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首页> 外文期刊>Crop Science >Genetic Engineering of Maize with the Arabidopsis DREB1A/CBF3 Gene Using Split-Seed Explants
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Genetic Engineering of Maize with the Arabidopsis DREB1A/CBF3 Gene Using Split-Seed Explants

机译:利用分裂种子外植体利用拟南芥DREB1A / CBF3基因对玉米进行遗传工程改造

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摘要

Transformation of maize (Zea mays L.) split-seed explants from inbred line R23 was performed following particle bombardment with a construct carrying the Arabidopsis transcriptional factor CBF3 under the control of the inducible promoter rd29A and the selectable marker hygromycin phosphotransferase. Overexpressing CBF3 has been shown to enhance cold, drought, and salt tolerance in Arabidopsis, tobacco (Nicotiana tabacum L.), and wheat (Triticum aestivum L.). The CBF3 gene was detected in 18 lines by polymerase chain reaction (PCR), and stable integration of multiple copies of CBF3 was confirmed by Southern blot analysis in three selected lines. Reverse transcription PCR detected expression of CBF3 in the transgenic lines under unstressed conditions despite the use of the stress-inducible rd29A promoter. This constitutive expression was associated with growth retardation and sterility in most of the transgenic lines. Transmission of the gene in a Mendelian fashion to T1 and T2 generations was confirmed in one line by Southern blot analysis. Plants of this line showed stress-inducible expression of the CBF3 gene and hardly detectable expression under unstressed conditions along with significant tolerance to cold, drought, and salinity compared with wild-type plants. These results demonstrate that stress-inducible overexpression of CBF3 has the potential to enhance abiotic stress tolerance in corn.
机译:用携带拟南芥转录因子CBF3的构建体在可诱导启动子rd29A和选择标记潮霉素磷酸转移酶的控制下,对自交系R23的玉米(Zea mays L.)分裂种子外植体进行转化。在拟南芥,烟草(Nicotiana tabacum L.)和小麦(Triticum aestivum L.)中,过表达的CBF3已显示出增强的耐寒,干旱和耐盐性。通过聚合酶链反应(PCR)在18个品系中检测到CBF3基因,并通过Southern印迹分析在三个选定品系中确认了多个拷贝的CBF3的稳定整合。尽管使用了应激诱导型rd29A启动子,逆转录PCR仍能在无胁迫条件下检测转基因品系中CBF3的表达。在大多数转基因品系中,该组成型表达与生长迟缓和不育有关。通过Southern印迹分析证实了以孟德尔方式将基因传至T1和T2世代。与野生型植物相比,该品系的植物显示了CBF3基因的胁迫诱导表达,在未胁迫条件下几乎检测不到表达,并且对寒冷,干旱和盐碱具有显着的耐受性。这些结果表明,CBF3胁迫诱导的过表达具有增强玉米非生物胁迫耐受性的潜力。

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