| Literature DB >> 24220637 |
Bernhard J Hofinger, Owen A Huynh, Joanna Jankowicz-Cieslak, Andrea Müller, Ingrid Otto, Jochen Kumlehn, Bradley J Till1.
Abstract
BACKGROUND: Doubled haploidy is a fundamental tool in plant breeding as it provides the fastest way to generate populations of meiotic recombinants in a genetically fixed state. A wide range of methods has been developed to produce doubled haploid (DH) plants and recent advances promise efficient DH production in otherwise recalcitrant species. Since the cellular origin of the plants produced is not always certain, rapid screening techniques are needed to validate that the produced individuals are indeed homozygous and genetically distinct from each other. Ideal methods are easily implemented across species and in crops where whole genome sequence and marker resources are limited.Entities:
Year: 2013 PMID: 24220637 PMCID: PMC3831592 DOI: 10.1186/1746-4811-9-43
Source DB: PubMed Journal: Plant Methods ISSN: 1746-4811 Impact factor: 4.993
Primer sequences, PCR product sizes, and references for enzymatic mismatch cleavage
| 1 | rdg2a_F1 | CTTGCTCTCAAGACAATGGGTGGATTG | 1499 | 1 |
| | rdg2a_R1 | TCCAAACTGCTAAACATCCGAGGCTCT | | |
| 2 | rdg2a_F2 | CTCTCAAGACAATGGGTGGATTGCTGA | 1493 | 1 |
| | rdg2a_R2 | CAAACTGCTAAACATCCGAGGCTCTCC | | |
| 3 | rdg2a_F3 | TCGCTATGTCAAGAGCTGGATGAAGGA | 1496 | 1 |
| | rdg2a_R3 | AAGTGCGTAGGATTGTTCTGCCTTTGC | | |
| 4 | nbs2-rdg2a_F1 | GCTCTTCCGTTTTGAAATGAGCAGGAA | 1503 | 1 |
| | nbs2-rdg2a_R1 | TGTTTTGCATTTATGGCCTTGCAAATG | | |
| 5 | nbs2-rdg2a_F2 | TCCACTACCCGAAAGGCACTCAGCTAC | 1500 | 1 |
| | nb2-rdg2a_R2 | GCAATGCAATGCTCTTACTGACGCAAA | | |
| 6 | nb2-rdg2a_F3 | TCGAACGAATCAGTGGGTTATGCAAAG | 1497 | 1 |
| | nb2-rdg2a_R3 | ATGAAGTGTTCCCCTCCAGGTTGTCAC | | |
| 7 | nbs3-rdg2a_F1 | TGGCAAGTCCACTACCAAAAAGGCACT | 1491 | 1 |
| | nbs3-rdg2a_R1 | GCTCTTAGTGATGCCAATACCCGTTGC | | |
| 8 | nbs3-rdg2a_F2 | GCTCTTCCGTTTTGAAATGAGCAGGAA | 1491 | 1 |
| | nbs3-rdg2a_R2 | TGTTTTGCATTTATGGCCTTGCAAATG | | |
| 9 | HVgna1f | GACCCAGATGGCATCCAC | 552 | 2 |
| | HVgna1r | ATGCGACGAGACAAAGGAAT | | |
| 10 | HVraa1f | GTCGACGACTTGCATCATCTATCG | 545 | 2 |
| | HVraa1R | CACCCCGATCACTAACACACAA | | |
| 11 | HV_hpa1F | CCCTTATGTGTACCCTGATCCTGA | 1100 | 2 |
| | HV_hpa1R | GGTCCAACAGACGTATTAGCCAAG | | |
| 12 | HV_Mlo9-F1 | AGCAAACCAGACACACAGCAGCGTACC | 900 | 3 |
| | HV_Mlo9-R1 | GCAAAGGCTCACTTTGAGACGGCTTAG | | |
| 13 | HV_Mlo9-F2 | CATTTGTCGCAAAACAGCAAGTTCGAC | 1476 | 3 |
| | HV_Mlo9-R2 | TTGTCTCATCCCTGGCTGAAGGAAAAA | | |
| 14 | HvHox1-F1 | AAGCATGGACAAGCATCAGCTCTTTGA | 985 | 3 |
| | HvHox1-R1 | GGCAGCAGCTATCTCGGCTATTTTATGG | | |
