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

Three-dimensional phenotyping: Technological advances and applications in genomics-assisted crop breeding

三维表型分析:基因组辅助作物育种中的技术进步与应用

Yang, Ningyuan; He, Yong; Gouda, Mostafa; Huang, Zhenyu; Cao, Runzhou; Shi, Yongqiang; Chen, Yuefeng; Tang, Yu; Yang, Yong; Hu, Zhangjian; Peng, Cheng; Feng, Xuping

Manipulating the Light Systemic Signal HY5 Greatly Improve Fruit Quality in Tomato.

调控光系统信号HY5可显著提高番茄果实品质

Wang Jiachun, Li Xiaomeng, Li Jiajia, Dong Han, Hu Zhangjian, Xia Xiaojian, Yu Jingquan, Zhou Yanhong

ERF.D2 negatively controls drought tolerance through synergistic regulation of abscisic acid and jasmonic acid in tomato.

ERF.D2 通过协同调节番茄中的脱落酸和茉莉酸来负调控其耐旱性

Zhu Changan, Li Xinyan, Zhang Min, Wang Shuwen, Jing Beiyu, Hu Chaoyi, Thomas Hannah Rae, Zhou Yanhong, Yu Jingquan, Hu Zhangjian

Multi-Time Point Transcriptome Analysis and Functional Validation Revealed Bol4CL41 Negatively Regulates Black Rot Resistance in Cabbage

多时间点转录组分析和功能验证揭示Bol4CL41负调控甘蓝黑腐病抗性

Ma, Hongxue; Deng, Siping; Kong, Congcong; Zhang, Yulun; Zhao, Tong; Ji, Jialei; Wang, Yong; Zhang, Yangyong; Zhuang, Mu; Yang, Limei; Lebedeva, Marina; Taranov, Vasiliy; Artemyeva, Anna M; Fang, Zhiyuan; Yu, Jingquan; Hu, Zhangjian; Lv, Honghao

Plant N-acylethanolamines play a crucial role in defense and its variation in response to elevated CO(2) and temperature in tomato

植物N-酰基乙醇胺在番茄的防御中起着至关重要的作用,并且其防御能力会随着CO₂浓度升高和温度升高而发生变化。

Hu, Zhangjian; Shi, Junying; Feng, Shuxian; Wu, Xiaodan; Shao, Shujun; Shi, Kai

Correction: The novel leucine-rich repeat receptor-like kinase MRK1 regulates resistance to multiple stresses in tomato

更正:新型富含亮氨酸重复序列的受体样激酶MRK1调控番茄对多种胁迫的抗性

Ma, Qiaomei; Hu, Zhangjian; Mao, Zhuo; Mei, Yuyang; Feng, Shuxian; Shi, Kai

Rosmarinic Acid Delays Tomato Fruit Ripening by Regulating Ripening-Associated Traits

迷迭香酸通过调节成熟相关性状延缓番茄果实成熟

Zhu, Changan; Wu, Shaofang; Sun, Ting; Zhou, Zhiwen; Hu, Zhangjian; Yu, Jingquan

A Novel Transcriptome Integrated Network Approach Identifies the Key Driver lncRNA Involved in Cell Cycle With Chromium (VI)-Treated BEAS-2B Cells

一种新型转录组整合网络方法鉴定出参与六价铬处理的BEAS-2B细胞细胞周期的关键驱动lncRNA

Pai Zheng ,Yulin Kang ,Shuo Han ,Huimin Feng ,Feizai Ha ,Changmao Long ,Di Zhou ,Guiping Hu ,Zhangjian Chen ,Zengmiao Wang ,Tiancheng Wang ,Guang Jia