aBIOTECH分享 http://blog.sciencenet.cn/u/aBIOTECH

博文

aBIOTECH | 2022-2023年​『非生物胁迫』主题文章

已有 346 次阅读 2024-2-19 17:33 |个人分类:论文|系统分类:论文交流

aBIOTECH | 2022-2023年​『非生物胁迫』主题文章

图片

本期精选 aBIOTECH 2022-2023年发表的『非生物胁迫』相关文章,点击文章题目可阅读、下载全文。

 1  Review图片

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

图片

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

 2  Research Article图片

Mining salt stress-related genes in Spartina alterniflora via analyzing co-evolution signal across 365 plant species using phylogenetic profiling

李慧慧团队利用大规模进化信息和机器学习算法成功预测植物盐胁迫相关基因

Shang Gao, Shoukun Chen, Maogeng Yang, Jinran Wu, Shihua Chen & Huihui Li 

图片

Fig. 1 Evolutionary trajectories of genes related to salt-stress in selected plant species

  Research Article

图片Constitutive basis of root system architecture: uncovering a promising trait for breeding nutrient- and drought-resilient crops

Leon Kochian教授解析培育营养—抗旱性能兼顾作物的根系结构基础

Zhigang Liu, Tongfei Qin, Michaella Atienza, Yang Zhao, Hanh Nguyen, Huajin Sheng, Toluwase Olukayode, Hao Song, Karim Panjvani, Jurandir Magalhaes, William J. Lucas & Leon V. Kochian

图片

 Fig. 1 Schematic representation of root system architectures representing topsoil based and deep rooting systems

 4  Review

图片Regulation of Calvin–Benson cycle enzymes under high temperature stress

郭房庆课题组综述高温胁迫下植物光合作用-卡尔文循环关键酶调控机制

Juan-Hua Chen, Ming Tang, Xue-Qi Jin, Han Li, Li-Sha Chen, Qing-Long Wang, Ai-Zhen Sun, Yin Yi & Fang-Qing Guo 

图片

 Fig. 1 Physiological damages of high temperature stress on photosynthesis

  5  Review图片

Post-translational modification: a strategic response to high temperature in plants

阳成伟课题组综述蛋白质翻译后修饰调控植物响应高温的分子机制

Danlu Han, Zhibo Yu, Jianbin Lai, Chengwei Yang

图片

Fig. 1 The regulation of ubiquitination in high-temperature stress responses in plants

 6  Research Article

图片Lipidomic insights into the response of Arabidopsis sepals to mild heat stress

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

Zican Chen, Weronika Jasinska, Muhammad Ashraf, Leah Rosental, Jung Hong, Dabing Zhang, Yariv Brotman & Jianxin Shi

图片

Fig. 1 General overview of the de novo fatty acid synthesis and glycerolipid synthesis under severe heat stress in Arabidopsis leaves

 7  Review

图片Temperature-mediated regulation of flowering time in Arabidopsis thaliana

美国德克萨斯大学奥斯汀分校Sibum Sung团队综述温度调控拟南芥开花时间的研究进展

C. Maddie Brightbill, Sibum Sung

图片

Fig. 1 Diverse thermosensing events in plants

 8  Commentary图片

Knockout of a gene encoding a Gγ protein boosts alkaline tolerance in cereal crops

马建锋评述:基因编辑主效耐盐碱基因AT1提高作物耐盐碱性

Peitong Wang, Jian Feng Ma

图片

Fig. 1 Scheme for AT1- mediated alkaline tolerance in cereal crops



https://wap.sciencenet.cn/blog-3458049-1422218.html

上一篇:aBIOTECH | 2022-2023年​『表观遗传学』主题文章
下一篇:aBIOTECH | 2022-2023年​『植物育种』主题文章
收藏 IP: 175.169.189.*| 热度|

0

发表评论 评论 (0 个评论)

数据加载中...

Archiver|手机版|科学网 ( 京ICP备07017567号-12 )

GMT+8, 2024-5-12 01:08

Powered by ScienceNet.cn

Copyright © 2007- 中国科学报社

返回顶部