首页> 外文期刊>Plant Cell, Tissue and Organ Culture: An International Journal on in Vitro Culture of Higher Plants >Regeneration of buckwheat plantlets from hypocotyl and the influence of exogenous hormones on rutin content and rutin biosynthetic gene expression in vitro
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Regeneration of buckwheat plantlets from hypocotyl and the influence of exogenous hormones on rutin content and rutin biosynthetic gene expression in vitro

机译:下胚轴对荞麦幼苗的再生及其外源激素对芦丁含量和芦丁生物合成基因表达的影响。

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We developed an in vitro regeneration system using the buckwheat species, Fagopyrum esculentum (Wenshatianqiao, WS) and Fagopyrum tataricum (Jiujiangkuqiao, JJ) in order to test the relationship between biosynthesis and accumulation of rutin and expression of genes encoding rutin biosynthetic enzymes. Hypocotyl explants were incubated on MS solid medium supplemented with 2,4-D and different concentrations of BA to optimize callus production from 'WS' and 'JJ', respectively. We also compared the rutin content in F. esculentum and F. tataricum plantlets regenerating with and without BA, after treatment with salicylic acid (SA) and methyl jasmonate (MeJA) for 12, 24, 48 h. The highest rutin content (5.01 mg gFW(-1)) in regenerating plantlets was found in F. tataricum treated with SA for 24 h. We found no significant accumulation of rutin in F. esculentum. Following qRT-PCR analysis, gene expression patterns of rutin-biosynthesis-related genes regulated by SA and MeJA were found to be significantly different between the two buckwheat species. Four genes (FtCHS, Ft4CL, FtF3H and FtFLS) were up-regulated at different time points in 'JJ' following application of BA, SA, and MeJA, especially after 24 h MeJA treatment, where the FtCHS expression level was 11.55 times that of control. In 'WS' following the same treatment regime only two genes, FeCHS (2.67-fold) and Fe4CL (2.42-fold), were significantly up-regulated by MeJA and only at the latest time point (48 h); results for other genes and treatments were found to be close to or even lower than the control. These results provide an improved method for F. esculentum regeneration, extend the process to F. tataricum, and suggest that, although the gene expression patterns were quite different in F. esculentum and. F. tataricum, rutin content could be enhanced to a great extent by exogenous hormones.
机译:为了测试芦丁的生物合成和积累与编码芦丁生物合成酶的基因表达之间的关系,我们开发了一种利用荞麦种,荞麦(Wingshatianqiao,WS)和荞麦(Fagopyrum tataricum)(JJJianjiangkuqiao,JJ)的体外再生系统。下胚轴外植体在补充有2,4-D和不同浓度BA的MS固体培养基上孵育,以分别优化从'WS'和'JJ'产生的愈伤组织。我们还比较了水杨酸(SA)和茉莉酸甲酯(MeJA)处理12、24、48小时后,在有无BA的情况下,番茄和番茄苗中芦丁的含量。在用SA处理24 h的番茄中,再生小植株的芦丁含量最高(5.01 mg gFW(-1))。我们没有发现芦丁中有大量的芦丁积累。经过qRT-PCR分析,发现两个荞麦物种之间由SA和MeJA调控的芦丁生物合成相关基因的基因表达模式显着不同。应用BA,SA和MeJA后,“ JJ”中的四个时间点的四个基因(FtCHS,Ft4CL,FtF3H和FtFLS)上调,特别是在MeJA处理24小时后,FtCHS表达水平是其的11.55倍。控制。在遵循相同治疗方案的“ WS”中,仅MeCH显着上调了FeCHS(2.67倍)和Fe4CL(2.42倍)两个基因,并且仅在最近的时间点(48小时)。发现其他基因和治疗的结果接近或低于对照。这些结果提供了一种改进的方法,用于番茄的再生,将过程扩展到番茄,并表明尽管基因表达模式在番茄和番茄中完全不同。 t桐中芦丁的含量可以通过外源激素大大提高。

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