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Transgene structures in T-DNA-inserted rice plants
Authors:Kim  Sung-Ryul  Lee  Jinwon  Jun  Sung-Hoon  Park  Sunhee  Kang  Hong-Gyu  Kwon  Soontae  An  Gynheung
Institution:(1) National Research Laboratory of Plant Functional Genomics, Division of Molecular and Life Sciences, Pohang University of Science and Technology (POSTECH), Pohang, 790-784, Republic of Korea;(2) Department of Horticulture and Breeding, Andong National University, Andong, 760-749, Republic of Korea
Abstract:T-DNA is commonly used for delivery of foreign genes and as an insertional mutagen. Although ample information exists regarding T-DNA organization in dicotyledonous plants, little is known about the monocot rice. Here, we investigated the structure of T-DNA in a large number of transgenic rice plants. Analysis of the T-DNA borders revealed that more than half of the right ends were at the cleavage site, whereas the left ends were not conserved and were deleted up to 180 bp from the left border (LB) cleavage site. Three types of junctions were found between T-DNA and genomic DNA. In the first, up to seven nucleotide overlaps were present. The frequency of this type was much higher in the LB region than at the right border (RB). In the second type, which was more frequent in RB, the link was direct, without any overlaps or filler DNA. Finally, the third type showed filler DNA between T-DNA and the plant sequences. Out of 171 samples examined, 77 carried the vector backbone sequence, with the majority caused by the failure of T-strand termination at LB. However, a significant portion also resulted from co-integration of T-DNA and the vector backbone to a single locus. Most linkages between T-DNA and the vector backbone were formed between two 3prime ends or two 5prime ends of the transferred DNAs. The 3prime ends were mostly linked through 3–6 bp of the complementing sequence, whereas the 5prime ends were linked through either precise junctions or imprecise junctions with filler DNA.
Keywords:border  flanking sequence  Oryza sativa  repeat  rice  T-DNA integration  vector backbone
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