E.YANG, X. G. BAI, J. LONG, K. Z. LI, H. N. XU* (2015)Effects of exogenous H2S on the germination of tomato seeds under nitrate stress. Journal of Horticultural Science & Biotechnology 90 (1): 39–46 (10)H.n. Xu, K.Wang, Y.n. Zhang, Q. Chen, L.m. Chen, K.z. Li* (2014). Physiological and transcriptional responses of broad bean (Vicia faba L.) leaves to aluminum stress. The Journal of Agricultual Science 152:894–905 (11)Xuegui BAI, Juan LONG, Xiaozhao HE, Shun LI, Huini XU*(2014). Molecular cloning and characterization of pathogenesis-related protein family 10 gene from spinach (SoPR10). Bioscience, Biotechnology, and Biochemistry 78(5): 780–786 (12)X. G. BAI, J. LONG, S. LI, K. Z. LI, H. N. XU*(2014). Molecular cloning and characterisation of a germin-like protein gene in spinach (SoGLP). Journal of Horticultural Science & Biotechnology 89 (5): 592–598 (13)HUINI XU, XUDONG SUN, XIAOYU YANG, QINGHUA SHI, XIUFENG WANG* (2013) Physiological responses of transgenic tobacco plants harboring the cucumber mitogen-activated protein kinase gene to nitrate stress. Turkish Journal of botany 37: 130-138 (14)Huini Xu, Xiaozhao He, Kang Wang, Limei Chen, Kunzhi Li* (2012) Identification of early nitrate stress response genes in spinach roots by suppression subtractive hybridization. Plant Mol Biol Rep 30: 633-642 (15)Huini Xu, Xudong Sun, Qinghua Shi, Fengjuan Yang, Xiaoyu Yang, Xiufeng Wang* (2012) Physiological responses of two cucumber cultivars to nitrate stress. Journal of plant nutrition 35:2167-2179 (16)Huini Xu, Xudong Sun, Xiufeng Wang*, Qinghua Shi, Xiaoyu Yang, Fengjuan Yang (2011) Involvement of a cucumber MAPK gene (CsNMAPK) in positive regulation of ROS scavengence and osmotic adjustment under salt stress. Scientia Horticulturae127: 488-493 (17)Huini Xu, Kunzhi Li, Fengjuan Yang, Qinghua Shi, Xiufeng Wang*(2010) Overexpression of CsNMAPK in tobacco enhanced seed germination under salt and osmotic stresses. Molecular Biology Reports. 37(1):3157-3163 (18)Huini Xu, Xiufeng Wang*, Xudong Sun, Qinghua Shi, Fengjuan Yang, Dongliang Du (2008) Molecular cloning and characterization of a cucumber MAP kinase gene in response to excess NO3- and other abiotic stresses. Scientia Horticulturae. 117 (1): 1-8

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