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具有极高和极低雄烯酮水平的猪睾丸中的基因表达谱。

Gene expression profiles in testis of pigs with extreme high and low levels of androstenone.

作者信息

Moe Maren, Meuwissen Theo, Lien Sigbjørn, Bendixen Christian, Wang Xuefei, Conley Lene Nagstrup, Berget Ingunn, Tajet Håvard, Grindflek Eli

机构信息

The Norwegian Pig Breeders Association (NORSVIN), Hamar, Norway.

出版信息

BMC Genomics. 2007 Nov 7;8:405. doi: 10.1186/1471-2164-8-405.

Abstract

BACKGROUND

Boar taint is a major obstacle when using uncastrated male pigs for swine production. One of the main compounds causing this taint is androstenone, a pheromone produced in porcine testis. Here we use microarrays to study the expression of thousands of genes simultaneously in testis of high and low androstenone boars. The study allows identification of genes and pathways associated with elevated androstenone levels, which is essential for recognising potential molecular markers for breeding purposes.

RESULTS

Testicular tissue was collected from 60 boars, 30 with extreme high and 30 with extreme low levels of androstenone, from each of the two breeds Duroc and Norwegian Landrace. The samples were hybridised to porcine arrays containing 26,877 cDNA clones, detecting 563 and 160 genes that were differentially expressed (p < 0.01) in Duroc and Norwegian Landrace, respectively. Of these significantly up- and down-regulated clones, 72 were found to be common for the two breeds, suggesting the possibility of both general and breed specific mechanisms in regulation of, or response to androstenone levels in boars. Ten genes were chosen for verification of expression patterns by quantitative real competitive PCR and real-time PCR. As expected, our results point towards steroid hormone metabolism and biosynthesis as important biological processes for the androstenone levels, but other potential pathways were identified as well. Among these were oxidoreductase activity, ferric iron binding, iron ion binding and electron transport activities. Genes belonging to the cytochrome P450 and hydroxysteroid dehydrogenase families were highly up-regulated, in addition to several genes encoding different families of conjugation enzymes. Furthermore, a number of genes encoding transcription factors were found both up- and down-regulated. The high number of clones belonging to ferric iron and iron ion binding suggests an importance of these genes, and the association between these pathways and androstenone levels is not previously described.

CONCLUSION

This study contributes to the understanding of the complex genetic system controlling and responding to androstenone levels in pig testis. The identification of new pathways and genes involved in the biosynthesis and metabolism of androstenone is an important first step towards finding molecular markers to reduce boar taint.

摘要

背景

在使用未阉割公猪进行生猪生产时,公猪膻味是一个主要障碍。导致这种膻味的主要化合物之一是雄烯酮,它是猪睾丸中产生的一种信息素。在此,我们使用微阵列同时研究高雄烯酮水平和低雄烯酮水平公猪睾丸中数千个基因的表达情况。该研究有助于识别与雄烯酮水平升高相关的基因和通路,这对于识别潜在的育种分子标记至关重要。

结果

从杜洛克和挪威长白这两个品种的公猪中各选取60头,其中30头雄烯酮水平极高,30头雄烯酮水平极低,采集其睾丸组织。将样本与包含26,877个cDNA克隆的猪微阵列进行杂交,分别检测到杜洛克和挪威长白中差异表达(p < 0.01)的563个和160个基因。在这些显著上调和下调的克隆中,发现有72个在两个品种中是共有的,这表明在调节公猪雄烯酮水平或对公猪雄烯酮水平作出反应方面,可能存在通用机制和品种特异性机制。选择了10个基因通过定量实时竞争PCR和实时PCR验证表达模式。正如预期的那样,我们的结果表明类固醇激素代谢和生物合成是与雄烯酮水平相关的重要生物学过程,但也识别出了其他潜在通路。其中包括氧化还原酶活性、铁离子结合、铁离子结合和电子传递活性。除了几个编码不同家族结合酶的基因外,属于细胞色素P450和羟基类固醇脱氢酶家族的基因也高度上调。此外,还发现一些编码转录因子的基因有上调和下调情况。大量属于铁离子和铁离子结合的克隆表明这些基因很重要,且这些通路与雄烯酮水平之间的关联此前尚未见报道。

结论

本研究有助于理解控制猪睾丸中雄烯酮水平并对其作出反应的复杂遗传系统。识别参与雄烯酮生物合成和代谢的新通路和基因是寻找减少公猪膻味分子标记的重要第一步。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0e2e/2204014/144487d0d5ed/1471-2164-8-405-1.jpg

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