aBIOTECH | 2022-2024年『表观遗传学』主题精选

文摘   2024-08-08 15:06   北京  


本期精选 aBIOTECH 2022-2024年发表的『表观遗传学』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。

1

Epigenetic regulation of thermomorphogenesis in Arabidopsis thaliana

曹晓风课题组综述表观遗传调控拟南芥热形态建成的研究进展

Yifeng Hou, Yan Yan & Xiaofeng Cao

Fig. 1 Roles of histone modififications and histone variants in regulating thermomorphogenesis in Arabidopsis thaliana

2

Epigenetic regulation of plant immunity: from chromatin codes to plant disease resistance

段成国课题组综述植物免疫调控中的表观遗传机制

Si-Si Xie & Cheng-Guo Duan

 Fig. 1 Pathogen-triggered transcriptional reprogramming in the plant immune response

3

Pepino mosaic virus antagonizes plant m6A modification by promoting the autophagic degradation of the m6A writer HAKAI

李方方/周雪平团队揭示m6A修饰介导的抗病毒与细胞自噬途径的互作

Hao He, Linhao Ge, Zhaolei Li, Xueping Zhou & Fangfang Li 

 Fig. 2 SlHAKAI interacts with PepMV RdRP

4

Recent advances in understanding of the epigenetic regulation of plant regeneration

肖军课题组综述植物再生过程中的表观调控

Xuemei Liu, Kehui Zhu & Jun Xiao

Fig. 1 Roles of epigenetic regulators in plant regeneration


5

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


6

Two H3K36 methyltransferases differentially associate with transcriptional activity and enrichment of facultative heterochromatin in rice blast fungus

陶增团队揭示病原真菌组蛋白修饰H3K36两个甲基转移酶介导不同转录活性的分子机制

Mengting Xu, Ziyue Sun, Huanbin Shi, Jiangnan Yue, Xiaohui Xiong, Zhongling Wu, Yanjun Kou & Zeng Tao

Fig. 2 Ash1 and Set2 are responsible for the full activity of H3K36me2/3 in M. oryzae


7

Transcriptome-wide N6-methyladenosine (m6A) methylation in soybean under Meloidogyne incognita infection
Xue Han, Qianqian Shi, Ziyi He, Wenwen Song, Qingshan Chen, Zhaoming Qi
Fig. 2 Overview of the m6A methylome and transcriptome of soybean roots under M. incognita infection (Mi) and control (CK) conditions





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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.

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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。
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