Table 1.
LI: | TCC CCCGGG ATG ATG ATG GCG TCT AAG GAC | L2: | GC TCTAGA TTA TWW WCG GCG CAV WCC AAG CC |
G1: | TCC CCCGGG CTT GCA ATG GAT CCT GTG GC | Ql: | GC TCTAGA ACT GCT GTT GAA GAA CCC GC |
G2: | TCC CCCGGG CAA GGT GAA TTT ACT ATT TC | Q2: | GC TCTAGA AAT AGT AAA TTC ACC TTG GG |
G3: | TCC CCCGGG CTT AAT CCC TTC TTG TTA C | Q3: | GC TCTAGA TGC CAA CCC AGC CAT TAT AC |
G4: | TCC CCCGGG GGT AAA ATT ATA GTT TCT TGC | Q4: | GC TCTAGA AAT CAC ATG CGG GAA GAG AG |
G5: | TCC CCCGGG GAT GTA AGG AAT GTT CTC TTT C | Q5: | GC TCTAGA CTT ACA TCT ACT AAG GGT AC |
G6: | TCC CCCGGG CAA ACA ATG CGC CTT GTG TGC | Q6: | GC TCTAGA GGA GGG GGG TGT AAA GCA TG |
G7: | TCC CCCGGG ACT TGT CCT AGC CCC GAT TTC | Q7: | GC TCTAGA GTT CCA CTG TGG GAG GAA CC |
G8: | TCC CCCGGG TTG TCA AAT TCA CGT GCC CC | Q8: | GC TCTAGA AAT TGG AAG AGG GGC ACG TG |
G9: | TCC CCCGGG TGT ACC TTA GAT GGA CGA C | Q9: | GC TCTAGA GGT GGT ACC AAC AAG TCG TC |
G10: | TCC CCCGGG GGT ACT TCT AAT GGT ACT GTG | Q10: | GC TCTAGA GGG GCA GGG CCT TCA AAA GG |
G11: | TCC CCCGGG GAT TGG CAT ATT AAC ATG AC | Q11: | GC TCTAGA TGA GTC TGG CTA GAA TGT CC |
G12: | TCC CCCGGG GGT TCA ATC CAG GCG AAT GG | Q12: | GC TCTAGA TAA GAA CAC CAA TGT AGT TG |
G13: | TCC CCCGGG AAG ATC CCC AAC TAT GGG TC | Q13: | GC TCTAGA CTG TGA TGC TAG ACC CAT AG |
G14: | TCC CCCGGG TTC ATG TCA AAG ATA CCA GG | Q14: | GC TCTAGA AAG CAC CAG GGC CTG GTA TC |
G15: | TCC CCCGGG CCC ACT GTT GGT GAA GCC GC | Q15: | GC TCTAGA TAG TGG AGT AGG GCG GCT TC |
G16: | TCC CCCGGG GAT GGT TTC CTA ACC TGT GTC | Q16: | GC TCTAGA GCT GGC CCC GTT AGG GAC AC |
Trx-up: TTC CTC GAC GCT AAC CTG GC | Trx-DW: GTA AA CGA CGG CCA GTG CC |
G, L and Q primers were used for amplifying NV96-908 fragments, and Trx-up and Trx-dw primers for generating the insert and junction sequence of recombinant plasmids. These Trx primers have also been used for sequencing. Underlined sequences of G primers and LI primer shows the SmaI site, and that of bo th L2 primer and Q primers the XbaI site.