[微弹轰击介导洋葱OSISAP1基因的遗传转化]。

植物生理与分子生物学学报 Pub Date : 2007-06-01
Qi-Jiang Xu, Cheng-Ri Cui
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引用次数: 0

摘要

以洋葱茎瓣诱导的胚性愈伤组织为靶组织,建立了微弹轰击介导的洋葱胚性愈伤组织转化方法。将锌指蛋白基因OSISAP1 (Oryza satiative亚种indica stress-associated protein基因)导入开放授粉洋葱品种(subs)。“HG400B”。优化轰击参数为:压力为1100 psi,距离为6 cm,两次,质粒DNA与金颗粒的质量比为1:20 20。建立了一种高效的微弹轰击介导洋葱愈伤组织转化体系。所采用的二元载体携带卡那霉素耐药nptII基因和GUS报告基因。筛选转基因培养物表达GUS报告基因的能力和在卡那霉素(150mg /L)存在下生长的能力。通过微弹轰击转化胚性愈伤组织的组织化学染色观察GUS报告基因的瞬时表达。利用PCR、southern杂交和RT-PCR对转基因植株进行分子水平分析。结果证实,OSISAP1基因作为一个拷贝被整合到洋葱基因组中并表达。以10%左右的转化频率获得了高效的转基因植株。盐碱胁迫试验表明,200 mmol/L的氯化钠和碳酸氢钠在灌溉后1周内有效杀死非转基因植株,而400 mmol/L的盐碱对转基因植株完全没有影响。因此,OSISAP1基因的转化使转基因植株的耐盐碱性提高到较高水平。
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[Genetic transformation of OSISAP1 gene to onion (Allium cepa L.) mediated by amicroprojectile bombardment].

Microprojectile bombardment-mediated transformation method has been developed for onion (Allium cepa L.) using embryogenic calli, induced from stem discs, as target tissue. Zinc-finger protein gene OSISAP1 (Oryza sative subspecies indica stress-associated protein gene) was introduced into the open-pollinated onion cultivar (subs.) 'HG400B'. Bombardment parameters were optimized as: the pressure is 1,100 psi, the distance is 6 cm, two times, the ratio of mass between plasmid DNA and golden particles is 1:320. An efficient microprojectile bombardment-mediated transformation system of onion (Allium cepa L.) callus has been established. The binary vector used carried the nptII gene for kanamycin resistance and the GUS reporter gene. Transgenic cultures were screened for their ability to express the GUS reporter gene and to grow in the presence of kanamycin (150 mg/L). Transient expression of GUS reporter gene was observed through histochemical staining of embryogenic callus transformed by microprojectile bombardment. The putative transgenic plants were analysed at the molecular level using PCR, southern hybridization, and RT-PCR. The results confirmed that the OSISAP1 gene was integrated as one copy into the genome of onion and expression. Transgenic plants were produced efficiently with a transformation frequency of about 10%. Test of salinity-alkali stress showed that sodium chloride and sodium bicarbonate at 200 mmol/L effectively killed non-transgenic plants within 1 week of irrigation, while the transgenic plants were completely unaffected by salinity of 400 mmol/L. So transformation with the OSISAP1 gene raised the salinity-alkali-tolerance of the transgenic plants to a high level.

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