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aBIOTECH | Current Issue: Volume 4 Issue 3 2023

已有 318 次阅读 2023-11-28 09:04 |个人分类:论文|系统分类:论文交流

Volume 4, Issue 3, September 2023

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DNA methylation-dependent epigenetic regulation of Verticillium dahliae virulence in plants
文章介绍:
aBIOTECH | 中国科学院分子植物卓越中心段成国团队揭示DNA甲基化介导的棉花黄萎病致病新机制


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Generating homozygous mutant populations of barley microspores by ethyl methanesulfonate treatment
文章介绍:
aBIOTECH | 上海市农科院生物所与中国农科院作科所利用小孢子技术创制大麦纯合诱变群体


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The transcription factor HBF1 directly activates expression of multiple flowering time repressors to delay rice flowering
文章介绍:
aBIOTECH | 中国农科院作科所刘军和张春雨解析HBF1调控水稻开花的新机制


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Lipidomic insights into the response of Arabidopsis sepals to mild heat stress
文章介绍:
aBIOTECH | 石建新团队揭示拟南芥萼片响应轻度热胁迫的脂肪组反应


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Shining in the dark: the big world of small peptides in plants
文章介绍:
aBIOTECH | 广东农科院于洋课题组综述植物小肽“暗物质”的功能与作用机制


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Tomato leaf curl New Delhi virus: an emerging plant begomovirus threatening cucurbit production
文章介绍:
aBIOTECH | 浙江大学杨景华教授综述新德里番茄曲叶病毒在瓜类作物中的危害


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Unlikely heroes on the long and winding road to potato inbreeding
文章介绍:
aBIOTECH 评述 | 漫长曲折马铃薯育种路上的平凡英雄


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Harnessing nanobodies to expand the recognition spectrum of plant NLRs for diverse pathogens
文章介绍:
aBIOTECH 评述 | 利用纳米抗体扩展植物NLR蛋白对病原菌的识别



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Editors-in-Chief: 

Prof. Sanwen Huang 

Prof. William John Lucas

2022 The First IF 3.6!

Indexed in  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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上一篇:特约综述 | 王宝宝/王海洋——理想株型塑造之于玉米耐密改良
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