Stable integration of mgfp5 transgenes following Agrobacterium-mediated transformation in Boesenbergia rotunda cell suspension culture

Q1 Biochemistry, Genetics and Molecular Biology Frontiers in Life Science Pub Date : 2015-07-03 DOI:10.1080/21553769.2015.1051242
S. Wong, Fatin Iffah Rasyiqah Mohamad Zoolkefli, R. Karim, B. Tan, J. Harikrishna, N. Khalid
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引用次数: 1

Abstract

Boesenbergia rotunda, a herb in the ginger family, contains numerous beneficial compounds, such as flavonoids, flavones and cyclohexenyl chalcone derivatives, that have great potential for pharmaceutical applications. However, the low concentration of the bioactive compounds limits their commercial application. In this study, a simple and reliable Agrobacterium-mediated transformation protocol for B. rotunda cell suspension culture was successfully developed. The minimal inhibitory concentration and natural tolerance of the selective agent, hygromycin, against the cells were 20 mg l−l and 30 mg l−l in liquid media and solid media, respectively. The highest number of transformed regenerants (18 ± 0.00 per ml settled cell volume) was recorded when cells were infected with Agrobacterium tumefaciens harbouring pCAMBIA1304 for 10 min and co-cultivated for 2 days. Prolonged infection time (> 10 min) and co-cultivation period (> 2 days), however, did not increase the transformation efficiencies. The results clearly show that infection and co-cultivation periods strongly influenced the transformation efficiency in ginger. The transformed cells were recovered and showed green fluorescent signals under ultraviolet excitation. An intense blue colour was observed in the transformed cells after β-glucuronidase (GUS) histochemical staining, further confirming the functionality of the GUS enzymes in the regenerants. Polymerase chain reaction analysis of 3-, 6-, 9- and 12-month-old transformed cells confirmed that the protocol enabled stable integration of the mgfp5 gene. Moreover, the comparatively high number of transformed regenerants in this study made it possible to generate a large number of transgenic cells in a short period, which would be useful for high-throughput functional screening of enzymes involved in the biosynthetic pathways of bioactive compounds.
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农杆菌介导的mgfp5转基因在圆叶草细胞悬浮培养中的稳定整合
圆姜是生姜科的一种草本植物,含有许多有益的化合物,如黄酮类化合物、黄酮类化合物和环己烯查尔酮衍生物,具有很大的药用潜力。然而,生物活性化合物的低浓度限制了它们的商业应用。本研究成功建立了一种简单、可靠的农杆菌介导的圆圆芽孢杆菌悬浮培养转化方案。在液体培养基和固体培养基中,湿霉素对细胞的最小抑制浓度和自然耐受性分别为20 mg l - l和30 mg l - l。当含pCAMBIA1304的农杆菌感染细胞10分钟,共培养2天时,转化再生细胞的数量最高(18±0.00 / ml沉淀细胞体积)。然而,延长感染时间(>0 min)和共培养时间(bbb2 d)并没有提高转化效率。结果表明,侵染期和共培养期对姜的转化效率影响较大。转化后的细胞在紫外激发下显示绿色荧光信号。经β-葡萄糖醛酸酶(GUS)组织化学染色后,转化细胞呈深蓝色,进一步证实了GUS酶在再生细胞中的功能。对3个月、6个月、9个月和12个月大的转化细胞的聚合酶链反应分析证实,该方案能够稳定地整合mgfp5基因。此外,本研究中转化的再生体数量较多,可以在短时间内产生大量的转基因细胞,这将有助于对生物活性化合物生物合成途径中涉及的酶进行高通量功能筛选。
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来源期刊
Frontiers in Life Science
Frontiers in Life Science MULTIDISCIPLINARY SCIENCES-
CiteScore
5.50
自引率
0.00%
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0
期刊介绍: Frontiers in Life Science publishes high quality and innovative research at the frontier of biology with an emphasis on interdisciplinary research. We particularly encourage manuscripts that lie at the interface of the life sciences and either the more quantitative sciences (including chemistry, physics, mathematics, and informatics) or the social sciences (philosophy, anthropology, sociology and epistemology). We believe that these various disciplines can all contribute to biological research and provide original insights to the most recurrent questions.
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