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Raffinose synthase 基因的时空表达模式决定了花生(Arachis hypogaea L.)种子中棉子糖家族寡糖的水平。

Spatio-temporal expression pattern of Raffinose Synthase genes determine the levels of Raffinose Family Oligosaccharides in peanut (Arachis hypogaea L.) seed.

机构信息

School of Genomics and Molecular Breeding, ICAR-Indian Institute of Agricultural Biotechnology, Garhkhatanga, Ranchi, 834003, India.

Division of Biochemistry, ICAR-Indian Agricultural Research Institute, New Delhi, 110012, India.

出版信息

Sci Rep. 2023 Jan 16;13(1):795. doi: 10.1038/s41598-023-27890-z.

Abstract

Raffinose family oligosaccharides (RFOs) are known to have important physiological functions in plants. However, the presence of RFOs in legumes causes flatulence, hence are considered antinutrients. To reduce the RFOs content to a desirable limit without compromising normal plant development and functioning, the identification of important regulatory genes associated with the biosynthetic pathway is a prerequisite. In the present study, through comparative RNA sequencing in contrasting genotypes for seed RFOs content at different seed maturity stages, differentially expressed genes (DEGs) associated with the pathway were identified. The DEGs exhibited spatio-temporal expression patterns with high RFOs variety showing early induction of RFOs biosynthetic genes and low RFOs variety showing a late expression at seed maturity. Selective and seed-specific differential expression of raffinose synthase genes (AhRS14 and AhRS6) suggested their regulatory role in RFOs accumulation in peanut seeds, thereby serving as promising targets in low RFOs peanut breeding programs. Despite stachyose being the major seed RFOs fraction, differential expression of raffinose synthase genes indicated the complex metabolic regulation of this pathway. The transcriptomic resource and the genes identified in this study could be studied further to develop low RFOs varieties, thus improving the overall nutritional quality of peanuts.

摘要

棉子糖家族低聚糖(RFOs)在植物中具有重要的生理功能。然而,豆类中的 RFOs 会引起胀气,因此被认为是抗营养物质。为了在不影响正常植物发育和功能的情况下,将 RFOs 含量降低到理想的水平,鉴定与生物合成途径相关的重要调控基因是前提。在本研究中,通过对不同种子成熟阶段不同种子 RFOs 含量的对照基因型进行比较 RNA 测序,鉴定了与该途径相关的差异表达基因(DEGs)。DEGs 表现出时空表达模式,高 RFOs 品种表现出 RFOs 生物合成基因的早期诱导,而低 RFOs 品种则在种子成熟时表现出晚期表达。棉子糖合酶基因(AhRS14 和 AhRS6)的选择性和种子特异性差异表达表明它们在花生种子中 RFOs 积累中的调控作用,因此可作为低 RFOs 花生育种计划中的有希望的目标。尽管棉子糖是主要的种子 RFOs 部分,但棉子糖合酶基因的差异表达表明该途径的代谢调控复杂。本研究中的转录组资源和鉴定的基因可以进一步研究,以开发低 RFOs 品种,从而提高花生的整体营养价值。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b969/9842710/b655275cef89/41598_2023_27890_Fig1_HTML.jpg

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