[1]Comparative proteomics analysis of pomegranate seeds on fruit maturation period (Punica granatum L.). CAO Shang-yin,Niu Juan,Cao Da,Li Haoxian,Xue Hui,Chen Lina,Zhang Fuhong,ZHAO Di-guang. 2015
[2]iTRAQ-proteomics and bioinformatics analyses of mammary tissue from cows with clinical mastitis due to natural infection with Staphylococci aureus. Huang, Jinming,Luo, Guojing,Zhang, Zijing,Wang, Xiuge,Ju, Zhihua,Qi, Chao,Zhang, Yan,Wang, Changfa,Li, Rongling,Li, Jianbin,Yin, Weijun,Zhong, Jifeng,Luo, Guojing,Zhang, Zijing,Xu, Yinxue,Moisa, Sonia J.,Loor, Juan J.,Loor, Juan J.,Moisa, Sonia J.,Loor, Juan J.. 2014
[3]A genotypic difference in primary root length is associated with the inhibitory role of transforming growth factor-beta receptor-interacting protein-1 on root meristem size in wheat. He, Xue,Fang, Jingjing,Li, Jingjuan,Qu, Baoyuan,Ren, Yongzhe,Ma, Wenying,Zhao, Xueqiang,Li, Bin,Wang, Daowen,Li, Zhensheng,Tong, Yiping,Fang, Jingjing,Li, Jingjuan,Ren, Yongzhe. 2014
[4]Comparative proteomics of peanut gynophore development under dark and mechanical stimulation. Sun, Yong,Wang, Qingguo,Li, Zhen,Hou, Lei,Liu, Wei,Dai, Shaojun,Sun, Yong.
[5]Label-free quantitative proteomics analysis of cotton leaf response to nitric oxide. Yanyan Meng,Feng Liu,Chaoyou Pang,Shuli Fan,Meizhen Song,Dan Wang,Weihua Li,Shuxun Yu.
[6]iTRAQ Protein Profile Differential Analysis between Somatic Globular and Cotyledonary Embryos Reveals Stress, Hormone, and Respiration Involved in Increasing Plant let Regeneration of Gossypium hirsutum L.. Xiaoyang Ge,Chaojun Zhang,Qianhua Wang,Zuoren Yang,Ye Wang,Xueyan Zhang,Zhixia Wu,Yuxia Hou,Jiahe Wu,Fuguang Li.
[7]Unraveling the Root Proteome Changes and Its Relationship to Molecular Mechanism Underlying Salt Stress Response in Radish (Raphanus sativus L.). Sun, Xiaochuan,Wang, Yan,Xu, Liang,Li, Chao,Zhang, Wei,Luo, Xiaobo,Jiang, Haiyan,Liu, Liwang,Sun, Xiaochuan,Sun, Xiaochuan,Wang, Yan,Xu, Liang,Luo, Xiaobo,Liu, Liwang. 2017
[8]SWATH-MS Quantitative Analysis of Proteins in the Rice Inferior and Superior Spikelets during Grain Filling. Zhu, Fu-Yuan,Xu, Xuezhong,Peng, Xinxiang,Zhu, Guohui,Zhu, Fu-Yuan,Chen, Mo-Xian,Ye, Neng-Hui,Liu, Tie-Yuan,Li, Hao-Xuan,Wang, Guan-Qun,Jin, Yu,Zhang, Jianhua,Zhu, Fu-Yuan,Ye, Neng-Hui,Zhang, Jianhua,Su, Yu-Wen,Cao, Yun-Ying,Lin, Sheng,Gu, Yong-Hai,Chan, Wai-Lung,Lo, Clive. 2016
[9]Proteomic analysis of heterosis in the leaves of sorghum-sudangrass hybrids. Han, Pingan,Lu, Xiaoping,Dong, Jing,Xue, Chunlei,Mi, Fugui,Li, Jianke,Han, Bin,Zhang, Xiaoyu. 2016
[10]Twenty-six circulating antigens and two novel diagnostic candidate molecules identified in the serum of canines with experimental acute toxoplasmosis. Xue, Junxin,Xiao, Yan,Huang, Kehe,Xue, Junxin,Jiang, Wei,Chen, Yongjun,Liu, Yingchun,Zhang, Huajing,Wang, Quan,Qiao, Yuanbiao. 2016
[11]Identification and Characterization of a Glyoxalase I Gene in a Rapeseed Cultivar with Seed Thermotolerance. Yan, Guixin,Lv, Xiaodan,Gao, Guizhen,Li, Feng,Li, Jun,Qiao, Jiangwei,Xu, Kun,Chen, Biyun,Wang, Limin,Xiao, Xin,Wu, Xiaoming. 2016
[12]iTRAQ-based quantitative proteomic analysis of longissimus muscle from growing pigs with dietary supplementation of non-starch polysaccharide enzymes. Zhang, Ji-ze,Gao, Yang,Lu, Qing-ping,Sa, Ren-na,Zhang, Hong-fu,Gao, Yang. 2015
[13]The Difference of Physiological and Proteomic Changes in Maize Leaves Adaptation to Drought, Heat, and Combined Both Stresses. Zhao, Feiyun,Zhao, Yulong,Wang, Wei,Yang, Hao,Tai, Fuju,Li, Chaohai,Hu, Xiuli,Zhang, Dayong. 2016
[14]Association of extracellular dNTP utilization with a GmPAP1-like protein identified in cell wall proteomic analysis of soybean roots. Wu, Weiwei,Lin, Yan,Liu, Pandao,Chen, Qianqian,Tian, Jiang,Liang, Cuiyue,Liu, Pandao. 2018
[15]Proteome Comparison of Hypopharyngeal Gland Development between Italian and Royal Jelly-Producing Worker Honeybees (Apis mellifera L). Li Jianke,Feng Mao,Begna, Desalegn,Fang Yu,Zheng Aijuan. 2010
[16]A comparative proteomics approach to detect unintended effects in transgenic Arabidopsis. Wang, Hua,Li, Linchuan,Qu, Li-Jia,Lv, Jun,Peng, Yufa. 2009
[17]Proteomic profile and toxicity pathway analysis in zebrafish embryos exposed to bisphenol A and di-n-butyl phthalate at environmentally relevant levels. Dong, Xing,Qiu, Xuchun,Xu, Hai,Wu, Xiangyang,Qiu, Xuchun,Meng, Shunlong,Yang, Ming. 2018
[18]Analysis of differentially expressed proteins between the spinetoram-susceptible and -resistant strains of Plutella xylostella (L.). Feng, Xia. 2017
[19]Identification of cold-stress responsive proteins in Anabasis aphylla seedlings via the iTRAQ proteomics technique. Wang, Tingting,Wang, Mei,Chu, Guangming,Ye, Chunxiu,Ye, Chunxiu. 2017
[20]iTRAQ-based proteomic profiling of granulosa cells from lamb and ewe after superstimulation. Lin, Jiapeng,Lin, Jiapeng,Wu, Yangsheng,Han, Bing,Chen, Ying,Wang, Liqin,Li, Xiaolin,Liu, Mingjun,Huang, Juncheng. 2017