aBIOTECH | 2022-2024年『植物-病原互作』主题精选(二)

文摘   2024-07-23 15:07   北京  


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







aBIOTECH 竭诚为学者们提供以下免费服务:

▶ 论文写作指导

▶ 高质量论文图片编辑

▶ 参考文献规范化校对

▶ 对论文成果开展全球化推广

▶ 定期组织青年科学家开展学术交流

▶ 实验室招聘、团队最新成果发布等 

           

    


具体事宜请添加编辑微信或拨打010—82109925/82109903详细咨询

官方唯一投稿系统:http://www.abiotech.net

编辑部邮箱:biotech@caas.cn



Editors-in-Chief: 

Prof. Sanwen Huang 

Prof. William John Lucas

2023 IF 4.6

Indexed in  EI, ESCI, PubMed Central, SCOPUS, CSCD, Google Scholar, CNKI, Dimensions...

The aims of aBIOTECH are two-fold: First to publish seminal articles that focus the relevant research communities to achieve development of superior agroecosystems, globally. Next, to foster national and international engagement, including business, politics, and society, to build an understanding of modern agrobiotechnology/genomics-empowered strategies, which can ensure the availability of adequate nutritious foods to feed the growing global population.

Relevant topics include, but are not limited to, the followings:
TRANSGENE, GENOME EDITING TECHNOLOGIES & APPLICATIONS: Advanced transgene or genome editing technologies or methodologies; applications of transgene or genome editing in genetic improvement of agriculturally important traits, which otherwise are impossible by conventional breeding; commercialization of modified or gene-edited crops/livestock for agricultural production; safety and regulatory affairs/policies.
METABOLIC ENGINEERING: Synthesis of bioactive natural products, including study of their metabolic networks and functions, using both genetic and synthetic biology approaches.
TECHNOLOGIES FOR DISEASE CONTROL: Developmental, physiological, biochemical, and technological studies, and innovative strategies relevant to disease control in crop or livestock production systems.
GENOMICS & BREEDING: Genome, pan-genome, and metagenome studies, multi-omics data mining approaches, intelligent design breeding theory, approaches, and practice, and innovative analytical/bioinformatics tools/methods, with potential to advance crop and livestock breeding programs.
ROOT-SOIL-MICROBIOME AGROECOSYSTEMS: Targeted breeding and engineering of essential root biology and associated microbiome traits directed to enhance crop performance under sub-optimal soil abiotic and/or biotic conditions.

赞助单位

           





投稿、转载信息发布及合作等事宜请联系010-82109925/82109903

官方唯一投稿系统:http://www.abiotech.net


          

长按关注:aBIOTECH

aBIOTECH
aBIOTECH 定位于国际高影响力学术期刊,报道内容聚焦植物生物技术、农业科学及其交叉领域最新研究成果。
 最新文章