[1] Chang, J., Li, X., Fu, W., Wang, J., Yong, Y., Shi, H., Ding, Z., Kui, H., Gou, X., He, K.,Li, J.*(2019) Asymmetric distribution of cytokinins determines root hydrotropism in Arabidopsis thaliana.Cell Research29(12), 984-993.
[2] Chen, W., Lv, M., Wang, Y., Wang, P., Cui, Y., Li., M., Wang, R., Gou, X.,Li., J.*(2019) BES1 is activated by EMS1-TPD1-SERK1/2-mediated signaling pathway to control tapetum development in Arabidopsis thaliana.Nature Communications10, 4164.
[3] Zhou, Y., Xun, Q., Zhang, D., Lv, M., Ou, Y., andLi, J.*(2019) TCP transcription factors associate with PHYTOCHROME INTERACTING FACTOR 4 and CRYPTOCHROME 1 to regulate thermomorphogenesis in Arabidopsis thaliana.iScience15, 600-610.
[4] Li H.-Y., Liu X.-L., Liu Y.-T., Jia Z.-K., Filep J.G., Potempa L.A.,Ji S.-R.*,Wu Y.*(2019) Matrix sieving-enforced retrograde transcytosis regulates tissue accumulation of C-reactive protein.Cardiovascular Research, 115(2): 440-452.
[5] Zhang L., Shen Z.-Y., Wang K., Li W., Shi J.-M., Osoro E.K., Ullah N., Zhou Y.,Ji S.-R.*(2019) C-reactive protein exacerbates epithelial-mesenchymal transition through Wnt/b-catenin and ERK signaling in streptozocin-induced diabetic nephropathy.FASEB Journal, 33(5): 6551-6563.
[6] Khan, A., Salama, E. S., Chen, Z., Ni, H., Zhao, S., Zhou, T., ... &Li, X.(2019). A novel biosensor for zinc detection based on microbial fuel cell system.Biosensors and Bioelectronics, 147, 111763.
[7] Yan, H., Ni, H., Yang, Y., Shan, C., Yang, X.,Li, X., ... & Tang, Y. (2019). Smart nanoprobe based on two-photon sensitized terbium-carbon dots for dual-mode fluorescence thermometer and antibacterial.Chinese Chemical Letters.
[8] Salama, E. S., Jeon, B. H., Kurade, M. B., Patil, S. M., Usman, M., Li, X., & Lim, H. (2020). Enhanced anaerobic co-digestion of fat, oil, and grease by calcium addition: Boost of biomethane production and microbial community shift.Bioresource technology, 296, 122353
[9] Wang, J., Zhao, S., Kakade, A., Kulshreshtha, S., Liu, P., & Li, X. (2019). A Review on Microbial Electrocatalysis Systems Coupled with Membrane Bioreactor to Improve Wastewater Treatment.Microorganisms, 7(10), 372
[10] Yu, Z., Han, H., Feng, P., Zhao, S., Zhou, T., Kakade, A., ... & Li, X. (2019). Recent advances in the recovery of metals from waste through biological processes.Bioresource Technology, 122416
[11] Zhang, K., Xu, R., Abomohra, A. E. F., Xie, S., Yu, Z., Guo, Q., ... & Li, X. (2019). A sustainable approach for efficient conversion of lignin into biodiesel accompanied by biological pretreatment of corn straw.Energy Conversion and Management, 199, 111928
[12] Liu, M., Ni, H., Yang, L., Chen, G., Yan, X., Leng, X., ... & Li, X. (2019). Pretreatment of swine manure containing β-lactam antibiotics with whole-cell biocatalyst to improve biogas production.Journal of Cleaner Production, 240, 118070
[13] Salama, E. S., Govindwar, S. P., Khandare, R. V., Roh, H. S., Jeon, B. H., & Li, X. (2019). Can Omics Approaches Improve Microalgal Biofuels under Abiotic Stress?Trends in plant science.
