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Hydrogen sulfide improves drought resistance in Arabidopsis thaliana
Authors:Jin Zhuping  Shen Jiejie  Qiao Zengjie  Yang Guangdong  Wang Rui  Pei Yanxi
Institution:aSchool of Life Science, Shanxi University, Taiyuan 030006, China;bSchool of Chemical Engineering and Environment, North University of China, Taiyuan 030051, China;cSchool of Kinesiology, Lakehead University, Thunder Bay, Canada P7B 5E1;dDepartment of Biology, Lakehead University, Thunder Bay, Canada P7B 5E1
Abstract:Hydrogen sulfide (H2S) plays a crucial role in human and animal physiology. Its ubiquity and versatile properties have recently caught the attention of plant physiologists and biochemists. Two cysteine desulfhydrases (CDes), l-cysteine desulfhydrase and d-cysteine desulfhydrase, were identified as being mainly responsible for the degradation of cysteine in order to generate H2S. This study investigated the expression regulation of these genes and their relationship to drought tolerance in Arabidopsis. First, the expression pattern of CDes in Arabidopsis was investigated. The expression levels of CDes gradually increased in an age-dependent manner. The expression of CDes was significantly higher in stems and cauline leaves than in roots, rosette leaves and flowers. Second, the protective effect of H2S against drought was evaluated. The expression pattern of CDes was similar to the drought associated genes induced by dehydration, and H2S fumigation was found to stimulate further the expression of drought associated genes. Drought also significantly induced increased H2S production, a process that was reversed by re-watering. In addition, seedlings after treatment with NaHS (a H2S donor) showed a higher survival rate and displayed a significant reduction in the size of the stomatal aperture compared to the control. These findings provide evidence that H2S, as a gasotransmitter, improves drought resistance in Arabidopsis.
Keywords:Hydrogen sulfide  Gasotransmitter  Cysteine desulfhydrase  Drought  Arabidopsis thaliana
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