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      外源寡糖对低温胁迫下烟苗生理特性影响及机制研究

      Effects of Exogenous Oligosaccharides on Physiological Characteristics of Tobacco Seedlings under Low temperature Stress and Its Mechanisms

      • 摘要: 为提高烟苗对低温胁迫的抗性,筛选高效安全的寡糖并探究其提高烟苗抗低温的生理及分子机制,本研究以低温敏感烟草品种K326为试验材料,研究叶面喷施不同浓度壳寡糖、褐藻寡糖、甘露寡糖对低温胁迫下烟苗生长、生理特性的影响,并探究其提高烟草抗低温的分子机制。结果表明,与低温胁迫组相比,叶面喷施不同寡糖可显著增加低温胁迫下烟苗最大叶面积和生物量,最大叶面积增幅22.45%~62.84%,根系活力和叶绿素含量分别提高32.02%~131.72%和10.02%~34.76%,渗透调节物质含量增加14.10%以上,显著提高超氧化物歧化酶、过氧化物酶、过氧化氢酶等抗氧化酶活性,增强谷胱甘肽还原酶活性并增加还原性谷胱甘肽含量。结合隶属函数分析得出叶面喷施200 mg/L甘露寡糖的烟苗对低温胁迫的抵抗能力最强。500 mg/L甘露寡糖和200 mg/L壳寡糖次之。转录组测序分析表明,甘露寡糖处理可诱导氨基酸降解、甘油磷脂代谢、氧化还原酶活性和催化活性等相关抗性基因的表达。叶面喷施200 mg/L的甘露寡糖可显著提高烟苗的抗寒性,效果优于叶面喷施500 mg/L的甘露寡糖和200 mg/L的壳寡糖。

         

        Abstract: In order to improve the resistance of tobacco seedlings to low temperature stress, the physiological and molecular mechanisms of oligosaccharides were studied. In this study, the low temperature sensitive tobacco variety "K326" was used as the test material, to study the effects of foliar spraying with different concentrations of chitosan oligosaccharides, brown alage oligosaccharides, and mannose oligosaccharides on the growth and physiological characteristics of tobacco seedlings under low temperature stress, and to explore the molecular mechanism of enhancing tobacco resistance to low temperature. The results showed that compared with the low temperature stress group, foliar spraying of different types and concentrations of oligosaccharides could significantly increase the maximum leaf area and biomass of tobacco seedlings by 22.45%-62.84%, increase root activity and the content of chlorophyll by 32.02%-131.72% and 10.02%-34.76%, respectively. The content of osmoregulatory substances was increased by more than 14.10%, significantly increased the activities of antioxidant enzymes, such as superoxide dismutase, peroxidase, catalase, and enhanced the activity of glutathione reductase, and increased the reduced glutathione content. Combined with the affiliation function analysis, it was concluded that tobacco seedlings with foliar spraying of 200 mg/L mannose oligosaccharides had higher resistance to low temperature stress than 500 mg/L mannose oligosaccharides and 200 mg/L chitosan oligosaccharides. Further transcriptome sequencing analysis showed that mannose oligosaccharides treatment significantly increased the expression of amino acid degradation, glycerolipid metabolism, redox enzyme activity and catalytic activity. This study demonstrated that foliar application of 200 mg/L mannose oligosaccharides significantly enhanced the cold stress tolerance of tobacco seedlings, outperforming both 500 mg/L mannose oligosaccharides and 200 mg/L chito oligosaccharide.

         

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