[14] Tian, X., Yu, Z., Feng, P., Ye, Z., Li, R., Liu, J., ... & Li, X. (2019). Lactobacillus plantarum TW1-1 alleviates diethylhexylphthalate-induced testicular damage in mice by modulating gut microbiota and decreasing inflammation.Frontiers in cellular and infection microbiology, 9, 221
[15] Liu, M., Lu, X., Khan, A., Ling, Z., Wang, P., Tang, Y., ... & Li, X. (2019). Reducing methylmercury accumulation in fish using Escherichia coli with surface-displayed methylmercury-binding peptides.Journal of hazardous materials,367, 35-42
[16] Liu, M., Kakade, A., Liu, P., Wang, P., Tang, Y., & Li, X. (2019). Hg2+-binding peptide decreases mercury ion accumulation in fish through a cell surface display system.Science of The Total Environment, 659, 540-547
[17] Ji, J., Kakade, A., Zhang, R., Zhao, S., Khan, A., Liu, P., & Li, X. (2019). Alcohol ethoxylate degradation of activated sludge is enhanced by bioaugmentation with Pseudomonas sp. LZ-B.Ecotoxicology and environmental safety, 169, 335-343
[18] Jiang, Y., Khan, A., Huang, H., Tian, Y., Yu, X., Xu, Q., ... & Deng, L. (2019). Using nano-attapulgite clay compounded hydrophilic urethane foams (AT/HUFs) as biofilm support enhances oil-refinery wastewater treatment in a biofilm membrane bioreactor.Science of the Total Environment, 646, 606-617
[19] Han, H., Rafiq, M. K., Zhou, T., Xu, R., Mašek, O., &Li, X.(2019). A critical review of clay-based composites with enhanced adsorption performance for metal and organic pollutants.Journal of hazardous materials, 369, 780-796
[20] Khan, A., Chen, Z., Zhao, S., Ni, H., Pei, Y., Xu, R., ... & Li, X. (2019). Micro-aeration in anode chamber promotes p-nitrophenol degradation and electricity generation in microbial fuel cell.Bioresource technology, 285, 121291
[21] Yan, H., Ni, H., Jia, J., Shan, C., Zhang, T., Gong, Y., ... & Tang, Y. (2019). Smart All-in-One Thermometer-Heater Nanoprobe Based on Postsynthetical Functionalization of a Eu (III)-Metal–Organic Framework.Analytical chemistry, 91(8), 5225-5234
[22] Guo, Q., Majeed, S., Xu, R., Zhang, K., Kakade, A., Khan, A., ... & Li, X. (2019). Heavy metals interact with the microbial community and affect biogas production in anaerobic digestion: A review.Journal of environmental management, 240, 266-272.
[23] Chen, X., Ding, Z. T., Kakade, A., Ye, Z., Li, R., Feng, P. Y., ... & Liu, P. (2019). Current Status and Development of Remediation for Heavy Metals in China.Applied Environmental Biotechnology, 4(1), 30-43.
[24] Yun, H., Liang, B., Kong, D., Li, X., & Wang, A. (2019). Fate, risk and removal of triclocarban: a critical review.Journal of Hazardous Materials, 121944.
[25] Liang, B., Yun, H., Kong, D., Ding, Y., Li, X., Vangnai, A. S., & Wang, A. (2020). Bioaugmentation of triclocarban and its dechlorinated congeners contaminated soil with functional degraders and the bacterial community response.Environmental research, 180, 108840.
[26] Malik, K., Salama, E. S., Kim, T. H., & Li, X. (2020). Enhanced ethanol production by Saccharomyces cerevisiae fermentation post acidic and alkali chemical pretreatments of cotton stalk lignocellulose.International Biodeterioration & Biodegradation, 147, 104869.
[27] Salama, E. S., Jeon, B. H., Kurade, M. B., Patil, S. M., Usman, M., Li, X., & Lim, H. (2020). Enhanced anaerobic co-digestion of fat, oil, and grease by calcium addition: Boost of biomethane production and microbial community shift.Bioresource technology, 296, 122353.
