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首页> 外文期刊>Journal of biosciences >Introduction of cryIB-cryIAa Hybrid Gene Into Rice (Oryza sativa) Genom cv. Rojolele using Agrobacterium-Mediated Transformation
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Introduction of cryIB-cryIAa Hybrid Gene Into Rice (Oryza sativa) Genom cv. Rojolele using Agrobacterium-Mediated Transformation

机译:将cryIB-cryIAa杂种基因导入水稻(Oryza sativa)Genom cv。使用农杆菌介导的转化的罗勒勒

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Rojolele is one of Indonesian local variety from Javanica group that susceptible to yellow stem borer (Scirpophaga incertulas). Previous study showed that Rojolele can be cultured and regenerated in vitro. Two cry genes, cryIB-cryIAa were fused and introduced into rice cv. Rojolele in an attempt to improve resistance and to obtain durable resistance rice against the yellow stem borer. Two-week old embryogenic calli of Rojolele rice were inoculated with Agrobacterium tumefaciens harbored with binary vector pCAMBIA 1301, 1303, or 1304 carrying cryIB-cryIAa hybrid gene, hygromycin resistant gene (hpt), and ?-glucuronidase (gus) gene interrupted with an intron. The transformed calli were selected gradually on medium containing hygromycin (50, 100 mg/l) and regenerated on medium containing 0.5 mg/l IAA and 0.3 mg/l BAP. GUS activity in infected calli was detected by histochemical assay 3 days after inoculation. The highest (100%) transformation efficiency were obtained from calli transformed with pCAMBIA 1303 and 1304. Thirty four out of 77 transformed shoots were tested positive for the cryIB-cryIAa gene using PCR analysis. These shoots were grown in the soil to maturity and to collect the seeds. PCR analysis of the T1 progeny revealed that two out of six lines tested showed a Mendelian segregation pattern. These two lines were also potentially resistant to yellow stem borer based on bioassay in planta. Key words: cryIB-cryIAa hybrid gene, yellow stem borer
机译:Rojolele是爪哇树属的印度尼西亚本地品种之一,易患黄stem虫(Scirpophaga incertulas)。先前的研究表明,Rojolele可以在体外培养和再生。将两个cry基因cryIB-cryIAa融合并引入水稻cv。 Rojolele试图提高抗性并获得对黄色茎bore的耐久稻。在两周大的罗约勒水稻胚性愈伤组织中接种带有双载体pCAMBIA 1301、1303或1304的根癌农杆菌,该载体带有cryIB-cryIAa杂种基因,潮霉素抗性基因(hpt)和被α-葡萄糖醛酸苷酶(gus)基因打断的内含子。在含有潮霉素(50,100 mg / l)的培养基上逐渐选择转化的愈伤组织,并在含有0.5 mg / l IAA和0.3 mg / l BAP的培养基上再生。接种后3天,通过组织化学分析检测感染的愈伤组织中的GUS活性。从用pCAMBIA 1303和1304转化的愈伤组织中获得最高的转化效率(100%)。使用PCR分析,对77个转化的枝条中的34个进行了测试,证明cryIB-cryIAa基因呈阳性。这些芽生长在土壤中成熟并收集种子。对T1后代的PCR分析表明,所测试的六株品系中有两株表现出孟德尔分离模式。根据植物中的生物测定,这两条品系还可能对黄色茎bore产生抗性。关键词:cryIB-cryIAa杂种基因,黄stem虫

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