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Transient Gene Expression in Maize, Rice, and Wheat Cells Using an Airgun Apparatus 1

机译:使用气枪装置在玉米,水稻和小麦细胞中进行瞬时基因表达1

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摘要

An airgun apparatus has been constructed for transient gene expression studies of monocots. This device utilizes compressed air from a commercial airgun to propel macroprojectile and DNA-coated tungsten particles. The β-glucuronidase (GUS) reporter gene was used to monitor transient expression in three distinct cell types of maize (Zea mays), rice (Oryza sativa), and wheat (Triticum aestivum). The highest level of GUS activity in cultured maize cells was observed when distance between stopping plate and target cells was adjusted to 4.3 centimeters. Efficiency of transformation was estimated to be 4.4 × 10−3. In a partial vacuum of 700 millimeters Hg, velocity of macroprojectile was measured at 520 meters per second with a 6% reduction in velocity at atmospheric pressure. A polyethylene film placed in the breech before firing contributed to a 12% increase in muzzle velocity. A 700 millimeters Hg level of vacuum was necessary for maximum number of transfornants. GUS expression was also detected in wheat leaf base tissue of microdissected shoot apices. High levels of transient gene expression were also observed in hard, compact embryogenic callus of rice. These results show that the airgun apparatus is a convenient, safe, and low-cost device for rapid transient gene expression studies in cereals.
机译:已经构造了用于单子叶植物的瞬时基因表达研究的气枪装置。该设备利用来自商业气枪的压缩空气来推动大弹丸和涂有DNA的钨粒子。 β-葡萄糖醛酸苷酶(GUS)报道基因被用于监测玉米(Zea mays),水稻(Oryza sativa)和小麦(Triticum aestivum)三种不同细胞类型的瞬时表达。当将终止板和靶细胞之间的距离调节至4.3厘米时,观察到培养的玉米细胞中GUS活性的最高水平。转换效率估计为4.4×10-3。在700毫米汞柱的局部真空下,以520米/秒的速度测量大弹的速度,在大气压下速度降低了6%。射击前放置在后膛中的聚乙烯薄膜使枪口速度提高了12%。为了获得最大数量的转化子,必须有700毫米汞柱的真空度。在微切的芽尖的小麦叶基组织中也检测到GUS表达。在坚硬紧凑的水稻胚性愈伤组织中也观察到高水平的瞬时基因表达。这些结果表明,气枪装置是用于谷物中快速瞬时基因表达研究的一种方便,安全且低成本的装置。

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