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代谢组学和转录组学分析揭示嫁接对茄子营养特性的影响。

Metabolomic and Transcriptomic Analyses Reveal the Effects of Grafting on Nutritional Properties in Eggplant.

作者信息

Yan Yaqin, Wang Wuhong, Hu Tianhua, Hu Haijiao, Wang Jinglei, Wei Qingzhen, Bao Chonglai

机构信息

Institute of Vegetable, Zhejiang Academy of Agricultural Science, Hangzhou 310021, China.

出版信息

Foods. 2023 Aug 17;12(16):3082. doi: 10.3390/foods12163082.

Abstract

Grafting has a significant impact on the botany properties, commercial character, disease resistance, and productivity of eggplants. However, the mechanism of phenotypic modulation on grafted eggplants is rarely reported. In this study, a widely cultivated eggplant ( cv. 'Zheqie No.10') was selected as the scion and grafted, respectively, onto four rootstocks of TOR (), Sa (), SS (), and Sm64R ( cv. 'Qiezhen No. 64R') for phenotypic screening. Physiological and biochemical analysis showed the rootstock Sm64R could improve the fruit quality with the increasing of fruit size, yield, and the contents of total soluble solid, phenolic acid, total amino acid, total sugar, and vitamin C. To further investigate the improvement of fruit quality on Sm64R, a transcriptome and a metabolome between the Sm64R-grafted eggplant and self-grafted eggplant were performed. Significant differences in metabolites, such as phenolic acids, lipids, nucleotides and derivatives, alkaloids, terpenoids, and amino acids, were observed. Differential metabolites and differentially expressed genes were found to be abundant in three core pathways of nutritional qualities, including biosynthesis of phenylpropanoids, phospholipids, and nucleotide metabolism. Thus, this study may provide a novel insight into the effects of grafting on the fruit quality in eggplant.

摘要

嫁接对茄子的植物学特性、商业品质、抗病性和生产力有重大影响。然而,关于嫁接茄子表型调控的机制鲜有报道。在本研究中,选取广泛种植的茄子品种(‘浙茄10号’)作为接穗,分别嫁接到四种砧木TOR()、Sa()、SS()和Sm64R(‘茄砧64R’)上进行表型筛选。生理生化分析表明,砧木Sm64R可提高果实品质,表现为果实大小、产量以及总可溶性固形物、酚酸、总氨基酸、总糖和维生素C含量增加。为进一步探究Sm64R对果实品质的改善作用,对Sm64R嫁接茄子和自根嫁接茄子进行了转录组和代谢组分析。观察到酚酸、脂质、核苷酸及其衍生物、生物碱、萜类化合物和氨基酸等代谢物存在显著差异。发现差异代谢物和差异表达基因在营养品质的三个核心途径中丰富,包括苯丙烷类生物合成、磷脂和核苷酸代谢。因此,本研究可能为嫁接对茄子果实品质的影响提供新的见解。

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