Amoah B K, Wu H, Sparks C, Jones H D
Biochemistry and Physiology Department, IACR-Rothamsted, Harpenden AL5 2JQ, UK.
J Exp Bot. 2001 May;52(358):1135-42. doi: 10.1093/jexbot/52.358.1135.
A critical step in the development of Agrobacterium tumifaciens-mediated transformation is the establishment of optimal conditions for T-DNA delivery into tissue from which whole plants can be regenerated. The efficient transformation of inflorescence tissue from 'Baldus', a commercial wheat variety, using the Agrobacterium strain AGLI harbouring the binary vector pAL156 is reported here. The effects of various factors on delivery and the transient expression of the uidA gene were studied including the duration of preculture, vacuum infiltration, the effect of sonication treatments, and Agrobacterium cell density. Optimal T-DNA delivery (as measured by uidA activity) was obtained from inflorescence tissues precultured for 21 d and sonicated. Increasing Agrobacterium cell density, the duration of inoculation/co-cultivation, and vacuum pressure, up to a threshold, increased uidA expression. The investigation of factors that influence T-DNA delivery is an important first step in the utilization of Agrobacterium in the transformation of immature wheat inflorescence tissue.
根癌农杆菌介导转化过程中的一个关键步骤是建立将T-DNA导入能够再生出完整植株的组织的最佳条件。本文报道了使用携带二元载体pAL156的根癌农杆菌AGLI菌株对商业小麦品种“Baldus”的花序组织进行高效转化。研究了各种因素对uidA基因传递和瞬时表达的影响,包括预培养时间、真空渗透、超声处理的效果以及农杆菌细胞密度。通过对预培养21天并经超声处理的花序组织进行检测,获得了最佳的T-DNA传递效果(以uidA活性衡量)。在达到阈值之前,提高农杆菌细胞密度、接种/共培养时间以及真空压力,可增加uidA表达。研究影响T-DNA传递的因素是利用农杆菌转化未成熟小麦花序组织的重要第一步。