本期精选 aBIOTECH 2022-2024年发表的 『植物-病原互作』相关文章,点击文章题目可以下载全文,欢迎学者们阅读、转发。
01
Exploiting viral vectors to deliver genome editing reagents in plants
万建民/董晓鸥团队综述植物病毒载体在基因编辑元件递送中的应用
Yilin Shen, Tao Ye, Zihan Li, Torotwa Herman Kimutai, Hao Song, Xiaoou Dong & Jianmin Wan
Fig. 4 Delivering genome editing reagents in plants using PSVs and NSVs for heritable edits
02
The RNA-binding domain of DCL3 is required for long-distance RNAi signaling
郭惠珊团队揭示DCL3蛋白参与RNAi信号系统传递的新功能
Jie Li, Bo-Sen Zhang, Hua-Wei Wu, Cheng-Lan Liu, Hui-Shan Guo & Jian-Hua Zhao
Fig. 1 Reduction of the systemic PDS silencing phenotype in the dcl3 mutant background
03
DNA methylation-dependent epigenetic regulation of Verticillium dahliae virulence in plants
段成国团队揭示DNA甲基化介导的棉花黄萎病致病新机制
Yun-Ya Chen, Chen Zhu, Jian-Hua Zhao, Ting Liu, Feng Gao, Ying-Chao Zhang & Cheng-Guo Duan
Fig. 1 VdRid and VdDnmt5 are the major DNA methyltransferase of V. dahliaev592
04
Zig, Zag, and ’Zyme: leveraging structural biology to engineer disease resistance
马文勃/Alexander J. McClelland-结构生物学助力植物抗病性的改造
Alexander J. McClelland & Wenbo Ma
Fig. 1 PvPGIP2 alters FpPG enzymatic activity to induce plant defense
05
DGS1 improves rice disease resistance by elevating pathogen-associated molecular pattern-triggered immunity
彭友良/陈倩-揭示E3连接酶DGS1介导的抗稻瘟病机制
Yu Wang, Chuan Zheng, You-liang Peng & Qian Chen
Fig. 1 DGS1 enhanced resistance to rice blast by positively regulating PTI
06
The Phantom Menace: latest findings on effector biology in the rice blast fungus
Jessie Fernandez团队综述稻瘟病菌效应因子研究进展
Jessie Fernandez
Fig. 1 M. oryzae cytoplasmic effectors involved in modulating plant immune responses
07
Shining in the dark: the big world of small peptides in plants
于洋课题组综述植物小肽“暗物质”的功能与作用机制
Yan-Zhao Feng, Qing-Feng Zhu, Jiao Xue, Pei Chen & Yang Yu
Fig. 1 Schematic of small peptides from different genomic origins
08
Deoxynivalenol accumulation and detoxification in cereals and its potential role in wheat–Fusarium graminearum interactions
罗坤课题组综述真菌毒素DON的累积与解毒及其在病害-小麦互作关系中的潜在作用
Kun Luo, Jiao Guo, Dejia He, Guangwei Li & Thérèse Ouellet
Fig. 2 The potential pathways of deoxynivalenol accumulation and detoxification in cereal plants preinfected with F. graminearum
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