日期:
2020 年 — 2026 年
2020
2021
2022
2023
2024
2025
2026
影响因子:

Antagonistic Ghd7-OsNAC42 Complexes Modulate Carbon and Nitrogen Metabolism to Achieves Superior Quality and High Yield in Rice.

拮抗的 Ghd7-OsNAC42 复合物调节碳氮代谢,从而在水稻中实现优良品质和高产

Lou Guangming, Chen Pingli, Li Pingbo, Gao Haozhou, Xiong Jiawang, Wan Shanshan, Zheng Yuanyuan, Wang Yufu, Alam Mufid, Chen Yingnanjun, Wang Lei, Bai Jingjing, Tan Xuan, Rao Wenting, Wu Bian, Zhou Hao, Li Yanhua, Gao Guanjun, Zhang Qinglu, Xiao Jinghua, Li Xianghua, Lai Xuelei, Zhang Qifa, He Yuqing

Hsp101-1 Orchestrates Thermotolerance in Rice via Pre-Activated Transcriptional Networks and Modular Cross-Tissue Coordination

Hsp101-1通过预激活转录网络和模块化跨组织协调来调控水稻的耐热性

Yu, Hang; Jiang, Liqun; Sun, Bingrui; Liu, Qing; Mao, Xingxue; Zhang, Jing; Chen, Pingli; Chen, Wenfeng; Li, Chen; Lyu, Shuwei

Transcription factor encoding gene OsC1 regulates leaf sheath color through anthocyanidin metabolism in Oryza rufipogon and Oryza sativa

转录因子编码基因 OsC1 通过花青素代谢调控水稻(Oryza rufipogon)和栽培水稻(Oryza sativa)的叶鞘颜色。

Jiang, Liqun; Lyu, Shuwei; Yu, Hang; Zhang, Jing; Sun, Bingrui; Liu, Qing; Mao, Xingxue; Chen, Pingli; Pan, Dajian; Chen, Wenfeng; Fan, Zhilan; Li, Chen

Transcriptome and Metabolome Analysis of Rice Cultivar CBB23 after Inoculation by Xanthomonas oryzae pv. oryzae Strains AH28 and PXO99(A)

水稻品种 CBB23 接种稻黄单胞菌 AH28 和 PXO99 菌株后的转录组和代谢组分析(A)

Chen, Pingli; Wang, Junjie; Liu, Qing; Liu, Junjie; Mo, Qiaoping; Sun, Bingrui; Mao, Xingxue; Jiang, Liqun; Zhang, Jing; Lv, Shuwei; Yu, Hang; Chen, Weixiong; Liu, Wei; Li, Chen

Transcriptome Analysis of Rice Near-Isogenic Lines Inoculated with Two Strains of Xanthomonas oryzae pv. oryzae, AH28 and PXO99(A)

用两种水稻黄单胞菌致病变种AH28和PXO99(A)接种水稻近等基因系的转录组分析

Chen, Pingli; Zhang, Xing; Li, Xiaogang; Sun, Bingrui; Yu, Hang; Liu, Qing; Jiang, Liqun; Mao, Xingxue; Zhang, Jing; Lv, Shuwei; Fan, Zhilan; Liu, Wei; Chen, Wenfeng; Li, Chen

Root microbiota analysis of Oryza rufipogon and Oryza sativa reveals an orientation selection during the domestication process

对野生稻(Oryza rufipogon)和栽培稻(Oryza sativa)根系微生物群的分析揭示了驯化过程中的定向选择。

Jiang, Liqun; Ke, Da; Sun, Bingrui; Zhang, Jing; Lyu, Shuwei; Yu, Hang; Chen, Pingli; Mao, Xingxue; Liu, Qing; Chen, Wenfeng; Fan, Zhilan; Huang, Li; Yin, Sanjun; Deng, Yizhen; Li, Chen

Creation and gene expression analysis of a giant embryo rice mutant with high GABA content

构建并分析高GABA含量巨型胚水稻突变体的基因表达。

Chen, Pingli; Liu, Qing; Sun, Bingrui; Lv, Shuwei; Jiang, Liqun; Zhang, Jing; Mao, Xingxue; Yu, Hang; Chen, Yangyang; Chen, Wenfeng; Fan, Zhilan; Pan, Dajian; Li, Chen

Physiological and transcriptomic analysis of OsLHCB3 knockdown lines in rice

水稻OsLHCB3基因敲低株系的生理和转录组分析

Wang, Quanxiu; Chen, Pingli; Wang, Honglin; Chao, Shuangshuang; Guo, Wenru; Zhang, Yuxue; Miao, Chenglin; Yuan, Hongyu; Peng, Bo

The genetic basis of grain protein content in rice by genome-wide association analysis

利用全基因组关联分析研究水稻籽粒蛋白质含量的遗传基础

Chen, Pingli; Lou, Guangming; Wang, Yufu; Chen, Junxiao; Chen, Wengfeng; Fan, Zhilan; Liu, Qing; Sun, Bingrui; Mao, Xingxue; Yu, Hang; Jiang, Liqun; Zhang, Jing; Lv, Shuwei; Xing, Junlian; Pan, Dajian; Li, Chen; He, Yuqing

Natural variation in WHITE-CORE RATE 1 regulates redox homeostasis in rice endosperm to affect grain quality

WHITE-CORE RATE 1 的自然变异调节水稻胚乳中的氧化还原稳态,从而影响籽粒品质。

Wu, Bian; Yun, Peng; Zhou, Hao; Xia, Duo; Gu, Yuan; Li, Pingbo; Yao, Jialing; Zhou, Zhuqing; Chen, Jianxian; Liu, Rongjia; Cheng, Shiyuan; Zhang, Hao; Zheng, Yuanyuan; Lou, Guangming; Chen, Pingli; Wan, Shanshan; Zhou, Mingsong; Li, Yanhua; Gao, Guanjun; Zhang, Qinglu; Li, Xianghua; Lian, Xingming; He, Yuqing