Department of Plant Pathology, Kansas State University, Manhattan, KS 66502, USA.
Plant Cell Rep. 2010 Feb;29(2):113-23. doi: 10.1007/s00299-009-0803-2. Epub 2009 Dec 15.
Production of stable transgenic plants is one factor that limits rapid evaluation of tissue specific transgene expression. To hasten the assessment of transgenes in planta, we evaluated the use of chimeric soybean seedlings expressing transgenic products in roots. Tap roots from four-day old seedlings (cultivars 'Jack' and KS4704) were excised and hairy roots were induced from hypocotyls via Agrobacterium rhizogenes-mediated transformation. Inoculated hypocotyls were screened on a MS-based medium containing either 200 mg/L kanamycin or 20 mg/L hygromycin. Beta-glucuronidase (GUS) activity assay indicated that highest GUS expression was observed in hypocotyls exposed to a 4-d pre-inoculation time, a neutral pH (7.0) for the co-cultivation medium. A 170-bp of the Fib-1 gene and 292-bp of the Y25C1A.5 gene fragments, both related to nematode reproduction and fitness, were cloned independently into pANDA35HK vector using a Gateway cloning strategy. The resulting RNAi constructs of the genes fragments were transformed into soybean using the chimeric hairy root system and evaluated for its effect on soybean cyst nematode (Heterodera glycines) fecundity. Confirmation of transformation was attained by polymerase chain reaction and Southern-blot analysis, and some potential for suppression of H. glycines reproduction was detected for the two constructs. This method takes on average four weeks to produce chimeric plants ready for transgene analysis.
生产稳定的转基因植物是限制快速评估组织特异性转基因表达的因素之一。为了加速转基因在植物中的评估,我们评估了在根中表达转基因产物的嵌合大豆幼苗的使用。从四天龄的幼苗(品种 'Jack' 和 KS4704)中切取主根,并通过根瘤农杆菌介导的转化从下胚轴诱导出毛状根。将接种的下胚轴筛选在含有 200mg/L 卡那霉素或 20mg/L 潮霉素的 MS 基础培养基上。β-葡萄糖醛酸酶(GUS)活性测定表明,在预接种时间为 4 天、共培养培养基的 pH 值为中性(7.0)的情况下,下胚轴的 GUS 表达最高。与线虫繁殖和适应性相关的 Fib-1 基因的 170-bp 和 Y25C1A.5 基因的 292-bp 片段分别使用 Gateway 克隆策略独立克隆到 pANDA35HK 载体中。使用嵌合毛状根系统将这些基因片段的 RNAi 构建体转化到大豆中,并评估其对大豆胞囊线虫(Heterodera glycines)生殖力的影响。通过聚合酶链反应和 Southern 印迹分析证实了转化,并且检测到这两个构建体对 H. glycines 繁殖具有一定的抑制潜力。这种方法平均需要四周的时间才能生产出准备好进行转基因分析的嵌合植物。