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Gene expression analysis in anterior pituitary to investigate genetics of swine fertility.

机译:垂体前叶的基因表达分析以研究猪的繁殖力遗传学。

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摘要

In the present study we investigated the effect of selection for fertility traits on gene expression in anterior pituitary (AP) of NE selection lines. The objective of this study was to identify differentially expressed genes in the anterior pituitary of sows with different fertility phenotype. A White Composite base population originated two selection lines, one control line and another selected line for prolificacy. Selection was conducted based on an index, in which ovulation rate and embryo survival were included as parameters. Sows from both lines were slaughtered during follicular development phase. Differential display PCR (DD-PCR) was used to search for differences between lines in AP gene expression. Northern analysis and microarray were used to confirm DD-PCR results. Microarray was constructed using swine anterior pituitary clones (from the present study) and follicle clones from a concurrent DD-PCR project. In the expression study, three genes were identified as differentially expressed in the same direction of DD-PCR using Northern hybridizations. Using microarray analysis, 13 genes were differently expressed (P 0.05) for the two lines. At D2 nine genes were differently expressed, and at D4, the expression of six genes differed between lines. In general, genes differentially expressed are involved in cell growth, iron pool regulation, and energy production. In conclusion, long-term selection for fertility plays an important role in changing gene expression patterns in the anterior pituitary. Selected transcripts isolated from DD-PCR were mapped. Eleven markers were mapped using somatic cell hybrid panel (SCHP). Eight markers were mapped using a radiation hybrid panel (RH). SCHP mapping allows regional assignment of markers to chromosomes, and RH mapping refines mapping location and defines marker order not resolved in the linkage maps of the pig, which is important in finding genes in QTL region, in applying marker-assisted selection, and in increasing gene density in the porcine genomic map. Furthermore, they are useful for development of the porcine transcript map and the high-resolution BAC contig map.
机译:在本研究中,我们调查了生育性状选择对NE选择系垂体前叶(AP)基因表达的影响。这项研究的目的是确定具有不同生育表型的母猪垂体前叶中差异表达的基因。白人复合基本种群起源于两条选择线,一条为对照线,另一条为繁殖力选择线。基于指数进行选择,其中将排卵率和胚胎存活作为参数。在卵泡发育阶段将这两个系的母猪宰杀。差异显示PCR(DD-PCR)用于搜索AP基因表达中品系之间的差异。 Northern分析和微阵列用于确认DD-PCR结果。使用猪垂体前叶克隆(来自本研究)和来自同时进行的DD-PCR项目的卵泡克隆构建微阵列。在表达研究中,使用Northern杂交确定了三个基因在DD-PCR的相同方向上差异表达。使用微阵列分析,两条细胞系的13个基因表达差异(P <0.05)。在D2,九个基因的表达不同,而在D4,六个基因的表达在品系之间不同。通常,差异表达的基因与细胞生长,铁池调节和能量产生有关。总之,长期选择生育能力在改变垂体前叶基因表达模式中起着重要作用。将从DD-PCR分离出的选定转录本作图。使用体细胞杂交组(SCHP)绘制了11个标记。使用辐射混合面板(RH)绘制了八个标记。 SCHP定位允许对染色体进行标记的区域分配,而RH定位可以优化定位位置并定义在猪的连锁图中无法解析的标记顺序,这对于在QTL区域中寻找基因,应用标记辅助选择以及增加猪基因组图中的基因密度。此外,它们对于猪转录本图谱和高分辨率BAC重叠群图谱的开发是有用的。

著录项

  • 作者

    Bertani, Giovani R.;

  • 作者单位

    The University of Nebraska - Lincoln.;

  • 授予单位 The University of Nebraska - Lincoln.;
  • 学科 Biology Genetics.; Biology Animal Physiology.
  • 学位 Ph.D.
  • 年度 2001
  • 页码 109 p.
  • 总页数 109
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 遗传学;生理学;
  • 关键词

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