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2022 Vol.40, Issue 1 Preview Page

Research Article

28 February 2022. pp. 75-84
Abstract
References
1
Bostein D, White RL, Skolnick M, Davis RW (1980) Construction of a genetic linkage map in man using restriction fragment length polymorphisms. Am J Hum Genet 32:314-331
2
Cingolani P, Platts A, Wang le L, Coon M, Nguyen T, Wang L, Land SJ, Lu X, Ruden DM (2012) A program for annotating and predicting the effects of single nucleotide polymorphisms, SnpEff: SNPs in the genome of Drosophila melanogaster strain w1118; iso-2; iso-3. Fly (Austin) 6:80-92. doi:10.4161/fly.19695 10.4161/fly.1969522728672PMC3679285
3
Food and Agriculture Organization of the United Nations (FAO) (2018) Statistical databases. Food and Agriculture Organization of the United Nations, http://www.fao.org/faostat/en/#data/QC. Accessed 21 October 2021
4
Galili T (2015) dendextend: an R package for visualizing, adjusting and comparing trees of hierarchical clustering. Bioinformatics 31:3718-3720. doi:10.1093/bioinformatics/btv428 10.1093/bioinformatics/btv42826209431PMC4817050
5
Ganal MW, Altmann T, Roder MS (2009) SNP identification in crop plants. Curr Opin Plant Biol 12:211-217. doi:10.1016/j.pbi.2008.12.009 10.1016/j.pbi.2008.12.00919186095
6
Guo S, Zhao S, Sun H, Wang X, Wu S, Lin T, Ren Y, Gao L, Deng Y, et al (2019) Resequencing of 414 cultivated and wild watermelon accessions identifies selection for fruit quality traits. Nat Genet 51:1616-1623. doi:10.1038/s41588-019-0518-4 10.1038/s41588-019-0518-431676863
7
He J, Zhao X, Laroche A, Lu ZX, Liu H, Li Z (2014) Genotyping-by-sequencing (GBS), an ultimate marker-assisted selection (MAS) tool to accelerate plant breeding. Front Plant Sci 5:484. doi:10.3389/fpls.2014.00484 10.3389/fpls.2014.0048425324846PMC4179701
8
Jung J, Park G, Oh J, Jung JK, Shim EJ, Chung SM, Lee GP, Park Y (2020) Assessment of the current infraspecific classification scheme in melon (Cucumis melo L.) based on genome-wide single nucleotide polymorphisms. Hortic Environ Biotechnol 61:537-547. doi:10.1007/s13580-020-00230-0 10.1007/s13580-020-00230-0
9
Kamvar ZN, Tabima JF, Grunwald NJ (2014) Poppr: an R package for genetic analysis of populations with clonal, partially clonal, and/or sexual reproduction. PeerJ 2:e281. doi:10.7717/peerj.281 10.7717/peerj.28124688859PMC3961149
10
Kim M, Jung JK, Shim EJ, Chung SM, Park Y, Lee GP, Sim SC (2021) Genome-wide SNP discovery and core marker sets for DNA barcoding and variety identification in commercial tomato cultivars. Sci Hortic 276:109734. doi:10.1016/j.scienta.2020.109734 10.1016/j.scienta.2020.109734
11
Kishor D, Noh Y, Song WH, Lee GP, Jung JK, Shim EJ, Chung SM (2020) Identification and Purity Test of Melon Cultivars and F1 Hybrids Using Fluidigm-based SNP Markers. Hortic Sci Technol 38:686-694
12
Kwon YS, Oh YH, Yi SI, Kim HY, An JM, Yang SG, Ok SH, Shin JS (2010) Informative SSR markers for commercial variety discrimination in watermelon (Citrullus lanatus). Genes Genomics 32:115-122. doi:10.1007/s13258-008-0674-x 10.1007/s13258-008-0674-x
13
Levi A, Thomas CE, Wehner TC, Zhang XP (2001) Low genetic diversity indicates the need to broaden the genetic base of cultivated watermelon. J Am Soc Hortic Sci 36:1096-1101. doi:10.21273/HORTSCI.36.6.1096 10.21273/HORTSCI.36.6.1096
14
Li H, Durbin R (2010) Fast and accurate long-read alignment with Burrows-Wheeler transform. Bioinformatics 26:589-595. doi:10.1093/bioinformatics/btp698 10.1093/bioinformatics/btp69820080505PMC2828108
15
Liu K, Muse SV (2005) PowerMarker: an integrated analysis environment for genetic marker analysis. Bioinformatics 21:2128-2129. doi:10.1093/bioinformatics/bti282 10.1093/bioinformatics/bti28215705655
16
Mammadov J, Aggarwal R, Buyyarapu R, Kumpatla S (2012) SNP markers and their impact on plant breeding. Int J Plant Genomics 2012. doi:10.1155/2012/728398 10.1155/2012/72839823316221PMC3536327
17
Nasab MA, Rahimi M, Karatas A, Ercisli S (2020) Sequential path analysis and relationships between fruit yield in watermelon. Pakistan J Agri Sci 57:1425-1430. doi:10.21162/Pakjas/20.200
18
Nei M (1978) Estimation of average heterozygosity and genetic distance from a small number of individuals. Genetics 89:583-590. doi:10.1093/genetics/89.3.583 10.1093/genetics/89.3.58317248844PMC1213855
19
Peterson G, Dong Y, Horbach C, Fu YB (2014) Genotyping-By-Sequencing for Plant Genetic Diversity Analysis: A Lab Guide for SNP Genotyping. Diversity 6:665-680. doi:10.3390/d6040665 10.3390/d6040665
20
Poland JA, Rife TW (2012) Genotyping-by-Sequencing for Plant Breeding and Genetics. Plant Genome 5:92-102. doi:10.3835/plantgenome2012.05.0005 10.3835/plantgenome2012.05.0005
21
Pritchard JK, Stephens M, Donnelly P (2000) Inference of population structure using multilocus genotype data. Genetics 155. doi:10.1093/genetics/155.2.945 10.1093/genetics/155.2.94510835412PMC1461096
22
Sonah H, Bastien M, Iquira E, Tardivel A, Légaré G, Boyle B, Normandeau É, Laroche J, Larose S, et al (2013) An improved genotyping by sequencing (GBS) approach offering increased versatility and efficiency of SNP discovery and genotyping. PLoS ONE 8:e54603. doi:10.1371/journal.pone.0054603 10.1371/journal.pone.005460323372741PMC3553054
23
Wickham H (2009) ggplot2: elegant graphics for data analysis. Springer, NY, USA. doi:10.1007/978-0-387-98141-3 10.1007/978-0-387-98141-3
24
Wu S, Wang X, Reddy U, Sun HH, Bao K, Gao L, Mao LY, Patel T, Ortiz C, et al (2019) Genome of 'Charleston Gray', the principal American watermelon cultivar, and genetic characterization of 1,365 accessions in the US National Plant Germplasm System watermelon collection. Plant Biotechnol J 17:2246-2258. doi:10.1111/pbi.13136 10.1111/pbi.1313631022325PMC6835170
Information
  • Publisher :KOREAN SOCIETY FOR HORTICULTURAL SCIENCE
  • Publisher(Ko) :원예과학기술지
  • Journal Title :Horticultural Science and Technology
  • Journal Title(Ko) :원예과학기술지
  • Volume : 40
  • No :1
  • Pages :75-84
  • Received Date : 2021-12-22
  • Revised Date : 2022-01-03
  • Accepted Date : 2022-01-03