[28] Arif, M., Bai, Y., Usman, M., Jalalah, M., Harraz, F. A., Al-Assiri, M. S., ... &Zhang, C. (2019). Highest accumulated microalgal lipids (polar and non-polar) for biodiesel production with advanced wastewater treatment: Role of lipidomics.Bioresource technology,122299.
[29] Minrui Liu, Pengya Feng, Apurva Kakade, LingYang, Gang Chen, Xiaojun Yan, Hongyuhang Ni, Pu Liu, Saurabh Kulshreshtha, Abd El-Fatah Abomohra, Xiangkai Li (2020). Reducing residual antibiotic levels in animal feces using intestinal Escherichia coli with surface-displayed erythromycin esterase.Journal of Hazardous Materials, 122032.
[30] Heng, Y#,Lin, F.#,Yan, T., Lan H., Zhou H., Zhao X., Jiang, Y. Xu, D., Deng, X.W. (2019) B-box containing protein BBX30 and BBX31, acting downstream of HY5, negatively regulate photomorphogenesis in Arabidopsis.Plant Physiology180, 497-508.(#co-first author).
[31] Li, H., Cai, Z., Wang, X., Li, M., Cui, N., He, K., Yi, J., Tax, F.E., Hou, S., Li, J.,Gou, X*. (2019). SERK receptor-like kinases control division patterns of vascular precursors and ground tissue stem cells during embryo development in Arabidopsis.Molecular Plant12, 984-1002.
[32] Tao Yang, Yuke Lian,Chongying Wang*(2019). Comparing and Contrasting the Multiple Roles of Butenolide Plant Growth Regulators: Strigolactones and Karrikins in Plant Development and Adaptation to Abiotic Stresses.International Journal of Molecular Science, 20(24), 6270.
[33] Khan, I., Ullah, N., Zha, L., Bai, Y., Khan, A., Zhao, T., ... & Zhang, C. (2019). Alteration of Gut Microbiota in Inflammatory Bowel Disease (IBD): Cause or Consequence? IBD Treatment Targeting the Gut Microbiome.Pathogens, 8(3), 126.
[34] Wen, J, Khan, I, Li, A, et al. Alpha‐linolenic acid given as an anti‐inflammatory agent in a mouse model of colonic inflammation.Food Sci Nutr. 2019; 7: 3873– 3882.
[35] Qian, D.*, Xiang, Y. (2019) Actin Cytoskeleton as Actor in Upstream and Downstream of Calcium Signaling in Plant Cells.International Journal of Molecular Sciences20(6), pii: E1403.
[36] Qian, D., Zhang, Z., He, J., Zhang, P., Ou, X., Li, T., Niu, L., Nan, Q., Niu, Y., He, W., An, L., Jiang, K.,Xiang, Y.*(2019) Arabidopsis ADF5 promotes stomatal closure by regulating actin cytoskeleton remodeling in response to ABA and drought stress. Journal of Experimental Botany 70(2), 435-446.
[37] Liu Y, Yan J, Qin Q, Zhang J, Chen Y, Zhao L, He K,Hou S*(2019) Type one protein phosphatases (TOPPs) contribute to the plant defense response in Arabidopsis. J Integr Plant Biol. doi:10.1111/jipb.12845
[38] Wu Z, Chen L, Yu Q, Zhou W, Gou X, Li J,Hou S*(2019) Multiple transcriptional factors control stomata development in rice. New Phytol 223 (1):220-232. doi:10.1111/nph.15766
[39] Yan J, Liu Y, Huang X, Li L, Hu Z, Zhang J, Qin Q, Yan L, He K, Wang Y,Hou S*(2019) An unreported NB-LRR protein SUT1 is required for the autoimmune response mediated by type one protein phosphatase 4 mutation (topp4-1) in Arabidopsis. Plant J 100 (2):357-373. doi:10.1111/tpj.14447
[40] Han JT, Zhang SP, Jia WJ, Zhang Z, Wang Y, He YX*. Discovery and structural analysis of a phloretin hydrolase from the opportunistic human pathogen Mycobacterium abscessus. FEBS J. 2019 May;286(10):1959-1971.