| 15 | HV_Kap1_c1_F | TCCACCGGTAAAGAAACCAG | 1030 | 4 |
| | HV_Kap1_c1_R | TGAGGGAGGGAGAAAGATGA | | |
| 16 | HV_Kap1_d1_F | CTCCCTCCCTCAAGAAATCC | 899 | 4 |
| | HV_Kap1_d1_R | GCTGTCGCAAAATACAGCAA | | |
| 17 | HV_Kap1_e1_F | TTGCTGTATTTTGCGACAGC | 1136 | 4 |
| | HV_Kap1_e1_R | CATGTGTTAAAAGCCGCAGA | | |
| 18 | HV_Kap1_g1_F | ATTGAGTGCCTCTCGGCTTA | 1175 | 4 |
| | HV_Kap1_g1_R | TGAGGAAAGAAGGGATGTGG | | |
| 19 | HV_Kap1_h1_F | CCACATCCCTTCTTTCCTCA | 718 | 4 |
| | HV_Kap1_h1_R | GGGAGCTTGCCTTTCTTCTT | | |
| 20 | HV_Kap1_i1_F | TGTGGAACTATAAATCTGGCTTCA | 698 | 4 |
| | HV_Kap1_i1_R | CGAGCTAGCCGAACCTGTAG | | |
| 21 | Hv_mloA-F | CGTGTGCGTACCTGGTAGAG | 599 | 5 |
| | Hv_mloA-R | CAAGCCAAGACGACAATCAG | | |
| 22 | Hv_mloB-F | CTGATTGTCGTCTTGGCTTG | 624 | 5 |
| | Hv_mloB-R | CTGACTCCATACGCCAAACA | | |
| 23 | Hv_mloC-F | TGTTTGGCGTATGGAGTCAG | 566 | 5 |
| | Hv_mloC-R | AGAAACCGGAGAGGAGAAGG | | |
| 24 | Hv_mloD-F | CCTCACCCTCTTCCTTGACA | 574 | 5 |
| | Hv_mloD-R | CGTCAGAGCAGTTCATCAGC | | |
| 25 | Hv_mloE-F | CCACCGATGAACTTGTCAGT | 837 | 5 |
| | Hv_mloE-R | GAGAGGGGTTTTGTTTGTGC | | |
| 26 | Hv_Mla1-3 F | AGCAGCTCGACAGCCAAGACAA | 451 | 5 |
| Hv_Mla1-3R | CCCAACCCTCCAAATCCAACAA |
1J. Jankowicz-Cieslak and B.Till (unpublished).
2[34].
3[35].
4B.Till and F. Taassob Shirazi (unpublished).
5[36].
Summary of TILLING primers tested, quality of PCR products, CJE digestion products and polymorphisms detected
| rdg2a_F1 + R1 | N | Y | --- | --- | --- | N |
| rdg2a_F2 + R2 | N | Y | --- | --- | --- | N |
| rdg2a_F3 + R3 | N | W | --- | --- | --- | N |
| nbs2-rdg2a_F1 + R1 | W | W | ? | ? | N | N |
| nbs2-rdg2a_F2 + R2 | Y | Y | F | C | Y | Y |
| nbs2-rdg2a_F3 + R3 | W | W | ? | ? | N | N |
| nbs3-rdg2a_F1 + R1 | Y | Y | F | C | Y | Y |
| nbs3-rdg2a_F2 + R2 | N | N | --- | --- | --- | N |
| HVgna1f + r | N | N | --- | --- | --- | N |
| HVraa1f + R | W | W | ? | ? | N | N |
| HV_hpa1F + R | W | W | ? | ? | N | N |
| HV_Mlo9-F1 + R1 | Y | Y | F | F | Y | Y |
| HV_Mlo9-F2 + R2 | Y | Y | F | F | Y | Y |
| HvHox1-F1 + R1 | Y | Y | F | F | N | N |
| HV_Kap1_c1_f + r | Y | Y | F | F | Y | Y |
| HV_Kap1_d1_f + r | Y | Y | F | F | Y | Y |
| HV_Kap1_e1_f + r | Y | Y | F | F | Y | Y |
| HV_Kap1_g1_f + r | Y | Y | F | F | N | N |
| HV_Kap1_h1_f + r | Y | Y | F | F | N | N |
| HV_Kap1_i1_f + r | Y | Y | F | F | N | N |
| Hv_mloA-F + R | --- | --- | --- | --- | Y | Y |
| Hv_mloB-F + R | --- | --- | --- | --- | Y | Y |
| Hv_mloC-F + R | --- | --- | --- | --- | Y | Y |
| Hv_mloD-F + R | --- | --- | --- | --- | Y | Y |
| Hv_mloE-F + R | --- | --- | --- | --- | N | N |
| Hv_Mla1-3 F + 3R | --- | --- | --- | --- | N | N |
Y = yes, W = weak amplification, N = no.
