Zobrazeno 1 - 10
of 626
pro vyhledávání: '"R. Konrad"'
Publikováno v:
iScience, Vol 25, Iss 4, Pp 104078- (2022)
Summary: Sensing of external mineral nutrient concentrations is essential for plants to colonize environments with a large spectrum of nutrient availability. Here, we analyzed transporter networks in computational cell biology simulations to understa
Externí odkaz:
https://doaj.org/article/577d31c1ce764a7b85255da8794851c0
Publikováno v:
Annual Review of Plant Biology. 74:313-339
Optogenetics is a technique employing natural or genetically engineered photoreceptors in transgene organisms to manipulate biological activities with light. Light can be turned on or off, and adjusting its intensity and duration allows optogenetic f
Publikováno v:
Bioelectricity. 5:7-12
Publikováno v:
Intensiv- und Notfallbehandlung. 48:39-47
Autor:
Emily R. Konrad, Jeremy Soo, Andrea L. Conroy, Sophie Namasopo, Robert O. Opoka, Michael T. Hawkes
Publikováno v:
Pathogens and Global Health. :1-9
Diagnostic biomarkers for childhood pneumonia could guide management and improve antibiotic stewardship in low-resource settings where chest x-ray (CXR) is not always available. In this cross-sectional study, we measured chitinase 3-like protein 1 (C
Autor:
Dorothea Graus, Kunkun Li, Jan M. Rathje, Meiqi Ding, Markus Krischke, Martin J. Müller, Tracey Ann Cuin, Khaled A. S. Al‐Rasheid, Sönke Scherzer, Irene Marten, Kai R. Konrad, Rainer Hedrich
Publikováno v:
New Phytologist. 237:217-231
Salt stress is a major abiotic stress, responsible for declining agricultural productivity. Roots are regarded as hubs for salt detoxification, however, leaf salt concentrations may exceed those of roots. How mature leaves manage acute sodium chlorid
Publikováno v:
Membranes, Vol 11, Iss 4, p 287 (2021)
Optogenetics was developed in the field of neuroscience and is most commonly using light-sensitive rhodopsins to control the neural activities. Lately, we have expanded this technique into plant science by co-expression of a chloroplast-targeted β-c
Externí odkaz:
https://doaj.org/article/fd5dcc5f65fb4c82b826e40f977bf179
Autor:
Anja Liese, Bernadette Eichstädt, Sarah Lederer, Philipp Schulz, Jan Oehlschläger, José A Feijó, Waltraud X. Schulze, Kai R. Konrad, Tina Romeis
Changes in cytosolic calcium concentration are among the earliest reactions to a multitude of stress cues. Whereas a plethora of calcium-permeable channels may generate distinct calcium signatures and contribute to response specificities, the mechani
Externí odkaz:
https://explore.openaire.eu/search/publication?articleId=doi_________::f968036fa3a289461be64a50045f4702
https://doi.org/10.1101/2023.03.13.532409
https://doi.org/10.1101/2023.03.13.532409
Publikováno v:
Plant Physiol
Microbial rhodopsins have advanced optogenetics since the discovery of channelrhodopsins almost two decades ago. During this time an abundance of microbial rhodopsins has been discovered, engineered, and improved for studies in neuroscience and other
Autor:
Jana Leide, Martin J. Mueller, Jing Yu-Strzelczyk, Yang Zhou, Georg Nagel, Rainer Hedrich, Markus Krischke, Kai R. Konrad, Markus Riederer, Xiaodong Duan, Meiqi Ding, Shiqiang Gao
Publikováno v:
Nature Plants. 7:144-151
While rhodopsin-based optogenetics has revolutionized neuroscience1,2, poor expression of opsins and the absence of the essential cofactor all-trans-retinal has complicated the application of rhodopsins in plants. Here, we demonstrate retinal product