A RAD-Based Genetic Map for Anchoring Scaffold Sequences and Identifying QTLs in Bitter Gourd ( Momordica charantia )

Genetic mapping is a basic tool necessary for anchoring assembled scaffold sequences and for identifying QTLs controlling important traits. Though bitter gourd ( ) is both consumed and used as a medicinal, research on its genomics and genetic mapping is severely limited. Here, we report the construc...

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Veröffentlicht in:Frontiers in plant science 2018-04, Vol.9, p.477-477
Hauptverfasser: Cui, Junjie, Luo, Shaobo, Niu, Yu, Huang, Rukui, Wen, Qingfang, Su, Jianwen, Miao, Nansheng, He, Weiming, Dong, Zhensheng, Cheng, Jiaowen, Hu, Kailin
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Sprache:eng
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Zusammenfassung:Genetic mapping is a basic tool necessary for anchoring assembled scaffold sequences and for identifying QTLs controlling important traits. Though bitter gourd ( ) is both consumed and used as a medicinal, research on its genomics and genetic mapping is severely limited. Here, we report the construction of a restriction site associated DNA (RAD)-based genetic map for bitter gourd using an F mapping population comprising 423 individuals derived from two cultivated inbred lines, the gynoecious line 'K44' and the monoecious line 'Dali-11.' This map comprised 1,009 SNP markers and spanned a total genetic distance of 2,203.95 cM across the 11 linkage groups. It anchored a total of 113 assembled scaffolds that covered about 251.32 Mb (85.48%) of the 294.01 Mb assembled genome. In addition, three horticulturally important traits including sex expression, fruit epidermal structure, and immature fruit color were evaluated using a combination of qualitative and quantitative data. As a result, we identified three QTL/gene loci responsible for these traits in three environments. The QTL/gene / / , controlling sex expression involved in gynoecy, first female flower node, and female flower number was detected in the reported region. Particularly, two QTLs/genes, and , were found to be responsible for fruit epidermal structure and white immature fruit color, respectively. This RAD-based genetic map promotes the assembly of the bitter gourd genome and the identified genetic loci will accelerate the cloning of relevant genes in the future.
ISSN:1664-462X
1664-462X
DOI:10.3389/fpls.2018.00477