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Eke gyakran Szivárog stomata opening and nitric oxide automatikusan Újonnan érkező Csiklandozás

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

Pathogen-Mediated Stomatal Opening: A Previously Overlooked Pathogenicity  Strategy in the Oomycete Pathogen Phytophthora infestans - Frontiers
Pathogen-Mediated Stomatal Opening: A Previously Overlooked Pathogenicity Strategy in the Oomycete Pathogen Phytophthora infestans - Frontiers

IJMS | Free Full-Text | Molecular Mechanisms of Nitric Oxide (NO) Signaling  and Reactive Oxygen Species (ROS) Homeostasis during Abiotic Stresses in  Plants
IJMS | Free Full-Text | Molecular Mechanisms of Nitric Oxide (NO) Signaling and Reactive Oxygen Species (ROS) Homeostasis during Abiotic Stresses in Plants

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

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

Different light signaling pathways coordinate stomatal opening and... |  Download Scientific Diagram
Different light signaling pathways coordinate stomatal opening and... | Download Scientific Diagram

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

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

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

Stomata-mediated interactions between plants, herbivores, and the  environment: Trends in Plant Science
Stomata-mediated interactions between plants, herbivores, and the environment: Trends in Plant Science

Plant Stomata Function in Innate Immunity against Bacterial Invasion: Cell
Plant Stomata Function in Innate Immunity against Bacterial Invasion: Cell

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

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

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

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

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 crosstalk between ABA, nitric oxide, hydrogen peroxide, and calcium in  stomatal closing of Arabidopsis thaliana
The crosstalk between ABA, nitric oxide, hydrogen peroxide, and calcium in stomatal closing of Arabidopsis thaliana

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

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

Effects of ABA on nitric oxide (NO) synthesis and ABA and NO on... |  Download Scientific Diagram
Effects of ABA on nitric oxide (NO) synthesis and ABA and NO on... | Download Scientific Diagram

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

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

IJMS | Free Full-Text | S-Nitroso-Proteome Revealed in Stomatal Guard Cell  Response to Flg22
IJMS | Free Full-Text | S-Nitroso-Proteome Revealed in Stomatal Guard Cell Response to Flg22

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