首页> 外文期刊>Poljoprivreda (Osijek) >H2S AND NO SIGNALING INTERACTIONS IN THALE CRESS (ARABIDOPSIS THALIANA L.) AND PEPPER (CAPSICUM ANNUUM L.) LEAVES
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H2S AND NO SIGNALING INTERACTIONS IN THALE CRESS (ARABIDOPSIS THALIANA L.) AND PEPPER (CAPSICUM ANNUUM L.) LEAVES

机译:枯萎病(拟南芥)和辣椒(辣椒)叶片中的H2S和无信号相互作用

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This research comprehends a set of experiments with several thale cress (Arabidopsis thaliana L.) and pepper (Capsicum annuum L.) genotypes in controlled conditions using growth chambers, with the aim of determining the physiological role of hydrogen sulfide (H2S) in plants, as well as its potential effect as a signaling compound, particularly in potential interaction with nitric oxide (NO) signaling pathways. Special emphasis was focused on stomatal mechanisms and signaling in their opening and closing. Moreover, the effect of treatment of pepper plants with H2S was investigated in salt stress conditions. It was established that the applied H2S donors, NaHS and GYY4137, inhibit stomata closing in both plant species through the reduction of NO accumulation in stomata, which was proven to occur in SNP or ABA treatment. The effects of NO and H2S were opposite those in pepper plants response to salt stress as well, with increased antioxidative activity in leaf obtained after H2S treatments, and with NaHS in particular. In addition, GYY4137 could be considered as a convenient H2S donor for research into H2S functions in plants. The results point out the interactions of H2S and NO in plant cell signaling in both normal and salt stress conditions. Further research of this type should uncover H2S functions in plant metabolism more precisely, especially considering the potential practical value of this knowledge for plant stress resistance improvement and their productivity enhancement.
机译:这项研究包含一组在控制条件下使用生长箱对拟南芥(Arabidopsis thaliana L.)和胡椒(Capsicum annuum L.)基因型进行的实验,目的是确定硫化氢(H2S)在植物中的生理作用,以及其作为信号传导化合物的潜在作用,尤其是在与一氧化氮(NO)信号传导途径的潜在相互作用中。特别强调的是气孔机制及其开启和关闭的信号。此外,在盐胁迫条件下研究了用H2S处理辣椒植物的效果。已经确定,施用的H2S供体NaHS和GYY4137通过减少气孔中的NO积累来抑制两种植物的气孔关闭,事实证明这是在SNP或ABA处理中发生的。 NO和H2S的作用也与辣椒植物对盐胁迫的响应相反,在H2S处理后,尤其是NaHS处理后,叶片中的抗氧化活性增强。此外,GYY4137可以被视为方便的H2S供体,用于研究植物中的H2S功能。结果指出在正常和盐胁迫条件下,H2S和NO在植物细胞信号传导中的相互作用。对此类型的进一步研究应更准确地揭示H2S在植物代谢中的功能,尤其是考虑到此知识对于提高植物抗逆性及其生产力的潜在实用价值。

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