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Optimization of Callus Genetic Transformation System and Its Application in FtCHS1 Overexpression in Tartary Buckwheat
Scientia Agricultura Sinica 2022, 55(9): 1723-1734
Published: 01 May 2022
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【Objective】

To develop a novel tool for functional verification and molecular breeding in tartary buckwheat, this study focused on establishing and optimizing an efficient callus genetic transformation system.

【Method】

Callus induction factors including different explants, ratios of diverse growth regulators, and Agrobacterium tumefaciens types were systematically evaluated using “Xiqiao No. 2” as the derived plant. We further overexpressed FtCHS1, a key enzyme gene involved in the biosynthesis of tartary buckwheat flavonoids in obtained calli to validate the optimized genetic callus transformation system. The positive transgenic lines were confirmed by PCR and fluorescent observation. Subsequently, the content of anthocyanins and metabolites in flavonol branch pathway were determined by UV spectrophotometry and High Performance Liquid Chromatography (HPLC), respectively. Furthermore, quantitative real-time PCR was performed to analyze expression levels of genes involved in flavonoid synthesis, in order to compare the differences between the FtCHS1-overexpressed calli and the control.

【Result】

The optimal explant was hypocotyls and the optimal induction medium was the Murashige and Skoog (MS) medium supplemented with the addition of 0.8 mg·L-1 6-BA (6-Benzylaminopurine) and 3.5 mg·L-1 2,4-D (2,4-Dichlorophenoxyacetic acid). The induction rate of calli grown on the above medium reached up to 72%. Moreover, the optimized subculture medium containing MS with the additives of 3 mg·L-1 6-BA and 1 mg·L-1 KT (Kinetin) increased the percentage and coefficient of callus proliferation to 98% and 1.09, respectively. Additionally, the best Agrobacterium tumefaciens in the transformation process was GV3101, and the transformation efficiency was up to 31.3%. The functional analysis of FtCHS1 overexpressing in transgenetic calli demonstrated that: (1) The accumulations of kaempferol and quercetin in transgenic calli overexpressing FtCHS1 were dramatically higher than those in control groups (P<0.01), and anthocyanin, rutin and myricetin contents were also remarkably higher (P<0.05); (2) Overexpression of the exogenous FtCHS1 did not affect the expression levels of 5 endogenous orthologous genes FtCHSs in the transgenic calli (P>0.05), whereas genes encoding key enzymes of the flavonoid synthesis pathway, such as FtCHI, FtF3H, FtFLS1, FtFLS2, FtFLS3, and FtDFR1, were up-regulated (P<0.05); (3) FtMYB5 and FtMYB6, the transcription factor genes that specifically positively regulated the flavonol synthesis, were up-regulated, while FtMYB8, a suppressor gene of anthocyanin synthesis, was down-regulated (P<0.05).

【Conclusion】

In this study, the callus genetic transformation system of tartary buckwheat was successfully established from “Xiqiao No. 2”. FtCHS1 overexpression in the transgenic calli up-regulated genes related to flavonoid synthesis, resulting in flavonoids accumulation.

Open Access Research Article Issue
Comparative study of the effects of Tartary buckwheat seed and sprout consumption on the physiological indices and gut microbiota of C57BL/6J mice
Food Science and Human Wellness 2024, 13(2): 791-800
Published: 25 September 2023
Abstract PDF (4.7 MB) Collect
Downloads:352

Tartary buckwheat (Fagopyrum tataricum) is a well-known pseudocereal for its health and economic value.However, abundant antinutritional factors (ANFs) reduces its health benefits.As reported, germination can improve the nutritional prof ile of grains.In this study, we systematically evaluate the safety of Tartary buckwheat seeds (TB) and Tartary buckwheat sprouts (TBS) used as high active ingredients.After evaluating nutrition levels, bioactive compounds and ANFs in TBS during germinating, 5th-day TBS were selected as the raw material.C57BL/6J mice were gavaged daily with distilled water, TB, or TBS for 6 weeks.The physiological indices related to ANFs were determined.Results showed that the TB intake tends to generate negative effects on the gut microbiota, and organs.Additionally, upon TB intake, the Fe3+ content in serum, trypsin activity in pancreas and jejunum decreased, while the cytokine, IgE, and histamine levels in serum, water content in faeces, cytokine levels in liver and jejunum increased.Conversely, TBS did not induce any obvious negative effects on the above relevant indices and showed better lipid-lowering effect.Altogether, TBS are safer and more effective as a raw material to produce the functional food for long-term consumption with the intention of preventing and treating hyperlipidaemia.

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