2F = full-length PCR product, C = cleavage products present, ? = unclear results, --- = not tested.
Figure 1Agarose gel evaluation of doubled haploid production in barley by enzymatic mismatch cleavage. Enzymatic mismatch cleavage was carried out to evaluate homozygosity in putative barley doubled haploid lines. A 1476 bp fragment of the barley Mlo9 gene was PCR amplified and digested with a crude celery juice extract (CJE) containing single-strand-specific nuclease activity followed by agarose gel analysis. The top band in lanes 1-15 represents undigested PCR product. The cleavage products present in heterozygous samples are marked with arrows. Parental lines Golden Promise (GP) and HOR1606 are homozygous for this gene region (lanes 1 and 2 respectively). A synthetic mixture of parental DNA and also the F1 sample from crossing of the two parents show cleavage fragments resulting from a heterozygous SNP (lanes 3 & 4). Doubled haploid plants (lanes 5-13) are homozygous. Mixtures of genomic DNA from a DH plant and GP show cleavage products while mixture of the same material with HOR1606 does not, indicating the DH harbors the GP allele (lanes 14 & 15).
Figure 2Doubled haploid screening and polymorphism discovery in the locus. A 1500 bp gene fragment of the barley nbs2-rdg2a locus was PCR amplified and subjected to enzymatic mismatch cleavage. Parental line Golden Promise is homozygous in the gene region while HOR1606 shows banding indicative of co-amplification of homologous gene copies (lanes 1 and 2 respectively). Heterozygous polymorphisms marked by arrows are found in a synthetic mixture of parental genotypes and in DNA from an F1 hybrid of the cross of the two parents (lanes 3 & 4). Doubled haploids in lanes 5-13 are all homozygous. Banding patterns indicate if the gene target originates from GP or HOR1606.
Summary of SSR primers tested, quality of PCR products and polymorphisms detected
| cnl34 | W | W | N |
| cnl73 | ? | ? | N |
| cnl31 | Y | Y | N |
| cnl146 | Y | Y | Y |
| cnl130 | Y | Y | ? |
| cnl151 | N | Y | --- |
| cnl140 | N | N | --- |
| HVACL1 | Y | Y | ? |
| HVLEU | Y | Y | N |
| HVGNIRE | Y | Y | N |
| HVCSG | N | N | --- |
| HVADH1 | N | N | --- |
| HVWAXYG | ? | ? | N |
| HVDHN7 | Y | ? | ? |
| HVCMA | Y | Y | Y |
| HVDHN9 | Y | Y | N |
| HVBKASI | Y | W | ? |
| HVPRP1B | ? | Y | ? |
| HVBDG | W | W | N |
| HVBARE1 | N | N | --- |
| HVRCABG | W | N | --- |
| HVSIP1A | Y | Y | N |
| Bmac0113 | Y | Y | Y |
| Bmag0323 | Y | Y | N |
| Bmac0812 | Y | Y | N |
| Bmag0477 | W | W | ? |
| Bmag0387 | Y | W | ? |
| Bmac0163 | Y | Y | N |
| GBM1284 | ? | ? | --- |
| Bmag0346 | N | N | --- |
| Bmag0023 | N | N | --- |
| GBM1300 | Y | Y | N |
1From http://germinate.scri.ac.uk/ssr/barley_s.html.
2Y = yes, W = weak amplification, N = no, ? = unclear results, --- = not tested.
Figure 3Agarose gel image of evaluation of doubled haploid production in barley using a SSR marker. SSR marker Bmac0113 displays molecular weight polymorphism in amplified bands between parental lines Golden Promise (GP) and HOR1606 (lanes 1 and 2 respectively). Amplification of GP produces a band of approximately 210 bp and HOR1606 produces a band of approximately 175 bp. A synthetic mixture of parental genomic DNA and F1 material from crossing of the two parents shows both bands (lanes 4 & 5). Doubled haploid plants produce either parental band (lanes 5-13).