未登录
分享
收藏
分享
收藏
分享
收藏
分享
收藏
分享
收藏
分享
收藏
分享
收藏Genomic and Transcriptomic Analyses Identify Two Key Glycosyltransferase Genes alhH and alhK of Exopolysaccharide Biosynthesis in Pantoea alhagi NX-11
He, Kun; Shi, Xiaolong; Tao, Zhongming; Hu, Xing; Sun, Liang; Wang, Rui; Gu, Yian; Xu, Hong; Qiu, Yibin; Lei, Peng
分享
收藏
分享
收藏Optimized nitrogen application ameliorates the photosynthetic performance and yield potential in peanuts as revealed by OJIP chlorophyll fluorescence kinetics
Guo, Pei; Ren, Jingyao; Shi, Xiaolong; Xu, Anning; Zhang, Ping; Guo, Fan; Feng, Yuanyuan; Zhao, Xinhua; Yu, Haiqiu; Jiang, Chunji
分享
收藏
分享
收藏The determination of peanut (Arachis hypogaea L.) pod-sizes during the rapid-growth stage by phytohormones
Lv, Zhenghao; Zhou, Dongying; Shi, Xiaolong; Ren, Jingyao; Zhang, He; Zhong, Chao; Kang, Shuli; Zhao, Xinhua; Yu, Haiqiu; Wang, Chuantang
分享
收藏Comparative physiological and coexpression network analyses reveal the potential drought tolerance mechanism of peanut
Ren, Jingyao; Guo, Pei; Zhang, He; Shi, Xiaolong; Ai, Xin; Wang, Jing; Jiang, Chunji; Zhao, Xinhua; Liu, Xibo; Yu, Haiqiu
分享
收藏Comparative physiological and transcriptomic analyses reveal key regulatory networks and potential hub genes controlling peanut chilling tolerance
Zhang, He; Jiang, Chunji; Lei, Jingna; Dong, Jiale; Ren, Jingyao; Shi, Xiaolong; Zhong, Chao; Wang, Xiaoguang; Zhao, Xinhua; Yu, Haiqiu
分享
收藏LncRNA-mediated ceRNA networks provide novel potential biomarkers for peanut drought tolerance
Ren, Jingyao; Jiang, Chunji; Zhang, He; Shi, Xiaolong; Ai, Xin; Li, Rengyuan; Dong, Jiale; Wang, Jing; Zhao, Xinhua; Yu, Haiqiu
分享
收藏An Advanced Lipid Metabolism System Revealed by Transcriptomic and Lipidomic Analyses Plays a Central Role in Peanut Cold Tolerance
Zhang, He; Jiang, Chunji; Ren, Jingyao; Dong, Jiale; Shi, Xiaolong; Zhao, Xinhua; Wang, Xiaoguang; Wang, Jing; Zhong, Chao; Zhao, Shuli; Liu, Xibo; Gao, Shibo; Yu, Haiqiu
分享
收藏
分享
收藏
分享
收藏
分享
收藏
分享
收藏