[41] Wang Y, Zhang SP, Zhang MY, Kempher ML, Guo DD, Han JT, Tao X, Wu Y, Zhang LQ, He YX*. The antitoxin MqsA homologue in Pseudomonas fluorescens 2P24 has a rewired regulatory circuit through evolution. Environ Microbiol. 2019 May;21(5):1740-1756.
[42]杨瑞珍,李浩婕,桑 毅,牟长军.(2019)染色质重塑在植物顶端分生组织中的调控作用.生命科学. Vol. 31(9):908-920.
[43] Yang, R., Yu, G., Li, H., Li, X.,Mu, C. (2020) Overexpression of Small Heat Shock Protein LimHSP16.45 inArabidopsis hsp17.6IIMutant Enhances Tolerance to Abiotic Stresses.Russian Journal of Plant Physiology.DOI: 10.1134/S102144372002017X
[44] Yue, X., Zhang, G., Zhao, Z., Yue, J., Pu, X., Sui, M., Zhan, Y., Shi, Y., Wang, Z., Meng, G., et al.(2019). A Cryophyte Transcription Factor, CbABF1, Confers Freezing, and Drought Tolerance in Tobacco. Front Plant Sci10, 699.
[45] Chen, T., Chen, J.H., Zhang, W., Yang, G, Yu, L.J., Li, D.M., Li, B., Sheng, H.M.,Zhang, H*, andAn, L.Z.*BYPASS1-LIKE, a DUF793 family protein, participates in freezing tolerance via the CBF pathway in Arabidopsis. Frontiers in plant science. 10 (2019):807
[46] Activatable Smart Nanoprobe for Sensitive Endogenous MMP2 Detection and Fluorescence Imaging Guided Phototherapies. Hu B#, Li P#, Zhang Y, Shan C, Su P, Cao J*,Cheng B*, Wu W, Liu W, Tang Y*.Inorganic Chemistry Frontiers, 2019, 6: 820-828.
[47] A Smart Photosensitizer-Cerium Oxide Nanoprobe for Highly Selective and Efficient Photodynamic Therapy.Fan Y, Li P, Hu B, Liu T, Huang Z, Shan C, Cao J,Cheng B*, Liu W, Tang Y*.Inorganic Chemistry, 2019, 58(11): 7295-7302.
[48] Wang, X., Ruan, M., Wan, Q., He, W., Yang, L., Liu, X., He, L., Yan, L.,Bi, Y.* (2020) Nitric oxide and hydrogen peroxide increase glucose‑6‑phosphate dehydrogenase activities and expression upon drought stress in soybean roots.Plant Cell Reports39:63-73.
[49] Yang, L., Wang, X., Chang, N., Nan, W., Wang, S., Ruan, M., Sun, L., Li, S.,Bi, Y.*(2019) Cytosolic glucose-6-phosphate dehydrogenase is involved in seed germination and root growth under salinity in Arabidopsis.Frontiers in Plant Science10:182.
[50] Yang, L., Wang, S., Sun, L., Ruan, M., Li, S., He, R., Zhang W., Liang, C., Wang, X.*,Bi, Y.*(2019) Ivolvement of G6PD5 in ABA response during seed germination and root growth in Arabidopsis.BMC Plant Biol19: 44.
[51] He, L., Wang, X., Feng, R., He, Q., Wang, S., Liang, C., Yan, L.,Bi, Y.*(2019) Alternative Pathway is Involved in Nitric OxideEnhanced Tolerance to Cadmium Stress in Barley Roots.Plants8: 557.
