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Nitric oxide signalling in plants
SJ Neill, R Desikan, JT Hancock - New Phytologist, 2003 - Wiley Online Library
Recently nitric oxide (NO) has emerged as a key signalling molecule in plants. Here we
review the potential sources of endogenous NO, outline the biological processes likely to be …
review the potential sources of endogenous NO, outline the biological processes likely to be …
Molecular biology of K+ transport across the plant cell membrane: what do we learn from comparison between plant species?
Cloning and characterizations of plant K+ transport systems aside from Arabidopsis have
been increasing over the past decade, favored by the availability of more and more plant …
been increasing over the past decade, favored by the availability of more and more plant …
[HTML][HTML] A protein kinase, interacting with two calcineurin B-like proteins, regulates K+ transporter AKT1 in Arabidopsis
J Xu, HD Li, LQ Chen, Y Wang, LL Liu, L He, WH Wu - Cell, 2006 - cell.com
Potassium is an essential mineral element for plant growth and development. Although it is
known that plants absorb and transport K+ through membrane transporters, it remains …
known that plants absorb and transport K+ through membrane transporters, it remains …
[HTML][HTML] Identification and disruption of a plant shaker-like outward channel involved in K+ release into the xylem sap
SKOR, a K+ channel identified in Arabidopsis, displays the typical hydrophobic core of the
Shaker channel superfamily, a cyclic nucleotide-binding domain, and an ankyrin domain …
Shaker channel superfamily, a cyclic nucleotide-binding domain, and an ankyrin domain …
A role for the AKT1 potassium channel in plant nutrition
In plants, potassium serves an essential role as an osmoticum and charge carrier. Its uptake
by roots occurs by poorly defined mechanisms. To determine the role of potassium channels …
by roots occurs by poorly defined mechanisms. To determine the role of potassium channels …
Architecture and autoinhibitory mechanism of the plasma membrane Na+/H+ antiporter SOS1 in Arabidopsis
Y Wang, C Pan, Q Chen, Q **e, Y Gao, L He… - Nature …, 2023 - nature.com
Abstract Salt-overly-sensitive 1 (SOS1) is a unique electroneutral Na+/H+ antiporter at the
plasma membrane of higher plants and plays a central role in resisting salt stress. SOS1 is …
plasma membrane of higher plants and plays a central role in resisting salt stress. SOS1 is …
Molecular Mechanisms and Regulation of K+ Transport in Higher Plants
AA Véry, H Sentenac - Annual review of plant biology, 2003 - annualreviews.org
Potassium (K+) plays a number of important roles in plant growth and development. Over the
past few years, molecular approaches associated with electrophysiological analyses have …
past few years, molecular approaches associated with electrophysiological analyses have …
Potassium transport in fungi and plants
A Rodrı́guez-Navarro - Biochimica et Biophysica Acta (BBA)-Reviews on …, 2000 - Elsevier
Potassium is an obligatory component of living cells, and all of them depend on K+ uptake,
and also eventually on K+ e¥ ux, to grow and to keep themselves alive. It is also an …
and also eventually on K+ e¥ ux, to grow and to keep themselves alive. It is also an …
K+ uptake in plant roots. The systems involved, their regulation and parallels in other organisms
Potassium (K+) is an essential macronutrient for plants. It is taken into the plant by the
transport systems present in the plasma membranes of root epidermal and cortical cells. The …
transport systems present in the plasma membranes of root epidermal and cortical cells. The …
Calmodulin as a versatile calcium signal transducer in plants
The complexity of Ca2+ patterns observed in eukaryotic cells, including plants, has led to the
hypothesis that specific patterns of Ca2+ propagation, termed Ca2+ signatures, encode …
hypothesis that specific patterns of Ca2+ propagation, termed Ca2+ signatures, encode …