Hood E E, Helmer G L, Fraley R T, Chilton M D
J Bacteriol. 1986 Dec;168(3):1291-301. doi: 10.1128/jb.168.3.1291-1301.1986.
We used a binary-vector strategy to study the hypervirulence of Agrobacterium tumefaciens A281, an L,L-succinamopine strain. Strain A281 is hypervirulent on several solanaceous plants. We constructed plasmids (pCS65 and pCS277) carrying either the transferred DNA (T-DNA) or the remainder of the tumor-inducing (Ti) plasmid (pEHA101) from this strain and tested each of these constructs in trans with complementary regions from heterologous Ti plasmids. Hypervirulence on tobacco could be reconstructed in a bipartite strain with the L,L-succinamopine T-DNA and the vir region on separate plasmids. pEHA101 was able to complement octopine T-DNA to hypervirulence on tobacco and tomato plants. Nopaline T-DNA was complemented better on tomato plants by pEHA101 than it was by its own nopaline vir region, but not to hypervirulence. L,L-Succinamopine T-DNA could not be complemented to hypervirulence on tobacco and tomato plants with either heterologous vir region. From these results we suggest that the hypervirulence of strain A281 is due to non-T-DNA sequences on the Ti plasmid.
我们采用二元载体策略来研究根癌农杆菌A281(一种L,L-琥珀碱型菌株)的超毒力。A281菌株对几种茄科植物具有超毒力。我们构建了携带该菌株的转移DNA(T-DNA)或致瘤(Ti)质粒(pEHA101)其余部分的质粒(pCS65和pCS277),并使用来自异源Ti质粒的互补区域对这些构建体中的每一个进行反式测试。在具有L,L-琥珀碱型T-DNA和位于不同质粒上的vir区的二分体菌株中,可以重建对烟草的超毒力。pEHA101能够使章鱼碱型T-DNA在烟草和番茄植株上恢复超毒力。胭脂碱型T-DNA在番茄植株上被pEHA101互补的效果比其自身的胭脂碱型vir区更好,但未达到超毒力。L,L-琥珀碱型T-DNA无论使用哪种异源vir区,在烟草和番茄植株上都无法被互补至超毒力。根据这些结果,我们认为A281菌株的超毒力是由于Ti质粒上的非T-DNA序列所致。