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

Plant photosynthesis in basil (C3) and maize (C4) under different light conditions as basis of an AI-based model for PAM fluorescence/gas-exchange correlation

以不同光照条件下罗勒(C3)和玉米(C4)的光合作用为基础,构建基于人工智能的PAM荧光/气体交换相关性模型

Pappert, Isabell; Klir, Stefan; Jokic, Luca; Ühlein, Celine; Tran Quoc, Khanh; Kaldenhoff, Ralf

Effects of high light intensity and spectral variability on maize photosynthesis and growth

高光照强度和光谱变异性对玉米光合作用和生长的影响

Pappert, Isabell; Ühlein, Celine; Jokic, Luca; Kaldenhoff, Ralf

Effect of Light Intensity and Light Spectrum of LED Light Sources on Photosynthesis and Secondary Metabolite Synthesis in Ocimum basilicum

LED光源的光强度和光谱对罗勒光合作用和次生代谢产物合成的影响

Jokic, Luca; Pappert, Isabell; Khanh, Tran Quoc; Kaldenhoff, Ralf

Impacts of Radio-Frequency Electromagnetic Field (RF-EMF) on Lettuce (Lactuca sativa)-Evidence for RF-EMF Interference with Plant Stress Responses

射频电磁场(RF-EMF)对莴苣(Lactuca sativa)的影响——射频电磁场干扰植物胁迫反应的证据

Tran, Nam Trung; Jokic, Luca; Keller, Julian; Geier, Jens Uwe; Kaldenhoff, Ralf

Metabolic engineering of ketocarotenoids biosynthetic pathway in Chlamydomonas reinhardtii strain CC-4102

莱茵衣藻CC-4102菌株中酮类胡萝卜素生物合成途径的代谢工程

Tran, Nam Trung; Kaldenhoff, Ralf

Co-Translational Insertion of Aquaporins into Liposome for Functional Analysis via an E. coli Based Cell-Free Protein Synthesis System

通过基于大肠杆菌的无细胞蛋白质合成系统将水通道蛋白共翻译插入脂质体进行功能分析

Ke Yue, Tran Nam Trung, Yiyong Zhu, Ralf Kaldenhoff, Lei Kai

Transcriptome analysis of the aquaporin AtPIP1;2 deficient line in Arabidopsis thaliana

拟南芥中水通道蛋白AtPIP1;2缺陷株的转录组分析

Boudichevskaia, Anastassia; Heckwolf, Marlies; Althaus, Lea; Kaldenhoff, Ralf

A refined model of water and CO₂ membrane diffusion: effects and contribution of sterols and proteins

水和二氧化碳膜扩散的精细模型:甾醇和蛋白质的影响和贡献

Kai, Lei; Kaldenhoff, Ralf

Artificial environments for the co-translational stabilization of cell-free expressed proteins

用于无细胞表达蛋白共翻译稳定的人工环境

Kai, Lei; Dötsch, Volker; Kaldenhoff, Ralf; Bernhard, Frank

The grapevine root-specific aquaporin VvPIP2;4N controls root hydraulic conductance and leaf gas exchange under well-watered conditions but not under water stress.

葡萄根特异性水通道蛋白 VvPIP2;4N 在水分充足的情况下控制根系水力传导和叶片气体交换,但在水分胁迫下则不控制

Perrone Irene, Gambino Giorgio, Chitarra Walter, Vitali Marco, Pagliarani Chiara, Riccomagno Nadia, Balestrini Raffaella, Kaldenhoff Ralf, Uehlein Norbert, Gribaudo Ivana, Schubert Andrea, Lovisolo Claudio