QTL mapping of flavanone glycoside accumulation in citrus

被引:0
作者
Takehiro Kubo
Yomi Matsumoto
Takumi Yamashita
Satoshi Watanabe
Nobuhiro Kotoda
机构
[1] Saga University,Graduate School of Advanced Health Sciences
[2] Saga University,Faculty of Agriculture
来源
Tree Genetics & Genomes | 2023年 / 19卷
关键词
Citrus; Flavonoid; HRM analysis; QTL; SNP;
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摘要
Flavanone-O-glycosides, flavone-O/C-glycosides, and their derivatives are some of the most abundant flavonoids in citrus fruits. They are attracting attention not only as health functional components, but also for their effects on the taste of fruit, such as bitterness. Elucidating the mechanism of their accumulation will provide useful information for citrus breeding programs targeting flavor and health functional components. In this study, flavanone glycoside (narirutin, naringin, hesperidin, and neohesperidin) accumulation in the leaves of the Hanayu (Citrus hanayu) × ‘Katsuyama kuganii’ shiikuwasha (Citrus depressa) F1 population was determined by high-performance liquid chromatography (HPLC), and quantitative trait loci (QTLs) for the accumulation of each component were mapped onto a linkage map constructed with SNPs between Hanayu and ‘Katsuyama kuganii’ genotyped by a high-resolution melting curve (HRM) method. QTLs for hesperidin and neohesperidin accumulation were mapped in linkage group (LG) 9, whereas a QTL for hesperidin was detected in LG 4. The QTL region in LG 9 would determine which flavanone glycosides accumulate in citrus, whereas the QTL region of LG 4 might control the overall amount of hesperetin glycosides. Amino acid substitutions in a putative glycosyltransferase gene present in the QTL region on LG 9 were correlated with neohesperidin accumulation. This study will provide useful information for the breeding of new citrus cultivars with health functional components and regulated bitterness.
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  • [1] Abad-García B(2014)Polyphenolic contents in Citrus fruit juices: authenticity assessment Eur Food Res Technol 238 803-818
  • [2] Garmón-Lobato S(2015)Identification and mode of inheritance of quantitative trait loci for secondary metabolite abundance in tomato Plant Cell 27 485-512
  • [3] Sánchez-Ilárduya MB(1991)UDP-rhamnose: flavanone-7- J Biol Chem 266 20953-20959
  • [4] Berrueta LA(1976)-glucoside-2″- Syst Bot 1 105-136
  • [5] Gallo B(2017)-rhamnosyltransferase. Purification and characterization of an enzyme catalyzing the production of bitter compounds in citrus New Phytol 215 624-641
  • [6] Vicente F(2003)A numerical taxonomic study of affinity relationships in cultivated Bioinformatics 19 889-890
  • [7] Alonso-Salces RM(1999) and its close relatives J Nutr 129 1135-1139
  • [8] Alseekh S(1992)Identification of major loci and genomic regions controlling acid and volatile content in tomato fruit: implications for flavor improvement Plant Physiol 99 67-73
  • [9] Tohge T(2008)R/qtl: QTL mapping in experimental crosses Tree Genet Genomes 4 1-10
  • [10] Wendenberg R(2019)Dietary folate from vegetables and citrus fruit decreases plasma homocysteine concentrations in humans in a dietary controlled trial J Exp Bot 70 2759-2771