日期:
2020 年 — 2026 年
2020
2021
2022
2023
2024
2025
2026
影响因子:

The Chromatin Factor HNI9 and ELONGATED HYPOCOTYL5 Maintain ROS Homeostasis under High Nitrogen Provision

染色质因子HNI9和ELONGATED HYPOCOTYL5在高氮供应条件下维持活性氧稳态

Bellegarde, Fanny; Maghiaoui, Amel; Boucherez, Jossia; Krouk, Gabriel; Lejay, Laurence; Bach, Liên; Gojon, Alain; Martin, Antoine

Iron and ROS control of the DownSTream mRNA decay pathway is essential for plant fitness

铁和活性氧对下游 mRNA 降解途径的调控对植物适应性至关重要。

Ravet, Karl; Reyt, Guilhem; Arnaud, Nicolas; Krouk, Gabriel; Djouani, El-Batoul; Boucherez, Jossia; Briat, Jean-François; Gaymard, Frédéric

New insights into ferritin synthesis and function highlight a link between iron homeostasis and oxidative stress in plants

对铁蛋白合成和功能的新认识揭示了植物中铁稳态与氧化应激之间的联系。

Briat, Jean-Francois; Ravet, Karl; Arnaud, Nicolas; Duc, Céline; Boucherez, Jossia; Touraine, Brigitte; Cellier, Francoise; Gaymard, Frederic

The iron-responsive element (IRE)/iron-regulatory protein 1 (IRP1)-cytosolic aconitase iron-regulatory switch does not operate in plants

铁响应元件(IRE)/铁调节蛋白1(IRP1)-胞质乌头酸酶铁调节开关在植物中不起作用。

Arnaud, Nicolas; Ravet, Karl; Borlotti, Andrea; Touraine, Brigitte; Boucherez, Jossia; Fizames, Cécile; Briat, Jean-François; Cellier, Françoise; Gaymard, Frédéric

The Arabidopsis root transcriptome by serial analysis of gene expression. Gene identification using the genome sequence

通过基因表达系列分析拟南芥根转录组。利用基因组序列进行基因识别

Cécile Fizames, Stéphane Muños, Céline Cazettes, Philippe Nacry, Jossia Boucherez, Frédéric Gaymard, David Piquemal, Valérie Delorme, Thérèse Commes, Patrick Doumas, Richard Cooke, Jacques Marti, Hervé Sentenac, Alain Gojon

The Arabidopsis outward K+ channel GORK is involved in regulation of stomatal movements and plant transpiration

拟南芥外向钾离子通道GORK参与气孔运动和植物蒸腾作用的调节。

Hosy, Eric; Vavasseur, Alain; Mouline, Karine; Dreyer, Ingo; Gaymard, Frédéric; Porée, Fabien; Boucherez, Jossia; Lebaudy, Anne; Bouchez, David; Very, Anne-Aliénor; Simonneau, Thierry; Thibaud, Jean-Baptiste; Sentenac, Hervé

Pollen tube development and competitive ability are impaired by disruption of a Shaker K(+) channel in Arabidopsis

拟南芥Shaker K(+)通道的破坏导致花粉管发育和竞争力受损

Karine Mouline, Anne-Aliénor Véry, Frédéric Gaymard, Jossia Boucherez, Guillaume Pilot, Martine Devic, David Bouchez, Jean-Baptiste Thibaud, Hervé Sentenac