| Literature DB >> 22260238 |
Hui Wang1, R Varma Penmetsa, Mei Yuan, Limin Gong, Yongli Zhao, Baozhu Guo, Andrew D Farmer, Benjamin D Rosen, Jinliang Gao, Sachiko Isobe, David J Bertioli, Rajeev K Varshney, Douglas R Cook, Guohao He.
Abstract
BACKGROUND: Cultivated peanut (Arachis hypogaea L.) is an important crop worldwide, valued for its edible oil and digestible protein. It has a very narrow genetic base that may well derive from a relatively recent single polyploidization event. Accordingly molecular markers have low levels of polymorphism and the number of polymorphic molecular markers available for cultivated peanut is still limiting.Entities:
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Year: 2012 PMID: 22260238 PMCID: PMC3298471 DOI: 10.1186/1471-2229-12-10
Source DB: PubMed Journal: BMC Plant Biol ISSN: 1471-2229 Impact factor: 4.215
SSRs identified from BAC end sequences
| BAC library | ||
|---|---|---|
| Clones sequenced | 3,784 | 25,000 |
| End sequences | 3,905 | 32,530 |
| BES-SSRs | 128 | 1,296 |
| Primers designed | 105 | 1,047 |
Annotation of peanut BAC clone end sequences
| Genes | TEa | REb | Organelle/rRNA | No annotation | Total | |||
|---|---|---|---|---|---|---|---|---|
| EST | R-gene | others | ||||||
| 5,983 | 92 | 8,536 | 426 | 1,614 | 96 | 15,783 | 32,530 | |
| 621 | 50 | 842 | 16 | 79 | 32 | 2,265 | 3,905 | |
| Total | 6,604 | 142 | 9,378 | 442 | 1,693 | 128 | 18,050 | 36,435 |
| SSRs mined from | ||||||||
| SSRs in Ad | 108 | 2 | 302 | 5 | 19 | 3 | 857 | 1,296 |
| SSRs in Ah | 15 | 5 | 26 | 82 | 128 | |||
aTransposable element; bRetroelement
Percentage of each type of motifs in peanut genome
| Repeat motif | Genomic SSR (%) | EST-SSR* (%) |
|---|---|---|
| Dinucleotide | 47.4 | 59.5 |
| Trinucleotide | 37.1 | 33.7 |
| Tetranucleotide | 4.3 | 1.6 |
| Pentanucleotide | 1.4 | 0.2 |
| Hexanucleotide | 0.5 | 0.3 |
| Compound | 9.3 | 4.5 |
| Total SSRs | 1,424 | 593 |
*cited from Guo et al. 2009
Frequency of individual SSR motifs
| Repeat motif | Number of SSRs | Frequency (%) |
|---|---|---|
| AT/TA | 390 | 27.4 |
| AG/GA/CT/TC | 214 | 15.0 |
| AC/CA/TG/GT | 68 | 4.8 |
| GC/CG | 18 | 1.3 |
| AAG/AGA/GAA/CTT/TTC/TCT | 217 | 15.2 |
| AAT/ATA/TAA/ATT/TTA/TAT | 171 | 12.0 |
| ATG/TGA/GAT/CAT/ATC/TCA | 49 | 3.4 |
| AAC/ACA/CAA/GTT/TTG/TGT | 36 | 2.5 |
| ACC/CCA/CAC/GGT/GTG/TGG | 21 | 1.5 |
| AGG/GGA/GAG/CCT/CTC/TCC | 18 | 1.3 |
| AGT/GTA/TAG/ACT/CTA/TAC | 13 | 0.9 |
| AGC/GCA/CAG/GCT/CTG/TGC | 8 | 0.6 |
| ACG/CGA/GAC/CGT/GTC/TCG | 4 | 0.3 |
| GGC/GCG/CGG/GCC/CCG/CGC | 3 | 0.2 |
Figure 1Distribution of repeat number in dinucleotide AT and GA SSRs.
Polymorphism rates of dinucleotide AT and AG SSRs in two classes
| Number of repeat | Non-polymorphic | polymorphic | Total | |
|---|---|---|---|---|
| > 10 (Class I) | AT-SSRs | 175 (81.8%) | 39 (18.2%) | 265 |
| AG-SSRs | 34 (66.7%) | 17 (33.3%) | ||
| 6-9 (Class II) | AT-SSRs | 156 (90.2%) | 17 (9.8%) | 333 |
| AG-SSRs | 154 (96.2%) | 6 (3.8%) | ||
| Total dinucleotide SSRs | 519 (86.8%) | 79 (13.2%) | 598 | |
Figure 2Distribution of repeat number in trinucleotide AAT and AAG SSRs.
Polymorphism rates of trinucleotide AAT and AAG SSRs in two classes
| Number of repeat | Non-polymorphic | polymorphic | Total | |
|---|---|---|---|---|
| > 7 (Class I) | AAT-SSRs | 46 (67.6%) | 22 (32.4%) | 100 |
| AAG-SSRs | 29 (90.6%) | 3 (9.4%) | ||
| 5-6 (Class II) | AAT-SSRs | 91 (92.9%) | 7 (7.1%) | 267 |
| AAG-SSRs | 163 (96.4%) | 6 (3.6%) | ||
| Total trinucleotide SSRs | 329 (89.6%) | 38 (10.4%) | 367 | |
Figure 3Genetic linkage map of the F2 population of Tifrunner × GT-C20 was constructed using SSR markers. The loci in bold were BES-SSRs. Two loci, GNB1076 and GNB1112, anchored one RGH-BAC singleton and one contig containing 7 RGH-BAC clones to linkage group 10 and 18, respectively.
Figure 4Comparison of marker colinear in present and previous linkage maps.