转录组和代谢组联合分析揭示硒对百合花生长和品质的影响

Xiaogang Jiang, Wuxian Zhou, Darong Li, Hua Wang, Yuying Yang, Jinwen You, Haihua Liu, Lunqiang Ai, Meide Zhang
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摘要

Lilium lancifolium Thunb(L. lancifolium)是一种重要的药用和食用植物,在硒(Se)生物强化方面具有突出的功能。然而,L. lancifolium 对外源硒的分子反应尚未完全阐明。本研究通过转录组、代谢组和生化分析,探讨了不同水平的 Se 对 Lancifolium 生长和品质的影响。结果表明,L. lancifolium球茎中的总Se和有机Se含量随着Se用量(0-8.0 mmol/L)的增加而增加。此外,Se 在低浓度(2.0 mmol/L)时能刺激 L. lancifolium 的生长,但在高浓度(≥4.0 mmol/L)时则表现出抑制作用。代谢组和生化分析表明,与对照组(0 mmol/L Se)相比,2.0 mmol/L Se 处理的鳞茎重量和氨基酸、可溶性糖和可溶性蛋白质含量显著增加。转录组和代谢组分析表明,GPD1、GPAT 和 ADPRM 基因的显著上调促进了甘油磷脂的积累。此外,glyA 基因的明显上调和 asnB、nadB、thrA 和 SAT 基因的下调协调了氨基酸生物合成的调控。明显上调的 SUS、bgl B、BAM 和 SGA1 基因参与了 Se 处理下可溶性糖的积累。总之,本研究确定了最佳的 Se 浓度(2.0 mmol/L),该浓度能显著改善 L. lancifolium 的生长和营养品质,有助于了解 Se 处理对 L. lancifolium 球茎中基因表达和代谢产物积累的综合影响。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Combined transcriptome and metabolome analyses reveal the effects of selenium on the growth and quality of Lilium lancifolium
Lilium lancifolium Thunb (L. lancifolium) is an important medicinal and edible plant with outstanding functionality for selenium (Se) biofortification. However, the molecular response of L. lancifolium to exogenous Se has not been fully elucidated. In this study, the effects of different levels of Se on L. lancifolium growth and quality were explored by transcriptome, metabolome and biochemical analyses. The results showed that the total Se and organic Se content in L. lancifolium bulbs increased with increasing Se dosage (0–8.0 mmol/L). Moreover, Se stimulated the growth of L. lancifolium at low level (2.0 mmol/L) but showed an inhibitory effect at high levels (≥4.0 mmol/L). Metabolomic and biochemical analyses revealed that the bulb weight and the content of amino acid, soluble sugar, and soluble protein were significantly increased in the 2.0 mmol/L Se treatment compared with those in the control (0 mmol/L Se). Transcriptome and metabolome analyses revealed that the significant upregulation of the GPD1, GPAT and ADPRM genes promoted glycerophospholipid accumulation. Additionally, the significantly upregulated glyA and downregulated asnB, nadB, thrA and SAT genes coordinate to the regulation of amino acid biosynthesis. The significantly upregulated SUS, bgl B, BAM, and SGA1 genes were involved in soluble sugar accumulation under Se treatment. In summary, this study identified the optimal Se concentration (2.0 mmol/L), which significantly improved the growth and nutritional quality of L. lancifolium and contributed to understanding the combined effects of Se treatment on the expression of genes and the accumulation of metabolites in L. lancifolium bulbs.
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