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首页> 外文期刊>Journal of crop science and Biotechnology >Greenhouse evaluation and inheritance analysis of transgenic cotton expressing PTM3, a MADS-box gene of Aspen.
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Greenhouse evaluation and inheritance analysis of transgenic cotton expressing PTM3, a MADS-box gene of Aspen.

机译:表达 PTM3 (阿斯彭的MADS-box基因)的转基因棉花的温室评价和遗传分析。

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摘要

The PTM3 (MADS-box) gene characterized from flower of Aspen was ectopically expressed in cotton and was found to result in desirable agronomic traits. Among several transgenic lines, the PTM3 cotton event-10 was found to flower significantly earlier than the control and yield better [Ramachandran et al. (2011)]. We report our findings on performance based on greenhouse evaluation and inheritance of PTM3 cotton event-10. The T1 progeny of event-10 were grown in pots under RBD design. The progeny were confirmed by kanamycin imbibition test, PCR, and GUS assay which showed the segregation of transgene at about 3:1 ratio. GUS assay was performed with pollen from all transgenic plants; plants that expressed gus in all pollen versus those that showed segregation for expression were found to be at a ratio of 1:2. Similar to observations made in the T0 generation of event-10, the agronomic evaluation of T1 progeny exhibited, on an average, earliness of 13 days in flowering, 13.5 days in crop maturity, and 22% of yield enhancement. The T2 progeny of homozygous lines were grown on field soil in the greenhouse under strip trial design to see the effect as observed from potted plants of T1 progeny. Inheritance of transgene cassette to T2 progeny was confirmed by the same tests used to analyze T1 progeny. As exhibited by T0 and T1 progenies, the T2 progeny also showed earliness of 8 days in flowering, 12 days in crop maturity, and 17% of yield enhancement. The data generated from the progeny over two generations confirms that the PTM3 cotton event-10 is superior in agronomic characters as compared to non-transgenic cotton and is of interest for breeding shorter duration varieties with improved yield.
机译:以白杨花为特征的 PTM3 (MADS-box)基因在棉花中异位表达,并发现其具有理想的农艺性状。在几个转基因品系中,发现PTM3棉花event-10的开花时间明显早于对照,并且产量更高[Ramachandran等,2003年。 (2011)]。我们报告基于温室评估和PTM3棉花事件10的遗传对性能的发现。事件10的T 1 后代在RBD设计下在盆中生长。通过卡那霉素吸收试验,PCR和GUS测定法证实了后代,显示出转基因以约3∶1的比例分离。用来自所有转基因植物的花粉进行GUS测定。发现在所有花粉中表达gus的植物与表现出分离表达的植物的比率为1:2。与在事件10的T 0 世代中观察到的相似,对T 1 后代的农艺学评价平均表现为早花期13天,花期13.5天。作物成熟度和单产提高22%。在带状试验设计下,将纯合系的T 2 后代生长在温室的田间土壤上,以观察从盆栽的T 1 后代观察到的效果。通过用于分析T 1 后代的相同测试证实了转基因盒对T 2 后代的遗传。如T 0 和T 1 后代所显示的,T 2 后代还表现出提前开花期8天,作物成熟期12天,和提高产量的17%。从后代获得的两代人的数据证实,与非转基因棉花相比,PTM3棉花事件10的农艺性状优越,并且对于育种持续时间短,产量提高的品种很有用。

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