Broothaerts Wim, Mitchell Heidi J, Weir Brian, Kaines Sarah, Smith Leon M A, Yang Wei, Mayer Jorge E, Roa-Rodríguez Carolina, Jefferson Richard A
CAMBIA, Research Centre of Charles Sturt University, G.P.O. Box 3200, Canberra, ACT 2601, Australia.
Nature. 2005 Feb 10;433(7026):629-33. doi: 10.1038/nature03309.
Agrobacterium is widely considered to be the only bacterial genus capable of transferring genes to plants. When suitably modified, Agrobacterium has become the most effective vector for gene transfer in plant biotechnology. However, the complexity of the patent landscape has created both real and perceived obstacles to the effective use of this technology for agricultural improvements by many public and private organizations worldwide. Here we show that several species of bacteria outside the Agrobacterium genus can be modified to mediate gene transfer to a number of diverse plants. These plant-associated symbiotic bacteria were made competent for gene transfer by acquisition of both a disarmed Ti plasmid and a suitable binary vector. This alternative to Agrobacterium-mediated technology for crop improvement, in addition to affording a versatile 'open source' platform for plant biotechnology, may lead to new uses of natural bacteria-plant interactions to achieve plant transformation.
农杆菌被广泛认为是唯一能够将基因转移到植物中的细菌属。经过适当改造后,农杆菌已成为植物生物技术中最有效的基因转移载体。然而,专利格局的复杂性给全球许多公共和私人组织利用这项技术进行农业改良带来了实际和认知上的障碍。在此我们表明,农杆菌属以外的几种细菌可以经过改造来介导基因转移到多种不同的植物中。通过获取一个解除武装的Ti质粒和一个合适的二元载体,这些与植物相关的共生细菌具备了基因转移能力。这种替代农杆菌介导技术用于作物改良的方法,除了为植物生物技术提供一个通用的“开源”平台外,还可能带来利用天然细菌与植物相互作用实现植物转化的新用途。