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Your search keyword '"Physical Chromosome Mapping methods"' showing total 264 results

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264 results on '"Physical Chromosome Mapping methods"'

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1. BAC-FISH Based Physical Map of Endangered Catfish Clarias magur for Chromosome Cataloguing and Gene Isolation through Positional Cloning.

2. Genome-wide characterization and expression profiling of the PDR gene family in tobacco (Nicotiana tabacum).

3. Karyotypic Evolution of Sauropsid Vertebrates Illuminated by Optical and Physical Mapping of the Painted Turtle and Slider Turtle Genomes.

4. Gapless assembly of maize chromosomes using long-read technologies.

5. Physical Map of FISH 5S rDNA and (AG 3 T 3 ) 3 Signals Displays Chimonanthus campanulatus R.H. Chang & C.S. Ding Chromosomes, Reproduces its Metaphase Dynamics and Distinguishes Its Chromosomes.

6. DDmap: a MATLAB package for the double digest problem using multiple genetic operators.

7. A high-density BAC physical map covering the entire MHC region of addax antelope genome.

8. Polymer coil-globule phase transition is a universal folding principle of Drosophila epigenetic domains.

9. A chromosome-scale assembly of the sorghum genome using nanopore sequencing and optical mapping.

10. Optical and physical mapping with local finishing enables megabase-scale resolution of agronomically important regions in the wheat genome.

11. Reconstruction of an SSR-based Magnaporthe oryzae physical map to locate avirulence gene AvrPi12.

12. Development of a quantitative pachytene chromosome map and its unification with somatic chromosome and linkage maps of rice (Oryza sativa L.).

13. Single-molecule sequencing and optical mapping yields an improved genome of woodland strawberry (Fragaria vesca) with chromosome-scale contiguity.

14. Building Ultra-High-Density Linkage Maps Based on Efficient Filtering of Trustable Markers.

15. Dense gene physical maps of the non-model species Drosophila subobscura.

16. Karyomapping and how is it improving preimplantation genetics?

17. pBACode: a random-barcode-based high-throughput approach for BAC paired-end sequencing and physical clone mapping.

18. Variable chromatin structure revealed by in situ spatially correlated DNA cleavage mapping.

19. Mapping centromeres of microchromosomes in the zebra finch (Taeniopygia guttata) using half-tetrad analysis.

20. OMWare: a tool for efficient assembly of genome-wide physical maps.

21. High-resolution in situ hybridization analysis on the chromosomal interval 61C7-61C8 of Drosophila melanogaster reveals interbands as open chromatin domains.

22. A new physical mapping approach refines the sex-determining gene positions on the Silene latifolia Y-chromosome.

23. The Arabidopsis TAC Position Viewer: a high-resolution map of transformation-competent artificial chromosome (TAC) clones aligned with the Arabidopsis thaliana Columbia-0 genome.

24. A high-resolution physical map integrating an anchored chromosome with the BAC physical maps of wheat chromosome 6B.

25. Detection and fine-mapping of SC7 resistance genes via linkage and association analysis in soybean.

26. The physical map of wheat chromosome 5DS revealed gene duplications and small rearrangements.

27. A standard cytogenetic map of Culex quinquefasciatus polytene chromosomes in application for fine-scale physical mapping.

28. Combining Next Generation Sequencing with Bulked Segregant Analysis to Fine Map a Stem Moisture Locus in Sorghum (Sorghum bicolor L. Moench).

29. Enrichment of an intraspecific genetic map of upland cotton by developing markers using parental RAD sequencing.

30. Mitotic-chromosome-based physical mapping of the Culex quinquefasciatus genome.

31. Genetic etiology of renal agenesis: fine mapping of Renag1 and identification of Kit as the candidate functional gene.

32. Rapid and inexpensive whole-genome genotyping-by-sequencing for crossover localization and fine-scale genetic mapping.

33. Physical mapping of the Period gene on meiotic chromosomes of South American grasshoppers (Acridomorpha, Orthoptera).

34. Physical mapping of 18S and 5S genes in pelagic species of the genera Caranx and Carangoides (Carangidae).

35. Multi-ethnic fine-mapping of 14 central adiposity loci.

36. Genomic composition and evolution of Aedes aegypti chromosomes revealed by the analysis of physically mapped supercontigs.

37. The physical map of wheat chromosome 1BS provides insights into its gene space organization and evolution.

38. Discovery of structural alterations in solid tumor oligodendroglioma by single molecule analysis.

39. OrganellarGenomeDRAW--a suite of tools for generating physical maps of plastid and mitochondrial genomes and visualizing expression data sets.

40. A high density physical map of chromosome 1BL supports evolutionary studies, map-based cloning and sequencing in wheat.

41. SOAPindel: efficient identification of indels from short paired reads.

42. A sugar beet (Beta vulgaris L.) reference FISH karyotype for chromosome and chromosome-arm identification, integration of genetic linkage groups and analysis of major repeat family distribution.

43. A physical map of a BAC clone contig covering the entire autosome insertion between ovine MHC Class IIa and IIb.

44. Molecular combing in the analysis of developmentally regulated amplified segments of Bradysia hygida.

45. Chromosomes in the flow to simplify genome analysis.

46. Leaf morphology in Cowpea [Vigna unguiculata (L.) Walp]: QTL analysis, physical mapping and identifying a candidate gene using synteny with model legume species.

47. Feedback inhibition by thiols outranks glutathione depletion: a luciferase-based screen reveals glutathione-deficient γ-ECS and glutathione synthetase mutants impaired in cadmium-induced sulfate assimilation.

48. Construction of physical maps for the sex-specific regions of papaya sex chromosomes.

49. Identification and fine mapping of rhm1 locus for resistance to Southern corn leaf blight in maize.

50. Fine mapping of the Bsr1 barley stripe mosaic virus resistance gene in the model grass Brachypodium distachyon.

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