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‘京枣39’愈伤组织遗传转化体系构建
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作者 冯雪晶 马灵 +3 位作者 杨爽 薄文浩 陈学勋 庞晓明 《北京林业大学学报》 CAS CSCD 北大核心 2024年第10期74-80,共7页
【目的】以‘京枣39’愈伤组织为外植体进行遗传转化,建立枣树愈伤组织遗传转化体系,优化阳性植株鉴定方法。【方法】本研究以‘京枣39’愈伤组织为转化材料,利用含有报告基因eYGFPuv的改造载体,并通过根癌农杆菌介导方法转化,探究预培... 【目的】以‘京枣39’愈伤组织为外植体进行遗传转化,建立枣树愈伤组织遗传转化体系,优化阳性植株鉴定方法。【方法】本研究以‘京枣39’愈伤组织为转化材料,利用含有报告基因eYGFPuv的改造载体,并通过根癌农杆菌介导方法转化,探究预培养时间、农杆菌菌液浓度、侵染时间、乙酰丁香酮浓度、共培养时间对转化率的影响,建立愈伤组织遗传转化体系并优化阳性植株鉴定方法。【结果】(1)卡那霉素对愈伤组织的最小致死质量浓度为30 mg/L。(2)遗传转化最佳处理条件为预培养时间为4 d,菌液OD600为0.6,侵染时间20 min,乙酰丁香酮浓度100μmol/L,共培养时间为4 d;(3)阳性愈伤组织在365 nm紫外光下呈现明亮的荧光绿色,平均转化率达21.2%。【结论】经对比试验,成功建立了‘京枣39’愈伤组织遗传转化体系,为加速枣遗传转化提供了新的方法。 展开更多
关键词 ‘京枣39’ 愈伤组织 遗传转化 eygfpuv
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Synthesis and characteristic of a novel green fluorescent protein eYGFPuv 被引量:1
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作者 Shihang Fan Linbin Deng +4 位作者 Hongli Yang Liang Zhang Xingchao Sun Jinglin Liu Jing Liu 《Oil Crop Science》 2019年第2期65-74,共10页
Recently, a novel green fluorescent protein eYGFPuv has been identified in the marine organism Chiridius poppei which displays high fluorescence intensity and can be visible by eyes in dark. Although strong green fluo... Recently, a novel green fluorescent protein eYGFPuv has been identified in the marine organism Chiridius poppei which displays high fluorescence intensity and can be visible by eyes in dark. Although strong green fluorescence was achieved in transgenic petunia, 3 expression cassettes (about 8 kb) complicate its application. In this study, to confirm whether 1 expression cassette could be used as a transgenic marker in prokaryotes and eukaryotes, eYGFPuv was cloned into prokaryotic expression vector pET28α-eYGFPuv- His and plant binary expression vector 35S::eYGFPuv. Compared to EGFP, eYGFPuv protein exhibited stronger dazzling green fluorescence in E. coli under excited light at 365 nm and maintains steadily over a long period of time without degradation. When transiently expressed in tobacco leaves, eYGFPuv protein displayed strong green fluorescence. Moreover, the fluorescence of eYGFPuv protein also could be directly observed in living plant, and thus can be used easily as a marker to screen transformed lines in transgenic research. Overall, compared to previous studies on eYGFPuv tandem repeats, our data confirmed that single eYGFPuv sequence still possesses high fluorescence intensity and quenching resistance. Furthermore, because of small size of expression cassette,it is suitable for efficient transformation in both prokaryotic and eukaryotic organisms. 展开更多
关键词 eygfpuv green FLUORESCENT PROTEIN SCREENING MARKER
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