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转录组和超高效液相色谱-串联质谱联用技术揭示不同砧木嫁接后纽荷尔脐橙氨基酸生物合成机制

Transcriptome and UPLC-MS/MS reveal mechanisms of amino acid biosynthesis in sweet orange 'Newhall' after different rootstocks grafting.

作者信息

Xiong Bo, Li Qin, Yao Junfei, Zheng Wei, Ou Yinghong, He Yuanyuan, Liao Ling, Wang Xun, Deng Honghong, Zhang Mingfei, Sun Guochao, He Siya, He Jiaxian, Zhang Xiaoai, Wang Zhihui

机构信息

College of Horticulture, Sichuan Agricultural University, Chengdu, China.

出版信息

Front Plant Sci. 2023 Jul 11;14:1216826. doi: 10.3389/fpls.2023.1216826. eCollection 2023.

Abstract

Sweet orange 'Newhall' (C. sinensis) is a popular fruit in high demand all over the world. Its peel and pulp are rich in a variety of nutrients and are widely used in catering, medicine, food and other industries. Grafting is commonly practiced in citrus production. Different rootstock types directly affect the fruit quality and nutritional flavor of citrus. However, the studies on citrus metabolites by grafting with different rootstocks are very limited, especially for amino acids (AAs). The preliminary test showed that there were significant differences in total amino acid content of two rootstocks ( (CT) and (CJ)) after grafting, and total amino acid content in the peel was higher than flesh. However, the molecular mechanism affecting amino acid differential accumulation remains unclear. Therefore, this study selected peel as the experimental material to reveal the amino acid components and differential accumulation mechanism of sweet orange 'Newhall' grafted with different rootstocks through combined transcriptome and metabolome analysis. Metabolome analysis identified 110 amino acids (AAs) and their derivatives in sweet orange 'Newhall' peels, with L-valine being the most abundant. L-asparagine was observed to be affected by both developmental periods and rootstock grafting. Weighted gene co-expression network analysis (WGCNA) combined with Redundancy Analysis (RDA) revealed eight hub structural genes and 41 transcription factors (TFs) that significantly influenced amino acid biosynthesis in sweet orange 'Newhall' peels. Our findings further highlight the significance of rootstock selection in enhancing the nutritional value of citrus fruits and might contribute to the development of functional citrus foods and nutritional amino acid supplements.

摘要

甜橙“纽荷尔”(Citrus sinensis)是一种在全球广受欢迎且需求量大的水果。其果皮和果肉富含多种营养成分,广泛应用于餐饮、医药、食品等行业。嫁接是柑橘生产中常用的方法。不同的砧木类型直接影响柑橘的果实品质和营养风味。然而,关于不同砧木嫁接对柑橘代谢物的研究非常有限,尤其是对氨基酸(AAs)的研究。初步试验表明,两种砧木(CT和CJ)嫁接后总氨基酸含量存在显著差异,且果皮中的总氨基酸含量高于果肉。然而,影响氨基酸差异积累的分子机制仍不清楚。因此,本研究选择果皮作为实验材料,通过转录组和代谢组联合分析,揭示不同砧木嫁接甜橙“纽荷尔”的氨基酸成分和差异积累机制。代谢组分析在甜橙“纽荷尔”果皮中鉴定出110种氨基酸(AAs)及其衍生物,其中L-缬氨酸含量最高。观察到L-天冬酰胺受发育时期和砧木嫁接的双重影响。加权基因共表达网络分析(WGCNA)结合冗余分析(RDA)揭示了8个关键结构基因和41个转录因子(TFs),它们对甜橙“纽荷尔”果皮中的氨基酸生物合成有显著影响。我们的研究结果进一步凸显了砧木选择在提高柑橘果实营养价值方面的重要性,并可能有助于功能性柑橘食品和营养氨基酸补充剂的开发。

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