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Quail FMO3 Gene Cloning Tissue Expression Profiling Polymorphism Detection and Association Analysis with Fishy Taint in Eggs

机译:鹌鹑FMO3基因克隆组织表达谱分析多态性检测及与鱼腥味的关联分析

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摘要

Quail eggs comprise a significant and favourable part of table eggs in certain countries. Some quail eggs, however, present fishy off-flavor which directly influences their quality. It is reported that flavin-containing monooxygenase 3 (FMO3) is associated with fish-odour trait in human and animal products. FMO3 is responsible for the degradation of trimethylamine (TMA) in vivo. Loss-of-function mutations in FMO3 gene can result in defective TMA N-oxygenation, giving rise to disorder known as “fish-odour syndrome” in human, as well as the fishy off-flavor in cow milk and chicken eggs. In order to reveal the genetic factor of fishy taint in quail eggs, we cloned the cDNA sequence of quail FMO3 gene, investigated FMO3 mRNA expression level in various tissues, detected SNPs in the coding region of the gene and conducted association analysis between a mutation and the TMA content in quail egg yolks. The 1888 bp cDNA sequence of quail FMO3 gene encoding 532 amino acids was obtained and characterized. The phylogenetic analysis revealed quail FMO3 had a closer relationship with chicken FMO3. The FMO3 mRNA was highly expressed in liver and kidney of quail. Nine SNPs were detected in the coding sequence of quail FMO3 gene, including a nonsense mutation (Q319X) which was significantly associated with the elevated TMA content in quail egg yolks. Genotype TT at Q319X mutation loci was sensitive to choline. With addition of choline in the feed, the quails with homozygote TT at the Q319X mutation loci laid fish-odour eggs, indicating an interaction between genotype and diet. The results indicated that Q319X mutation was associated with the fishy off-flavor in quail eggs. Identification of the unfavorable allele T of quail FMO3 gene can be applied in future quail breeding to eliminate fishy off-flavor trait in quail eggs.
机译:在某些国家/地区,鹌鹑蛋占了食用鸡蛋的重要部分。但是,有些鹌鹑蛋呈现出腥味,直接影响其质量。据报道,含黄素的单加氧酶3(FMO3)与人和动物产品中的鱼腥味有关。 FMO3负责体内三甲胺(TMA)的降解。 FMO3基因的功能丧失突变可能导致TMA N氧合缺陷,从而导致人体内被称为“鱼腥味综合症”的疾病,以及牛奶和鸡蛋中的鱼腥味。为了揭示鹌鹑蛋中鱼腥味的遗传因素,我们克隆了鹌鹑FMO3基因的cDNA序列,研究了FMO3 mRNA在各种组织中的表达水平,在该基因的编码区中检测到SNP,并进行了突变与突变之间的关联分析。鹌鹑蛋黄中的TMA含量。获得并鉴定了鹌鹑FMO3基因的1888 bp cDNA序列,该序列编码532个氨基酸。系统发育分析表明,鹌鹑FMO3与鸡FMO3有更密切的关系。 FMO3 mRNA在鹌鹑的肝脏和肾脏中高表达。在鹌鹑FMO3基因的编码序列中检测到9个SNP,包括一个无意义的突变(Q319X),该突变与鹌鹑蛋黄中TMA含量升高显着相关。 Q319X突变位点的基因型TT对胆碱敏感。在饲料中添加胆碱后,在Q319X突变位点处具有纯合体TT的鹌鹑产下了鱼腥味卵,表明基因型与饮食之间存在相互作用。结果表明,Q319X突变与鹌鹑蛋的腥臭味有关。鹌鹑FMO3基因的不利等位基因T的鉴定可用于将来的鹌鹑育种,以消除鹌鹑蛋的腥臭味。

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