2017
DOI: 10.1007/s11104-017-3335-5
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Hydrogen sulfide mediates ion fluxes inducing stomatal closure in response to drought stress in Arabidopsis thaliana

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Cited by 88 publications
(51 citation statements)
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“…More importantly, our previous study also revealed that H 2 S could enhance the photosynthesis and growth of plants through promoting chloroplast biogenesis, the expression of enzymes involved in photosynthesis, and thiol redox modification in Spinacia oleracea seedlings ( Chen et al, ). Recently, Jin et al () reported that H 2 S mediated K + , Ca 2+ , and Cl − ion fluxes inducing stomatal closure in response to drought stress in Arabidopsis thaliana . However, the impact of H 2 S on the absorption of nutrients and their ratios in plants grown under Fe deficiency was not clear and the work in this area has so far been very limited.…”
Section: Introductionmentioning
confidence: 99%
“…More importantly, our previous study also revealed that H 2 S could enhance the photosynthesis and growth of plants through promoting chloroplast biogenesis, the expression of enzymes involved in photosynthesis, and thiol redox modification in Spinacia oleracea seedlings ( Chen et al, ). Recently, Jin et al () reported that H 2 S mediated K + , Ca 2+ , and Cl − ion fluxes inducing stomatal closure in response to drought stress in Arabidopsis thaliana . However, the impact of H 2 S on the absorption of nutrients and their ratios in plants grown under Fe deficiency was not clear and the work in this area has so far been very limited.…”
Section: Introductionmentioning
confidence: 99%
“…H 2 S is produced in response to many abiotic stressors, including drought, temperature, and heavy metal stress [26]. Several studies have demonstrated that drought stress induces H 2 S production in Arabidopsis thaliana [2,27] (Figure 1). Meanwhile, abscisic acid (ABA) application improved the endogenous H 2 S content in wheat under drought stress [28].…”
Section: Hydrogen Sulfide (H 2 S)mentioning
confidence: 99%
“…In nature, plants are constantly challenged by a variety of abiotic stressors, such as heavy metals, low or high temperature, drought or osmotic pressure, salt, and ultraviolet irradiation. Several studies have found that plants are affected in their height, leaf morphology, and stomatal openness under abiotic stress [1][2][3]. In addition, the physiological metabolism of plants is disordered, whereby the contents of proline (Pro), electrolyte leakage (EC), malondialdehyde (MDA), and hydrogen peroxide (H 2 O 2 ) are changed by abiotic stress [4,5].…”
Section: Introductionmentioning
confidence: 99%
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“…The active form of H 2 S in biological systems has not been specified to date; therefore, H 2 S usually stands for both H 2 S and HS − . By exogenously using its donor, H 2 S was reported to confer positive effects in multiple physiological processes, such as root organogenesis (Zhang et al, 2009), plant responses to phytohormones (Hou et al, 2013;Scuffi et al, 2014), and tolerance toward drought, salt, oxidative, and heavy-metal stresses (Jin et al, 2013(Jin et al, , 2017Zhang et al, 2009). Several independent groups have reported the participation of H 2 S in ABA-and ethylene-dependent stomatal closure induction (Du et al, 2019;García-Mata & Lamattina, 2010;Hou et al, 2013;Jin et al, 2013).…”
Section: Introductionmentioning
confidence: 99%