Upadhyaya Narayana M, Zhu Qian-Hao, Zhou Xue-Rong, Eamens Andrew L, Hoque Mohammad S, Ramm Kerrie, Shivakkumar Ramannee, Smith Kathryn F, Pan Shu-Ting, Li Suzhi, Peng Kefan, Kim Song J, Dennis Elizabeth S
CSIRO Plant Industry, GPO Box 1600, 2601, Canberra, ACT, Australia.
Theor Appl Genet. 2006 May;112(7):1326-41. doi: 10.1007/s00122-006-0235-0. Epub 2006 Feb 28.
We have developed a transiently-expressed transposase (TET)-mediated Dissociation (Ds) insertional mutagenesis system for generating stable insertion lines in rice which will allow localized mutagenesis of a chromosomal region. In this system, a Ds containing T-DNA construct was used to produce Ds launch pad lines. Callus tissues, from single-copy Ds/T-DNA lines, were then transiently infected with Agrobacterium harbouring an immobile Ac (iAc) construct, also containing a green fluorescent protein gene (sgfpS65T) as the visual marker. We have regenerated stable Ds insertion lines at a frequency of 9-13% using selection for Ds excision and GFP counter selection against iAc and nearly half of them were unique insertion lines. Double transformants (iAc/Ds) were also obtained and their progeny yielded approximately 10% stable insertion lines following excision and visual marker screening with 50% redundancy. In general, more than 50% of the Ds reinsertions were within 1 cM of the launch pad. We have produced a large number of single-copy Ds/T-DNA launch pads distributed over the rice chromosomes and have further refined the Ds/T-DNA construct to enrich for "clean" single-copy T-DNA insertions. The availability of single copy "clean" Ds/T-DNA launch pads will facilitate chromosomal region-directed insertion mutagenesis. This system provides an opportunity for distribution of gene tagging tasks among collaborating laboratories on the basis of chromosomal locations.
我们开发了一种瞬时表达转座酶(TET)介导的解离(Ds)插入诱变系统,用于在水稻中生成稳定的插入系,这将允许对染色体区域进行局部诱变。在该系统中,使用含有Ds的T-DNA构建体来产生Ds发射垫系。然后,来自单拷贝Ds/T-DNA系的愈伤组织用携带不可移动Ac(iAc)构建体的农杆菌进行瞬时感染,该构建体还包含绿色荧光蛋白基因(sgfpS65T)作为视觉标记。我们通过选择Ds切除和针对iAc的GFP反选择,以9%-13%的频率再生了稳定的Ds插入系,其中近一半是独特的插入系。还获得了双转化体(iAc/Ds),其后代在切除和视觉标记筛选后产生了约10%的稳定插入系,冗余度为50%。一般来说,超过50%的Ds重新插入发生在发射垫的1厘摩范围内。我们已经产生了大量分布在水稻染色体上的单拷贝Ds/T-DNA发射垫,并进一步优化了Ds/T-DNA构建体,以富集“纯合”单拷贝T-DNA插入。单拷贝“纯合”Ds/T-DNA发射垫的可用性将有助于染色体区域定向插入诱变。该系统为根据染色体位置在合作实验室之间分配基因标签任务提供了机会。