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Exogenous Supplementation of Silicon Improved the Recovery of Hyperhydric Shoots in Dianthus caryophyllus L. by Stabilizing the Physiology and Protein Expression

机译:外来硅的补充通过稳定生理和蛋白质表达来提高石竹的水生芽的回收率

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摘要

Hyperhydricity is one of the major problems hindering in vitro propagation of Dianthus caryophyllus L. Silicon (Si) is a well-known beneficial element renowned for its stress amelioration properties in plants. This study has demonstrated the physiological and molecular mechanism behind the Si-mediated recovery from hyperhydricity in D. caryophyllus L. ‘Green Beauty’. Four weeks old hyperhydric shoots obtained from temporary immersion system were cultured on the Murashige and Skoog medium supplemented with 0 (control), 1.8 mM, or 3.6 mM of potassium silicate (K2SiO3). After 2 weeks of culture, we observed only 20% of hyperhydric shoots were recovered in control. On the other hand hyperhydricity, shoot recovery percentage in 1.8 mM and 3.6 mM of Si were 44% and 36%, respectively. Shoots in control possessed higher lipid peroxidation rate compared to the Si treatments. Similarly, damaged stomata were detected in the control, while Si treatments restored the normal stomatal development. Expressions of superoxide dismutase, guaiacol peroxidase, and catalase varied between the control and Si treatments. Furthermore, a proteomic analysis showed that as compared with the control Si up-regulated 17 and 10 protein spots in abundance at 1.8 and 3.6 mM of Si, respectively. In comparison to the 3.6 mM, 1.8 mM of Si treatment up-regulated 19 proteins and down-regulated 7 proteins. Identified proteins were categorized into six groups according to their biological roles such as ribosomal binding, oxido-reduction, hormone/cell signaling, metal/ion binding, defense, and photosynthesis. The proteomic results revealed that Si actively involved in the various metabolisms to accelerate the recovery of the shoots from hyperhydricity. Thus, the outcomes of this study can be utilized for addressing the molecular insight of hyperhydricity and its recovery mechanism by the supplementation of Si. Therefore, we conclude that active involvement of Si in the regulation and signaling process of proteins at 1.8 mM concentration could be efficient to trigger the reclamation process of hyperhydric carnation shoots.
机译:高水合度是石竹的体外繁殖的主要问题之一。硅(Si)是众所周知的有益元素,以其改善植物的胁迫特性而闻名。这项研究证明了石竹D. carophyllus L.“绿色之美”中的Si介导的从高水度恢复的背后的生理和分子机制。从临时浸没系统中获得的四周大的高芽苗在补充了0(对照),1.8 mM或3.6 mM硅酸钾(K2SiO3)的Murashige和Skoog培养基上培养。培养2周后,我们观察到对照中仅回收了20%的高水生芽。另一方面,高水合,在1.8 mM和3.6 mM的Si中,笋的回收率分别为44%和36%。与Si处理相比,对照中的芽具有更高的脂质过氧化率。同样,在对照中检测到受损的气孔,而硅处理恢复了正常的气孔发育。在对照和硅处理之间,超氧化物歧化酶,愈创木酚过氧化物酶和过氧化氢酶的表达有所不同。此外,蛋白质组学分析表明,与对照Si相比,在1.8 mM和3.6 mM Si下,Si分别上调了17和10个蛋白质斑点的丰度。与3.6 mM相比,Si处理的1.8 mM上调了19种蛋白质,而下调了7种蛋白质。根据其生物学作用,如核糖体结合,氧化还原,激素/细胞信号传导,金属/离子结合,防御和光合作用,将鉴定出的蛋白质分为六类。蛋白质组学结果表明,Si积极参与各种新陈代谢,以促进芽从高水合状态的恢复。因此,本研究的结果可用于通过补充Si来解决高水度的分子认识及其恢复机制。因此,我们得出结论,Si积极参与浓度为1.8 mM的蛋白质的调节和信号传导过程可能有效地触发了高水力康乃馨芽的再生过程。

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