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

Correction: TRIP13 alters mitochondrial function and promotes bortezomib resistance in multiple myeloma

更正:TRIP13 改变线粒体功能并促进多发性骨髓瘤对硼替佐米的耐药性

Chen, Yang; Liu, Yule; Wang, Yuan; Qi, Daoda; Peng, Chengyi; Huang, Shulun; Guo, Jingjing; Xu, Zidu; Gu, Yan

Far-red light orchestrates antiviral defense in plants

远红光调控植物的抗病毒防御机制

Gong, Qian; He, Linfang; Huang, Fan; Wang, Yunjing; Xie, Jinchuan; Hong, Yiguo; Liu, Yule

Tandem kinase-NLR pairs: Novel paradigms in cereal disease resistance

串联激酶-NLR配对:谷类抗病性的新范式

Yue, Ning; Liu, Deshui; Liu, Yule

A tombus-like virus in patients with lower respiratory tract infection: an observational study based on meta-transcriptomic sequencing

下呼吸道感染患者中一种类似番茄红斑狼疮病毒的病毒:一项基于宏转录组测序的观察性研究

Ye, Run-Ze; Zhao, Jia-Qi; Xie, Hui; Zhao, Lin; Gong, Cheng; Wang, Zhen-Fei; Yue, Ning; Xia, Luo-Yuan; Song, Ke; Dong, Bao; Wang, Ning; Gao, Wan-Ying; Li, Yu-Yu; Cui, Xiao-Ming; Pang, Jiao-Jiao; Ma, De-Dong; Wang, Hao; Jiang, Jia-Fu; Liu, Yule; Feng, Ye; Jia, Na; Sun, Wen-Qing; Qi, Xiao-Peng; Du, Lu-Tao; Chen, Yuguo; Jiang, Tao; Huang, Fang; Cao, Wu-Chun

TRIP13 alters mitochondrial function and promotes bortezomib resistance in multiple myeloma

TRIP13 改变线粒体功能并促进多发性骨髓瘤对硼替佐米的耐药性

Chen, Yang; Liu, Yule; Wang, Yuan; Qi, Daoda; Peng, Chengyi; Huang, Shulun; Guo, Jingjing; Xu, Zidu; Gu, Yan

The NLR immune receptor ADR1 and lipase-like proteins EDS1 and PAD4 mediate stomatal immunity in Nicotiana benthamiana and Arabidopsis.

NLR 免疫受体 ADR1 和脂肪酶样蛋白 EDS1 和 PAD4 介导本氏烟草和拟南芥的气孔免疫

Wang Hanling, Song Susheng, Gao Shang, Yu Qiangsheng, Zhang Haibo, Cui Xiulin, Fan Jun, Xin Xiufang, Liu Yule, Staskawicz Brian, Qi Tiancong

Plant Immunity against Tobamoviruses

植物对烟草花叶病毒的免疫力

Zheng, Xiyin; Li, Yiqing; Liu, Yule

Plant Defense and Viral Counter-Defense during Plant-Geminivirus Interactions

植物-双生病毒相互作用中的植物防御和病毒反防御

Zhang, Jianhang; Ma, Mengyuan; Liu, Yule; Ismayil, Asigul

Plant virus infection disrupts vacuolar acidification and autophagic degradation for the effective infection

植物病毒感染会破坏液泡酸化和自噬降解,从而导致有效感染。

Yang, Meng; Wang, Yan; Li, Dawei; Liu, Yule

A viral protein disrupts vacuolar acidification to facilitate virus infection in plants

病毒蛋白会破坏液泡酸化,从而促进病毒感染植物。

Yang, Meng; Ismayil, Asigul; Jiang, Zhihao; Wang, Yan; Zheng, Xiyin; Yan, Liming; Hong, Yiguo; Li, Dawei; Liu, Yule