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多组学分析揭示了荧光碳点调控藤茶次生代谢的关键因素。

Multi-omics analyses revealed key factors involved in fluorescent carbon-dots-regulated secondary metabolism in Tetrastigma hemsleyanum.

机构信息

Ningbo Research Institute of Zhejiang University, Ningbo, 315100, People's Republic of China.

Fujian Agriculture and Forestry University, Fuzhou, 350028, People's Republic of China.

出版信息

J Nanobiotechnology. 2022 Feb 2;20(1):63. doi: 10.1186/s12951-022-01271-6.

Abstract

BACKGROUND

Luminescent nanomaterials (LNMs), especially newly-exploited fluorescent carbon-dots (CDs), have demonstrated promising candidates for sunlight harvesting and enhanced photosynthesis efficiency of crops. However, most of the studies focus on the design and synthesis of LNMs and primary metabolism in biomass acceleration, secondary metabolism that closely associated with the quality ingredients of plants is rarely mentioned.

RESULTS

UV-absorptive and water-soluble NIR-CDs were harvested via a facile microwave-assisted carbonization method. The effect and regulatory mechanism of NIR-CDs on the secondary metabolism and bioactive ingredients accumulation in Tetrastigma hemsleyanum were explored. A total of 191 differential secondary metabolites and 6874 differentially expressed genes were identified when the NIR-CDs were adopted for enhancing growth of T. hemsleyanum. The phenolic acids were generally improved, but the flavonoids were more likely to decrease. The pivotal differentially expressed genes were involved in biosynthesis of secondary metabolites, flavonoid biosynthesis, porphyrin and chlorophyll metabolism, etc. The gene-metabolite association was constructed and 44 hub genes highly related to quality ingredients accumulation and growth were identified, among which and the top 5 genes of the PPI network might be the key regulators.

CONCLUSION

This research provided key regulatory genes and differentially accumulating quality ingredients under NIR-CDs-treatment, which could provide a theoretical basis for expanding the applications of nanomaterial in industrial crop agriculture.

摘要

背景

发光纳米材料(LNMs),尤其是新开发的荧光碳点(CDs),已被证明是用于收集太阳光和提高作物光合作用效率的有前途的候选材料。然而,大多数研究都集中在 LNMs 的设计和合成以及生物质加速的初级代谢上,很少提及与植物质量成分密切相关的次级代谢。

结果

通过简便的微波辅助碳化方法收获了具有紫外吸收和水溶性能的近红外 CDs。研究了近红外 CDs 对三叶木通次生代谢和生物活性成分积累的影响及其调控机制。当采用近红外 CDs 来促进三叶木通生长时,共鉴定出 191 种差异次生代谢产物和 6874 个差异表达基因。总的来说,酚酸类物质普遍得到了改善,但类黄酮类物质更有可能减少。关键差异表达基因参与次生代谢物合成、类黄酮生物合成、卟啉和叶绿素代谢等过程。构建了基因-代谢物关联,并鉴定出 44 个与质量成分积累和生长高度相关的关键基因,其中 PPI 网络的前 5 个基因可能是关键调控因子。

结论

本研究提供了近红外 CDs 处理下的关键调控基因和差异积累的质量成分,为纳米材料在工业作物农业中的应用提供了理论基础。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/bf0e/8812181/448aedcb9937/12951_2022_1271_Fig1_HTML.jpg

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