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多组学分析揭示两个品种嫩梢的代谢和转录差异。

Multi-Omics Analyses Unravel Metabolic and Transcriptional Differences in Tender Shoots from Two Varieties.

作者信息

Du Zhihui, Qu Fei, Zhang Chaojun, Chen Zhilin, Li Yurong, Wen Linhong

机构信息

Guizhou Horticulture Institute, Guizhou Academy of Agricultural Sciences, Guiyang 550009, China.

出版信息

Curr Issues Mol Biol. 2023 Nov 13;45(11):9060-9075. doi: 10.3390/cimb45110568.

Abstract

Chaylte vine, the tender shoot of , is popular among vegetable consumers because of its high nutritional content, crisp texture, and unique flavor. Existing studies on the nutrient composition of chaylte vines are mostly simple chemical determinations, which have limited the breeding of specialized cultivars and the development of related industries. Using metabolomics combined with transcriptomics, this study analyzed the metabolic characteristics and related molecular mechanisms of two common varieties of chaylte vines: green-skinned (SG) and white-skinned (SW). Between the two varieties, a total of 277 differentially accumulated metabolites (DAMs) and 739 differentially expressed genes (DEGs) were identified. Furthermore, chemical assays demonstrated that the SW exhibited a higher total flavonoid content and antioxidant capacity. In conclusion, it was found that the SG samples exhibited a higher diversity of flavonoid subclasses compared to the SW samples, despite having a lower total flavonoid content. This inconsistent finding was likely due to the differential expression of the phenylalanine ammonia-lyase (PAL) and chalcone synthase (CHS) genes in the two varieties. These results laid the foundation for investigating the mechanisms involved in flavonoid regulation and the breeding of specialized cultivars for chaylte vine production.

摘要

佛手瓜嫩梢因其营养丰富、质地脆嫩、风味独特而深受蔬菜消费者喜爱。现有关于佛手瓜嫩梢营养成分的研究大多是简单的化学测定,这限制了专用品种的选育和相关产业的发展。本研究采用代谢组学结合转录组学的方法,分析了两种常见佛手瓜品种:绿皮(SG)和白皮(SW)的代谢特征及相关分子机制。在这两个品种之间,共鉴定出277种差异积累代谢物(DAMs)和739个差异表达基因(DEGs)。此外,化学分析表明,SW的总黄酮含量和抗氧化能力较高。总之,研究发现,尽管SG的总黄酮含量较低,但其黄酮亚类的多样性高于SW样品。这一不一致的发现可能是由于两个品种中苯丙氨酸解氨酶(PAL)和查尔酮合酶(CHS)基因的差异表达所致。这些结果为研究黄酮类化合物调控机制和佛手瓜专用品种选育奠定了基础。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4c3e/10670898/e55259731509/cimb-45-00568-g001.jpg

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