[52] Ng, J., Welvaert, A., Wen, J., Chen, R., Mathesius, U. (2019) TheMedicago truncatulaPIN2 auxin transporter mediates basipetal auxin transport but is not necessary for nodulation.Journal of Experimental Botanydoi.org/10.1093/jxb/erz510
[53] Ge, L. and Chen, R. (2019) NEGATIVE GRAVITROPIC RESPONSE OF ROOTS directs auxin flow to control root gravitropism.Plant Cell & Environment42,2372-2383 doi/pdf/10.1111/pce.13559
[54] Liu, J., Rutten, L., Limpens, E., van der Molen, T., van Velzen, R., Chen, R., Chen, Y., Geurts, R., Kohlen, W., Kulikova, O., Bisseling T. (2019) A remotecis-regulatory region is required forNINexpression in the pericycle to initiate nodule primordium formation inMedicago truncatula.Plant Cell31 (1) 68-83 http://doi.org/10.1105/tpc.18.00478
[55] Chen, R. (2019) Compound leaf development inMedicago truncatula. In: The Model LegumeMedicago truncatula. Ed. Frans J. DeBruijn (Wiley/Blackwell), DOI: 10.1002/9781119409144.ch19.
[56] Bahadur A, Jin ZC, Long XL, Jiang SJ, Zhang Q, Pan JB, Liu YJ,Feng HY*(2019) Arbuscular mycorrhizal fungi alter plant interspecific interaction under nitrogen fertilization.European Journal of Soil Biology, 93: 103094.
[57] Bahadur A, Jin ZC, Jiang SJ, Chai YX, Zhang Q, Pan JB, Liu YJ,Feng HY* (2019) Arbuscular mycorrhizal spores distribution across different ecosystems of Qinghai Tibetan plateau.Pakistan Journal of Botany, 51: 1481-1492. Mao L, Pan JB, Jiang SJ, Shi GX, Qin MS, Zhao ZG, Zhang Q, An LZ,Feng HY,Liu YJ*(2019) Arbuscular mycorrhizal fungal community recovers faster than plant community in historically disturbed Tibetan grasslands.Soil Biology and Biochemistry, 134: 131-141.
[58] Ma BB, Zhou XL, Zhang Q, Qin MS, Hu LG, Yang KN, Xie Z, Ma WB, Chen BB,Feng HY, Liu YJ, Du GZ*, Ma XJ*, Roux XL (2019) How do soil microorganisms respond to N, P and NP additions? Application of the ecological framework of (co-)limitation by multiple resources.Journal of Ecology, 107: 2329-2345.
[59] Qin MS, Shi GX, Miranda J-P, Liu YJ, Meng YM, Pan JB, Chai Y, Jiang SJ, Zhou GY,Feng HY, Zhang Q*. (2019) Revegetation differentially influences microbial trophic groups in a Qinghai-Tibetan alpine steppe ecosystem.Journal of Basic Microbiology, 59: 992-1003.
[60] Qin MS, Shi GX, Zhang Q, Meng YM, Liu YJ, Pan JB, Jiang SJ, Zhou GY,Feng HY* (2019) Arbuscular mycorrhizal fungi serve as keystone taxa for revegetation on the Tibetan Plateau.Journal of Basic Microbiology, 59: 609-620.
[61] Qin MS, Zhang Q, Pan JB, Jiang SJ, Liu YJ, Bahadur A, Peng ZL, Yang Y,Feng HY*(2019) Effect of arbuscular mycorrhizal fungi on soil enzyme activity is coupled with increased plant biomass.European Journal of Soil Science, DOI: 10.1111/ejss.12815.
[62] Hai, Y., Wang, X., Song, P., Li, J., Zhao, L., Xie, F., Tan, X., Xie, Q., Yu, L., Li, Y., Wu, Z.,Li, H*. (2019). Realgar transforming solution-induced differentiation of nb4 cell by the degradation of pml/rar α partially through the ubiquitin-proteasome pathway.Archives of Pharmacal Research42, 684–694.
[63] Hai, Y., Song, P., Wang, X., Zhao, L., Xie, Q., Li, J., Li, Y.,Li, H*. (2019). Realgar transforming solution as a novel arsenic agent with a lower risk of cardiotoxicity. Journal of Pharmacological Sciences140,162-170.
