[Establisment of a genetic transformation method of coffee (Coffea arabica cv. Catimor) and incorporation of bar gene for ammonium glufosinate resistance].

Acta cientifica venezolana Pub Date : 2003-01-01
Rafael Fernández Da Silva
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Abstract

In order to establish a successful method of genetic transformation in Coffea arabica cv. Catimor, different conditions of generation and electroporation were evaluated on different plant tissues. Cell suspension system was improved using one hormone only (BA), obtaining high yields of primary and secondary somatic embryo production. For selection of viable and potentially transformed cells, MTT (1%) method and ammonium glufosinate concentration (1 mg/L in leaf, callus and embryos; and 5 mg/L in cells) were established. Different conditions were evaluated to electroporate different explants (embryogenic callus, vitroplants leaves, globular and torpedo embryos). The highest gus gene expression percentage by explant were found on enzymatic treated tissues at 375 V/cm in callus, and at 625 V/cm in leaves and embryos. Torpedo embryos cultured on liquid medium were the only type of tissue that could regenerate into plants, where secondary somatic embryos were obtained. Those embryos were positive to the gus gene histochemical test and to the gus and bar genes amplification on a PCR reaction.

咖啡(Coffea arabica cv.)遗传转化方法的建立。[Catimor]和bar基因的掺入对草铵膦抗性的影响。
为了建立一种成功的阿拉比卡咖啡遗传转化方法。在不同的植物组织中,对不同的温度、不同的生成条件和电穿孔进行了评价。采用单激素(BA)对细胞悬浮体系进行了改进,获得了高产量的初生和次生体细胞胚。在叶片、愈伤组织和胚胎中,采用MTT(1%)法和草甘膦铵浓度(1 mg/L)筛选活细胞和潜在转化细胞;5 mg/L)。对不同外植体(胚性愈伤组织、离体植物叶片、球形胚和鱼雷胚)的电穿孔条件进行了评价。gus基因外植体表达率最高的是375 V/cm的愈伤组织,625 V/cm的叶片和胚。在液体培养基上培养的鱼雷胚胎是唯一一种可以再生成植物的组织,在那里获得了次生体细胞胚胎。gus基因组织化学检测阳性,PCR扩增gus和bar基因阳性。
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