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Genome-Wide Differentiation of Various Melon Horticultural Groups for Use in GWAS for Fruit Firmness and Construction of a High Resolution Genetic Map. | LitMetric

AI Article Synopsis

  • Melon is a diverse diploid plant with different types that affect fruit firmness, a key trait for transportation and shelf life.* -
  • Research generated over 13,000 SNP markers to investigate genetic variation and population structure among melon types, revealing significant introgression and haplotypes.* -
  • The study identified important QTLs for fruit firmness using advanced mapping techniques, linking specific SNPs to genes related to fruit ripening and softening.*

Article Abstract

Melon ( L.) is a phenotypically diverse eudicot diploid (2 = 2 = 24) has climacteric and non-climacteric morphotypes and show wide variation for fruit firmness, an important trait for transportation and shelf life. We generated 13,789 SNP markers using genotyping-by-sequencing (GBS) and anchored them to chromosomes to understand genome-wide fixation indices () between various melon morphotypes and genomewide linkage disequilibrium (LD) decay. The between accessions of and was 0.23. The between and various accessions was in a range of 0.19-0.53 and between and accessions was in a range of 0.21-0.59 indicating sporadic to wide ranging introgression. The EM (Expectation Maximization) algorithm was used for estimation of 1436 haplotypes. Average genome-wide LD decay for the melon genome was noted to be 9.27 Kb. In the current research, we focused on the genome-wide divergence underlying diverse melon horticultural groups. A high-resolution genetic map with 7153 loci was constructed. Genome-wide segregation distortion and recombination rate across various chromosomes were characterized. Melon has climacteric and non-climacteric morphotypes and wide variation for fruit firmness, a very important trait for transportation and shelf life. Various levels of QTLs were identified with high to moderate stringency and linked to fruit firmness using both genome-wide association study (GWAS) and biparental mapping. Gene annotation revealed some of the SNPs are located in β-D-xylosidase, glyoxysomal malate synthase, chloroplastic anthranilate phosphoribosyltransferase, and histidine kinase, the genes that were previously characterized for fruit ripening and softening in other crops.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC5031849PMC
http://dx.doi.org/10.3389/fpls.2016.01437DOI Listing

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