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Energization of Vacuolar Transport in Plant Cells and Its Significance  Under Stress - ScienceDirect
Energization of Vacuolar Transport in Plant Cells and Its Significance Under Stress - ScienceDirect

H+-Independent Glutamine Transport in Plant Root Tips | PLOS ONE
H+-Independent Glutamine Transport in Plant Root Tips | PLOS ONE

IJMS | Free Full-Text | Current Understanding of Role of Vesicular  Transport in Salt Secretion by Salt Glands in Recretohalophytes | HTML
IJMS | Free Full-Text | Current Understanding of Role of Vesicular Transport in Salt Secretion by Salt Glands in Recretohalophytes | HTML

Frontiers | The Plant V-ATPase
Frontiers | The Plant V-ATPase

PDF) CLC-mediated anion transport in plant cells | Hélène Barbier-brygoo,  Jean-marie Frachisse, and Alexis Angeli - Academia.edu
PDF) CLC-mediated anion transport in plant cells | Hélène Barbier-brygoo, Jean-marie Frachisse, and Alexis Angeli - Academia.edu

Function of the anion transporter AtCLC‐d in the trans‐Golgi network -  Fecht‐Bartenbach - 2007 - The Plant Journal - Wiley Online Library
Function of the anion transporter AtCLC‐d in the trans‐Golgi network - Fecht‐Bartenbach - 2007 - The Plant Journal - Wiley Online Library

Frontiers | Vacuolar nitrate efflux requires multiple functional redundant  nitrate transporter in Arabidopsis thaliana
Frontiers | Vacuolar nitrate efflux requires multiple functional redundant nitrate transporter in Arabidopsis thaliana

NO3−/H+ Antiport in the Tonoplast of Cucumber Root Cells Is Stimulated by  Nitrate Supply: Evidence for a Reversible Nitrate-Induced Phosphorylation  of Vacuolar NO3−/H+ Antiport | PLOS ONE
NO3−/H+ Antiport in the Tonoplast of Cucumber Root Cells Is Stimulated by Nitrate Supply: Evidence for a Reversible Nitrate-Induced Phosphorylation of Vacuolar NO3−/H+ Antiport | PLOS ONE

Non-steroidal Anti-inflammatory Drugs Target TWISTED DWARF1-Regulated Actin  Dynamics and Auxin Transport-Mediated Plant Development - ScienceDirect
Non-steroidal Anti-inflammatory Drugs Target TWISTED DWARF1-Regulated Actin Dynamics and Auxin Transport-Mediated Plant Development - ScienceDirect

Plants | Free Full-Text | Molecular Cloning and Characterization of SaCLCd,  SaCLCf, and SaCLCg, Novel Proteins of the Chloride Channel Family (CLC)  from the Halophyte Suaeda altissima (L.) Pall | HTML
Plants | Free Full-Text | Molecular Cloning and Characterization of SaCLCd, SaCLCf, and SaCLCg, Novel Proteins of the Chloride Channel Family (CLC) from the Halophyte Suaeda altissima (L.) Pall | HTML

Improving nitrogen use efficiency by manipulating nitrate remobilization in  plants | Nature Plants
Improving nitrogen use efficiency by manipulating nitrate remobilization in plants | Nature Plants

Genes | Free Full-Text | Inorganic Nitrogen Transport and Assimilation in  Pea (Pisum sativum) | HTML
Genes | Free Full-Text | Inorganic Nitrogen Transport and Assimilation in Pea (Pisum sativum) | HTML

HAUS AM SCHOTTENTOR, VIENNA, AUSTRIA
HAUS AM SCHOTTENTOR, VIENNA, AUSTRIA

A nitrate-permeable ion channel in the tonoplast of the moss Physcomitrella  patens – topic of research paper in Biological sciences. Download scholarly  article PDF and read for free on CyberLeninka open science
A nitrate-permeable ion channel in the tonoplast of the moss Physcomitrella patens – topic of research paper in Biological sciences. Download scholarly article PDF and read for free on CyberLeninka open science

The TGN/EE SNARE protein SYP61 and the ubiquitin ligase ATL31 cooperatively  regulate plant responses to carbon/nitrogen conditio
The TGN/EE SNARE protein SYP61 and the ubiquitin ligase ATL31 cooperatively regulate plant responses to carbon/nitrogen conditio

CLC‐Nt1 affects Potato Virus Y infection via regulation of endoplasmic  reticulum luminal Ph - Sun - 2018 - New Phytologist - Wiley Online Library
CLC‐Nt1 affects Potato Virus Y infection via regulation of endoplasmic reticulum luminal Ph - Sun - 2018 - New Phytologist - Wiley Online Library

Jenny von der Fecht-Bartenbach's research works | University of Tuebingen,  Tübingen (EKU Tübingen) and other places
Jenny von der Fecht-Bartenbach's research works | University of Tuebingen, Tübingen (EKU Tübingen) and other places

Frontiers | Plant Proton Pumps and Cytosolic pH-Homeostasis
Frontiers | Plant Proton Pumps and Cytosolic pH-Homeostasis

Function of the anion transporter AtCLC‐d in the trans‐Golgi network -  Fecht‐Bartenbach - 2007 - The Plant Journal - Wiley Online Library
Function of the anion transporter AtCLC‐d in the trans‐Golgi network - Fecht‐Bartenbach - 2007 - The Plant Journal - Wiley Online Library

The chloride channels: Silently serving the plants - Subba - 2021 -  Physiologia Plantarum - Wiley Online Library
The chloride channels: Silently serving the plants - Subba - 2021 - Physiologia Plantarum - Wiley Online Library

2021 | UBM Corporate
2021 | UBM Corporate

Frontiers | Potential Networks of Nitrogen-Phosphorus-Potassium Channels  and Transporters in Arabidopsis Roots at a Single Cell Resolution
Frontiers | Potential Networks of Nitrogen-Phosphorus-Potassium Channels and Transporters in Arabidopsis Roots at a Single Cell Resolution

Function of the anion transporter AtCLC‐d in the trans‐Golgi network -  Fecht‐Bartenbach - 2007 - The Plant Journal - Wiley Online Library
Function of the anion transporter AtCLC‐d in the trans‐Golgi network - Fecht‐Bartenbach - 2007 - The Plant Journal - Wiley Online Library

H+-Independent Glutamine Transport in Plant Root Tips | PLOS ONE
H+-Independent Glutamine Transport in Plant Root Tips | PLOS ONE

PDF) Figure S5
PDF) Figure S5

Recent Advances in the Physiology of Ion Channels in Plants
Recent Advances in the Physiology of Ion Channels in Plants

Function of the anion transporter AtCLC‐d in the trans‐Golgi network -  Fecht‐Bartenbach - 2007 - The Plant Journal - Wiley Online Library
Function of the anion transporter AtCLC‐d in the trans‐Golgi network - Fecht‐Bartenbach - 2007 - The Plant Journal - Wiley Online Library

HAUS AM SCHOTTENTOR, VIENNA, AUSTRIA
HAUS AM SCHOTTENTOR, VIENNA, AUSTRIA

H+-Independent Glutamine Transport in Plant Root Tips | PLOS ONE
H+-Independent Glutamine Transport in Plant Root Tips | PLOS ONE