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

The feasibility and usability of a personal health record for patients with multiple sclerosis: a 2-year evaluation study

个人健康记录在多发性硬化症患者中的可行性和可用性:一项为期2年的评估研究

van den Berg, Liselot N; Aardoom, Jiska J; Kiveron, Léone E; Botterweg, Robert D; van den Akker-van Marle, M Elske; Chavannes, Niels H; Hoitsma, Elske

A microProtein repressor complex in the shoot meristem controls the transition to flowering

茎分生组织中的微蛋白阻遏复合物控制着向开花的转变

Vandasue L Rodrigues, Ulla Dolde, Bin Sun, Anko Blaakmeer, Daniel Straub, Tenai Eguen, Esther Botterweg-Paredes, Shinyoung Hong, Moritz Graeff, Man-Wah Li, Joshua M Gendron, Stephan Wenkel

Recurrent requirement for the m(6)A-ECT2/ECT3/ECT4 axis in the control of cell proliferation during plant organogenesis

植物器官发生过程中细胞增殖调控中m(6)A-ECT2/ECT3/ECT4轴的反复需求

Arribas-Hernández, Laura; Simonini, Sara; Hansen, Mathias Henning; Paredes, Esther Botterweg; Bressendorff, Simon; Dong, Yang; Østergaard, Lars; Brodersen, Peter

Multi-level analysis of the interactions between REVOLUTA and MORE AXILLARY BRANCHES 2 in controlling plant development reveals parallel, independent and antagonistic functions

对 REVOLUTA 和 MORE AXILLARY BRANCHES 2 在控制植物发育中的相互作用进行多层次分析,揭示了它们之间平行、独立和拮抗的功能。

Hong, Shin-Young; Botterweg-Paredes, Esther; Doll, Jasmin; Eguen, Tenai; Blaakmeer, Anko; Matton, Sanne; Xie, Yakun; Skjøth Lunding, Bjørg; Zentgraf, Ulrike; Guan, Chunmei; Jiao, Yuling; Wenkel, Stephan

Light affects tissue patterning of the hypocotyl in the shade-avoidance response

光照影响下胚轴在避荫反应中的组织模式

Esther Botterweg-Paredes, Anko Blaakmeer, Shin-Young Hong, Bin Sun, Lorenzo Mineri, Valdeko Kruusvee, Yakun Xie, Daniel Straub, Delphine Ménard, Edouard Pesquet, Stephan Wenkel

Approaches to identify and characterize microProteins and their potential uses in biotechnology

微蛋白的鉴定和表征方法及其在生物技术中的潜在应用

Bhati, Kaushal Kumar; Blaakmeer, Anko; Paredes, Esther Botterweg; Dolde, Ulla; Eguen, Tenai; Hong, Shin-Young; Rodrigues, Vandasue; Straub, Daniel; Sun, Bin; Wenkel, Stephan

Heat-shock protein 40 is the key farnesylation target in meristem size control, abscisic acid signaling, and drought resistance

热休克蛋白40是分生组织大小控制、脱落酸信号传导和抗旱性中的关键法尼基化靶点。

Barghetti, Andrea; Sjögren, Lars; Floris, Maïna; Paredes, Esther Botterweg; Wenkel, Stephan; Brodersen, Peter