首页> 美国卫生研究院文献>International Journal of Molecular Sciences >Integrative Analysis of Transcriptome and Metabolome Reveals Salt Stress Orchestrating the Accumulation of Specialized Metabolites in Lycium barbarum L. Fruit
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Integrative Analysis of Transcriptome and Metabolome Reveals Salt Stress Orchestrating the Accumulation of Specialized Metabolites in Lycium barbarum L. Fruit

机译:转录组和代谢物的整合分析显示盐胁迫在枸杞枸杞中进行专业代谢产物的积累

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摘要

Salt stress seriously affects yield and quality of crops. The fruit of Lycium barbarum (LBF) is extensively used as functional food due to its rich nutrient components. It remains unclear how salt stress influences the quality of LBF. In this study, we identified 71 differentially accumulated metabolites (DAMs) and 1396 differentially expressed genes (DEGs) among ripe LBF with and without 300 mM of NaCl treatment. Pearson correlation analysis indicated that the metabolomic changes caused by salt stress were strongly related to oxidoreductases; hydrolases; and modifying enzymes, in particular, acyltransferases, methyltransferases and glycosyltransferases. Further analysis revealed that salt stress facilitated flavonoid glycosylation and carotenoid esterification by boosting the expression of structural genes in the biosynthetic pathways. These results suggested that salt stress prompts the modification of flavonoids and carotenoids to alleviate ROS damage, which in turn improves the quality of LBF. Our results lay a solid foundation for uncovering the underlying molecular mechanism of salt stress orchestrating LBF quality, and the candidate genes identified will be a valuable gene resource for genetic improvement of L. barbarum.
机译:盐压力严重影响庄稼的产量和质量。由于其富含营养成分,枸杞(LBF)的果实(LBF)的果实被广泛地用作功能性。仍然不清楚盐压力如何影响LBF的质量。在这项研究中,我们在成熟的LBF中鉴定了71个差异累积的代谢物(坝)和1396个差异表达基因(DEGS),其中没有300mM的NaCl处理。 Pearson相关分析表明,盐胁迫引起的代谢变化与氧化还原酶密切相关;水解酶;和改性酶,特别是酰基转移酶,甲基转移酶和糖基三烷基转移酶。进一步的分析表明,通过促进生物合成途径中结构基因的表达,盐应激促进了黄酮糖基化和类胡萝卜素酯化。这些结果表明,盐胁迫促使黄酮类化合物和类胡萝卜素的改性缓解ROS损伤,这又改善了LBF的质量。我们的结果为揭示盐胁迫协调LBF质量的底层分子机制奠定了坚实的基础,鉴定的候选基因将是L. Barbarum遗传改善的有价值基因资源。

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