首页> 美国卫生研究院文献>Asian-Australasian Journal of Animal Sciences >Association between Single Nucleotide Polymorphisms of Fatty Acid Synthase and Fat Deposition in the Liver of the Overfed Goose
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Association between Single Nucleotide Polymorphisms of Fatty Acid Synthase and Fat Deposition in the Liver of the Overfed Goose

机译:脂肪酸合酶的单核苷酸多态性与饲喂鹅肝中脂肪沉积的关系

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摘要

Goose fatty liver is one of the most delicious and popular foods in the world, but there is no reliable genetic marker for the early selection and breeding of geese with good liver-producing potential. In our study, one hundred and twenty-four 78-day-old Landes geese bred in Shunda Landes goose breeding farm, Jiutai, Jilin, China were selected randomly. The fatty livers were sampled each week after overfeeding during a three week period. Polymerase chain reaction-single strand conformation polymorphism and DNA sequencing were used to identify single nucleotide polymorphisms (SNPs) of fatty acid synthase (FAS), which is an important enzyme involved in the synthesis of fat under both physiological and pathological conditions. Least-squares correlation was established between these SNPs and fatty liver weight, abdominal fat weight, and intestinal fat weight of the overfed Landes geese, respectively. The results showed that fatty liver weight of geese with EF and FF genotypes (amplified by primer P1) was significantly higher than that of the EE genotype (p<0.05), and liver weight of CD and DD genotypes (amplified by primer P2) was significantly higher than that of the CC genotype (p<0.05). Different genotype combinations showed different liver weights, and from highest to lowest were ABDD, DDEF, DDFF, DDEE, ABEF, ABFF, AADD, and CDEF. Further analysis of DNA sequencing showed that there were two SNPs within the 5′ promoter region the FAS gene. The geese of EF and FF genotypes carried a change of T to C, and the geese of CD and DD genotypes carried a change of A to G. The changes of the bases could potentially influence the binding of some transcription factors to this region as to regulate FAS gene. To our knowledge, this is the first report of SNPs found within the 5′ promoter region of the Landes goose FAS gene, and our data will provide an insight for early selection of geese for liver production.
机译:鹅脂肪肝是世界上最美味,最受欢迎的食品之一,但是尚无可靠的遗传标记可以早期选择和繁殖具有良好肝脏生产潜力的鹅。在我们的研究中,随机选择了吉林省九台市顺达兰德鹅种养场饲养的124只78天大的兰德鹅。在三周的过​​量喂食后,每周采集一次脂肪肝。聚合酶链反应-单链构象多态性和DNA测序用于鉴定脂肪酸合酶(FAS)的单核苷酸多态性(SNPs),脂肪酸合酶是在生理和病理条件下参与脂肪合成的重要酶。在这些SNP与过量喂养的兰德鹅的脂肪肝重量,腹部脂肪重量和肠内脂肪重量之间建立了最小二乘相关性。结果表明,具有EF和FF基因型的鹅的脂肪肝重量(由引物P1扩增)显着高于EE基因型的鹅的脂肪肝重量(p <0.05),具有CD和DD基因型的鹅的脂肪肝重量(由引物P2扩增)显着高于CC基因型(p <0.05)。不同的基因型组合显示出不同的肝脏重量,从最高到最低依次为ABDD,DDEF,DDFF,DDEE,ABEF,ABFF,AADD和CDEF。 DNA测序的进一步分析表明,FAS基因的5'启动子区域内有两个SNP。 EF和FF基因型的鹅从T变为C,CD和DD基因型的鹅从A变为G。碱基的改变可能会影响某些转录因子对该区域的结合。调节FAS基因。据我们所知,这是在Landes鹅FAS基因5'启动子区域内发现的SNP的首次报道,我们的数据将为早期选择鹅以供肝脏生产提供见识。

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