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首页> 外文期刊>In Vitro Cellular and Development Biology. Plant: Journal of the Tissue Culture Association >The use of an automated cell tracking system to identify specific cell types competent for regeneration and transformation.
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The use of an automated cell tracking system to identify specific cell types competent for regeneration and transformation.

机译:使用自动细胞跟踪系统来识别能够再生和转化的特定细胞类型。

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摘要

Combining stepper-motors for microscope stage movement with a specially designed software program has led to the establishment of an efficient cell tracking system. Cell immobilization, fixed reference points for calibration of target cell positions, and a video recording system complete the cell finder system. Specific cells can be identified (either beforehand or in retrospect), their locations fixed, and subsequent development of the individual cells monitored daily using computer-assisted relocation. In this way, the specific cell type capable of sustained division and regeneration has recently been identified within a low efficiency protoplast system of a recalcitrant species, sugarbeet. These totipotent cells originated from stomatal guard cells. Isolation and purification procedures were then optimized in a directed way to yield millions of guard cell protoplasts (GCPs). Using polyethylene glycol (PEG)-mediated gene transfer and glucuronidase (GUS) activity for transient expression studiesproved that GCPs were amenable to transformation. Gene transfer efficiency was high, as was the number of stably transformed plants that can be produced. At present, the optimized procedure yields 600 transgenic individuals per person per year. This number allows for the selection of the best plants with regard to copy number, DNA insert size, gene expression, and field performance. Prospects for future application of the cell finder system are discussed.
机译:将用于显微镜载物台移动的步进电机与经过特殊设计的软件程序相结合,导致建立了高效的细胞跟踪系统。细胞固定装置,用于校准目标细胞位置的固定参考点以及视频记录系统完善了细胞查找器系统。可以识别特定细胞(事先或回顾),固定其位置,并使用计算机辅助的重新定位每天监控单个细胞的后续发育。以这种方式,最近已经在顽calc物种甜菜的低效率原生质体系统中鉴定了能够持续分裂和再生的特定细胞类型。这些全能细胞起源于气孔保卫细胞。然后以定向方式优化分离和纯化程序,以产生数百万个保卫细胞原生质体(GCP)。使用聚乙二醇(PEG)介导的基因转移和葡糖醛酸糖苷酶(GUS)活性进行瞬时表达研究证明,GCP适合转化。基因转移效率很高,可以稳定转化的植物数量也很高。目前,优化的程序每人每年可产生600个转基因个体。该数目允许在拷贝数,DNA插入片段大小,基因表达和田间表现方面选择最佳植物。讨论了细胞发现系统的未来应用前景。

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