[64] Xie, Q., Yu, L., Wang, X., Wu, Z., Zhi,D, Yang, J., Guo, Z., Wu, T., Sun, Y., Zhao, L., Ding, X., Akbar, Khan.,Li, H*. (2019). A novel Realgar-Indigo naturalis formula more effectively induces apoptosis in NB4 Cells.Pakistan Journal of Pharmaceutical Sciences32, 957-962
[65] Gao, Q., Tang, D., Song, P., Zhou, J.,Li, H*. (2019). Characterisation of acylated homoserine lactone derivatives and their influence on the biofilms ofAcidithiobacillus ferrooxidansBY-3 under arsenic stress.Journal of Central South University(accepted).
[66] 李荣,冯朋雅,叶泽,陈潇,李祥锴,刘璞.肠道修复:一种利用益生菌减少重金属积累的新思路[J].微生物学通报,2019,46(07):1712-1722.
[67] 倪宏宇航,弓雨欣,李祥锴.微生物燃料电池阳极电极的新型材料与修饰方法[J].应用与环境生物学报,2019,25(04):999-1013.
[68] 吴迎,冯朋雅,李荣,陈潇,李祥锴,TAWATCHAI SUMPRADIT,刘璞.环境抗生素污染的微生物修复进展.生物工程学报,2019,35(11):2133-2150.
[69] 钱东,李盼盼,向云*.(2019)微丝骨架调控植物特有生理活动的研究进展. 中国细胞生物学报 42(3): 399-405
[70] 刘雅琼,侯岁稳*. (2019) 蛋白磷酸化修饰在植物-病原微生物互作中的作用研究进展. 植物学报, 02:168-184
[71] 张静,侯岁稳*. (2019) 蛋白质翻译后修饰在ABA信号转导中的作用. 植物学报, 03:300-315
[72] 敏云馨,侯岁稳*. (2019) 植物非生物胁迫中蛋白质磷酸化的研究进展. 分子植物育种, 00(00):1-15
[73] 张永武发思苏敏贺东鹏马文霞汪万福冯虎元*石质文物的生物风化及其防治研究进展,《应用生态学报》2019, 11:3980-3990.
[74] 武发思苏敏田恬汪万福冯虎元*文化遗产微生物研究方法进展,《微生物学杂志》2019, 3:71-83.
[75] 杨倬颖(2016级本科生)张琪冯虎元*美国大学“微生物学”课程指南对我国高校教学的启示,《高校生物学教学研究(电子版)》2019,1:56-59
[76] 郭萌(2018级本科生)徐圣喻懋椿张春林朱杰冯虎元*以“甘肃”名命名的植物研究,《甘肃林业科技》20192:1-5,15.
[77] 王春明孙英莉林昌俊王铭裕牛月李晓峰冯虎元*,粗糙脉孢菌7种子囊型归类教学探究,《遗传》2019,11:1067-1072.
[78] 武发思朱非清汪万福段育龙田恬冯虎元*日本高松冢古坟微生物病害及其防治研究概述,《文物保护与考古科学》2019,3:26-35.
[79] 陈序昉,刘聚源冯虎元*蒋跃明多刺绿绒蒿的组织培养,特种经济动植物2018,11:24-31.
[80] 李志华, 谢亲建, 王欣, 海洋,李红玉*. (2019). 雄黄微生物转化液RTS在新型牛黄解毒片中的减毒增效作用研究. 药物生物技术, 26(01), 14-18.
[81] 陈涛,张华*,安黎哲,(2019)ICE1-CBF信号通路在植物抵御低温胁迫和调控发育过程中的作用研究进展,西北植物学报,39(8): 1513-1520
PRC1.6复合体决定生殖谱系特异性基因的时空表达. 孙晓伟#,李宏阳#,王健,程博*. 遗传, 2019, 41(4): 271-284. (受邀撰稿,封面故事)