[1]Adaptive functions of defensive plant phenolics and a non-linear bee response to nectar components. Liu, F.,Chen, J.,Chai, J.,Zhang, X.,Bai, X.,He, D.,Roubik, D. W.. 2007
[2]Pollen phenolics and regulation of pollen foraging in honeybee colony. Liu, FL,Zhang, XW,Chai, JP,Yang, DR. 2006
[3]Melittopalynology and Trophic Niche Analysis of Apis cerana and Apis mellifera in Yunnan Province of Southwest China. Liu, Y. J.,Zhao, T. R.,Zhao, F. Y.,Liu, Y. J.,Zhang, X. W.,Liang, C.. 2013
[4]Identification of Varroa mites (Acari : Varroidae) infesting Apis cerana and Apis mellifera in China. Zhou, T,Anderson, DL,Huang, ZY,Huang, SX,Yao, J,Ken, T,Zhang, QW. 2004
[5]Differential physiological effects of neonicotinoid insecticides on honey bees: A comparison between Apis mellifera and Apis cerana. Li, Zhiguo,Li, Meng,He, Jingfang,Zhao, Xiaomeng,Huang, Wei-Fone,Nie, Hongyi,Zhao, Yazhou,Su, Songkun,Chaimanee, Veeranan,Zhao, Yazhou. 2017
[6]A scientific note on detection of honeybee viruses in the darkling beetle (Alphitobius diaperinus, Coleoptera: Tenebrionidae), a new pest in Apis cerana cerana colonies. Li, Zhiguo,Huang, Shaokang,Huang, Wei-fone,Geng, Haiyang,Li, Meng,Su, Songkun,Zhao, Yazhou,Chen, Yanping.
[7]New Asian types of Varroa destructor: a potential new threat for world apiculture. Navajas, Maria,Clement, Jeremy,Anderson, Denis L.,de Guzman, Lilia I.,Huang, Zachary Y.,Zhou, Ting,Le Conte, Yves.
[8]Preliminary observations on possible pathogen spill-over from Apis mellifera to Apis cerana. Forsgren, Eva,Fries, Ingemar,Shi Wei,Ding Guiling,Liu Zhiguang,Toan Van Tran,Phuong Thi Tang,Tuan Anh Truong,Tam Quyet Dinh.
[9]Characterization of gut bacteria at different developmental stages of Asian honey bees, Apis cerana. Guo, Jun,Wu, Jie,Li, Jilian,Guo, Jun,Dai, Rongguo,Luo, Wenhua,Chen, Yanping,Evans, Jay D..
[10]The Influence of Bt-Transgenic Maize Pollen on the Bacterial Diversity in the Midgut of Chinese Honeybees, Apis cerana cerana. Geng Li-li,Shu Chang-long,Song Fu-ping,Zhang Jie,Jiang Wei-yu,Lin Yi,Dai Ping-li,Zhou Ting,Lang Zhi-hong. 2013
[11]Native Honey Bees Outperform Adventive Honey Bees in Increasing Pyrus bretschneideri (Rosales: Rosaceae) Pollination. Gemeda, Tolera Kumsa,Yang, Huipeng,Huang, Jiaxing,Wu, Jie,Shao, Youquan,Wu, Wenqin. 2017
[12]Managed honeybee colony losses of the Eastern honeybee (Apis cerana) in China (2011-2014). Chen, Chao,Liu, Zhiguang,Chen, Xiao,Guo, Haikun,Wang, Huihua,Tang, Jiao,Shi, Wei,Chen, Chao,Liu, Zhiguang,Shi, Wei,Luo, Yuexiong,Xu, Zheng,Wang, Shunhai,Zhang, Xuewen,Dai, Rongguo,Gao, Jinglin.
[13]Nosema ceranae n sp (Microspora, Nosematidae), morphological and molecular characterization of a microsporidian parasite of the Asian honey bee Apis cerana (Hymenoptera, Apidae). Fries, I,Feng, F,daSilva, A,Slemenda, SB,Pieniazek, NJ. 1996
[14]Phenolics and Antioxidant Activity of Mulberry Leaves Depend on Cultivar and Harvest Month in Southern China. Zou, Yuxiao,Sun, Yuanming,Zou, Yuxiao,Liao, Shentai,Shen, Weizhi,Liu, Fan,Tang, Cuiming,Chen, Chung-Yen Oliver. 2012
[15]Different effects of extrusion on the phenolic profiles and antioxidant activity in milled fractions of brown rice. Zhang, Ruifen,Khan, Sher Ali,Chi, Jianwei,Wei, Zhencheng,Zhang, Yan,Deng, Yuanyuan,Liu, Lei,Zhang, Mingwei. 2018
[16]Particle size of insoluble dietary fiber from rice bran affects its phenolic profile, bioaccessibility and functional properties. Zhao, Guanghe,Zhang, Ruifen,Zhao, Guanghe,Zhang, Ruifen,Dong, Lihong,Huang, Fei,Tang, Xiaojun,Wei, Zhencheng,Zhang, Mingwei. 2018
[17]Phenolic Profiles and Antioxidant Activity of Litchi (Litchi Chinensis Sonn.) Fruit Pericarp from Different Commercially Available Cultivars. Li, Wu,Liang, Hong,Zhang, Ming-Wei,Zhang, Rui-Fen,Deng, Yuan-Yuan,Wei, Zhen-Cheng,Zhang, Yan,Tang, Xiao-Jun. 2012
[18]Quality evaluation of snow lotus (Saussurea): quantitative chemical analysis and antioxidant activity assessment. Qiu, Jian,Chen, Fudong,Zhao, Dexiu,Qiu, Jian,Chen, Fudong,Li, Chonghui,Zhao, Qiao,Xue, Xiaofeng,Bolat, Nuer,Wang, Xiaojun,Baima, Yuzhen,Ma, Fengshan.
[19]Lychee (Litchi chinensis Sonn.) Pulp Phenolic Extract Provides Protection against Alcoholic Liver Injury in Mice by Alleviating Intestinal Microbiota Dysbiosis, Intestinal Barrier Dysfunction, and Liver Inflammation. Xiao, Juan,Zhang, Ruifen,Liu, Lei,Huang, Fei,Deng, Yuanyuan,Ma, Yongxuan,Wei, Zhencheng,Tang, Xiaojun,Zhang, Mingwei,Zhou, Qiuyun.
[20]Characterization of Phenolic Compounds from Early and Late Ripening Sweet Cherries and Their Antioxidant and Antifungal Activities. Wang, Meng,Jiang, Nan,Wang, Yao,Jiang, Dongmei,Feng, Xiaoyuan,Wang, Meng,Jiang, Nan,Wang, Yao,Jiang, Dongmei,Feng, Xiaoyuan.