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kötél testtartás nak,nek stomata opening and nitric oxide betét Tilalom Újra

Nitric oxide suppresses stomatal opening by inhibiting inward-rectifying K  in channels in Arabidopsis guard cells
Nitric oxide suppresses stomatal opening by inhibiting inward-rectifying K in channels in Arabidopsis guard cells

Full article: Role of nitric oxide in regulating stomatal apertures
Full article: Role of nitric oxide in regulating stomatal apertures

Roles of ion channels and transporters in guard cell signal transduction -  ScienceDirect
Roles of ion channels and transporters in guard cell signal transduction - ScienceDirect

Frontiers | Open or Close the Gate – Stomata Action Under the Control of  Phytohormones in Drought Stress Conditions
Frontiers | Open or Close the Gate – Stomata Action Under the Control of Phytohormones in Drought Stress Conditions

A simplified model of ABA signaling in guard cells. Nitric oxide (NO)... |  Download Scientific Diagram
A simplified model of ABA signaling in guard cells. Nitric oxide (NO)... | Download Scientific Diagram

Plants | Free Full-Text | Plant Nitric Oxide Signaling under Drought Stress
Plants | Free Full-Text | Plant Nitric Oxide Signaling under Drought Stress

Advances and perspectives in the metabolomics of stomatal movement and the  disease triangle - ScienceDirect
Advances and perspectives in the metabolomics of stomatal movement and the disease triangle - ScienceDirect

The loss of AtVSR3 protein caused the accumulation of nitric oxide and  hydrogen peroxide, signalling molecules implicated in the regulation of stomatal  opening and closing. – PLANT STOMATA ENCYCLOPEDIA
The loss of AtVSR3 protein caused the accumulation of nitric oxide and hydrogen peroxide, signalling molecules implicated in the regulation of stomatal opening and closing. – PLANT STOMATA ENCYCLOPEDIA

GABA signalling modulates stomatal opening to enhance plant water use  efficiency and drought resilience | Nature Communications
GABA signalling modulates stomatal opening to enhance plant water use efficiency and drought resilience | Nature Communications

Strigolactone‐triggered stomatal closure requires hydrogen peroxide  synthesis and nitric oxide production in an abscisic acid‐independent  manner - Lv - 2018 - New Phytologist - Wiley Online Library
Strigolactone‐triggered stomatal closure requires hydrogen peroxide synthesis and nitric oxide production in an abscisic acid‐independent manner - Lv - 2018 - New Phytologist - Wiley Online Library

Full article: Regulation of stomatal aperture in response to drought stress  mediating with polyamines, nitric oxide synthase and hydrogen peroxide in  Rosa canina L.
Full article: Regulation of stomatal aperture in response to drought stress mediating with polyamines, nitric oxide synthase and hydrogen peroxide in Rosa canina L.

Plants | Free Full-Text | Structural and Functional Insights into the Role  of Guard Cell Ion Channels in Abiotic Stress-Induced Stomatal Closure
Plants | Free Full-Text | Structural and Functional Insights into the Role of Guard Cell Ion Channels in Abiotic Stress-Induced Stomatal Closure

Nitric Oxide Inhibits Blue Light-Specific Stomatal Opening Via Abscisic Acid  Signaling Pathways in Vicia Guard Cells
Nitric Oxide Inhibits Blue Light-Specific Stomatal Opening Via Abscisic Acid Signaling Pathways in Vicia Guard Cells

Guard cell hydrogen peroxide and nitric oxide mediate elevated CO2‐induced  stomatal movement in tomato - Shi - 2015 - New Phytologist - Wiley Online  Library
Guard cell hydrogen peroxide and nitric oxide mediate elevated CO2‐induced stomatal movement in tomato - Shi - 2015 - New Phytologist - Wiley Online Library

Frontiers | Open or Close the Gate – Stomata Action Under the Control of  Phytohormones in Drought Stress Conditions
Frontiers | Open or Close the Gate – Stomata Action Under the Control of Phytohormones in Drought Stress Conditions

The exogenous application of NO donors might confer an increased tolerance  to severe drought stress conditions in plants – PLANT STOMATA ENCYCLOPEDIA
The exogenous application of NO donors might confer an increased tolerance to severe drought stress conditions in plants – PLANT STOMATA ENCYCLOPEDIA

The involvement of nitric oxide (NO) in elevated CO 2 -induced stomatal...  | Download Scientific Diagram
The involvement of nitric oxide (NO) in elevated CO 2 -induced stomatal... | Download Scientific Diagram

The Importance of Stomata – Plant Physiology
The Importance of Stomata – Plant Physiology

Scavenging of nitric oxide up-regulates photosynthesis under drought in  Festuca arundinacea and F. glaucescens but reduces their drought tolerance  | Scientific Reports
Scavenging of nitric oxide up-regulates photosynthesis under drought in Festuca arundinacea and F. glaucescens but reduces their drought tolerance | Scientific Reports

Frontiers | Nitrated Nucleotides: New Players in Signaling Pathways of  Reactive Nitrogen and Oxygen Species in Plants
Frontiers | Nitrated Nucleotides: New Players in Signaling Pathways of Reactive Nitrogen and Oxygen Species in Plants

Involvement of Nitric Oxide in the Mechanism for Stomatal Opening in  <Emphasis Type="Italic">Vicia faba</Emph
Involvement of Nitric Oxide in the Mechanism for Stomatal Opening in <Emphasis Type="Italic">Vicia faba</Emph

Nitric oxide sensing revisited: Trends in Plant Science
Nitric oxide sensing revisited: Trends in Plant Science

Blue light and CO2 signals converge to regulate light-induced stomatal  opening | Nature Communications
Blue light and CO2 signals converge to regulate light-induced stomatal opening | Nature Communications

Signal crosstalk during NO-regulated stomatal closure in turgid leaves... |  Download Scientific Diagram
Signal crosstalk during NO-regulated stomatal closure in turgid leaves... | Download Scientific Diagram