首页> 外文学位 >Construction of a minimal tiling path across the euchromatic arms of sorghum chromosome 3 and comparative analysis with the rice chromosome 1 pseudomolecule.
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Construction of a minimal tiling path across the euchromatic arms of sorghum chromosome 3 and comparative analysis with the rice chromosome 1 pseudomolecule.

机译:跨越高粱3号染色体的常染色体臂的最小平铺路径的构建以及与水稻1号染色体假分子的比较分析。

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摘要

Using rice chromosome 1 pseudomolecule as a reference, a minimal tiling path for the euchromatic arms of sorghum chromosome 3 was constructed, in which 23 contigs contain an estimated 57.56 Mb of DNA. A total of 409 EST-STS markers and 255 genetic markers have been mapped onto the euchromatic arms providing excellent integration of the genetic and physical maps. A total of 21 contigs containing 9 EST-STS and 35 genetic markers have been constructed across the heterochromatin block of sorghum chromosome 3 which comprise 16.57 Mb of DNA.;Macrocolinearity between sorghum chromosome 3 and rice chromosome 1 was examined based on the mapped EST-STS markers. Approximately 85% of the EST-STS markers were colinear between these two homeologous chromosomes. Estimates of recombination were also determined, which indicates the existence of recombination cold and hot spots.;Microcolinearity between sorghum chromosome 3 and rice chromosome 1 was examined at two different levels. In one case, overlapping sorghum BAC pools orthologous to a 5.1 Mb region of rice chromosome 1 were constructed and sequence skimmed. Alignment of the sorghum skim sequences to the TIGR rice gene models revealed ∼62% colinearity between the two orthologous regions. In addition, colinearity between sorghum chromosome 3 and rice chromosome 5 was detected within this region which is likely due to the segmental homology between rice chromosome 1 and rice chromosome 5. Microcolinearity between sorghum and rice was also examined by comparing 2 fully sequenced sorghum chromosome 3 BAC clones to the orthologous region of rice chromosome 1. In this analysis, ∼65% colinearity was detected for sorghum BAC 82G24 and ∼59% colinearity was detected for sorghum BAC 181g10. Microcolinearity was largely confined to gene coding regions and sequences of exons displayed the highest percent identities. Small-scale gene rearrangements were also detected.;Finally, RT-PCR analysis was carried out between a set of colinear and non-colinear genes from sorghum and rice to determine whether the loss of colinearity between orthologous genes resulted in a change in transcriptional regulation. No direct link between loss of colinearity and expression pattern was detected in these experiments.
机译:以水稻第1号染色体假分子为参考,构建了高粱第3号染色体常染色体分支的最小平铺路径,其中23个重叠群含有估计的57.56 Mb DNA。共有409个EST-STS标记和255个遗传标记已映射到常染色体上,从而提供了遗传图谱和物理图谱的出色整合。在高粱3号染色体的异染色质块上构建了总共21个含有9个EST-STS和35个遗传标记的重叠群,其中包含16.57 Mb的DNA。基于映射的EST-S检查了高粱3号染色体和水稻1号染色体之间的宏观线性。 STS标记。大约85%的EST-STS标记在这两个同源染色体之间共线。还确定了重组的估计值,这表明存在重组冷点和热点。在两个不同的水平上检查了高粱3号染色体和水稻1号染色体之间的微共线性。在一种情况下,构建了与水稻第1号染色体5.1 Mb区域同源的重叠高粱BAC库,并进行了序列撇除。高粱脱脂序列与TIGR水稻基因模型的比对显示两个直系同源区域之间约62%的共线性。此外,在该区域内检测到高粱3号染色体与水稻5号染色体之间的共线性,这很可能是由于水稻1号染色体与水稻5号染色体之间的区段同源性。通过比较2个完全测序的高粱3号染色体,还检查了高粱与水稻之间的微线性关系。 BAC克隆到水稻1号染色体的直系同源区域。在该分析中,高粱BAC 82G24的共线性约为65%,高粱BAC 181g10的共线性约为59%。微共线性主要限于基因编码区,外显子序列显示出最高的同一性百分比。最后,还检测了一组高粱和水稻的共线性和非共线性基因之间的RT-PCR分析,以确定直系同源基因之间共线性的丧失是否导致转录调控的改变。在这些实验中未检测到共线性的丧失与表达模式之间的直接联系。

著录项

  • 作者

    Zhou, Bin.;

  • 作者单位

    Texas A&M University.;

  • 授予单位 Texas A&M University.;
  • 学科 Biology Botany.
  • 学位 Ph.D.
  • 年度 2006
  • 页码 165 p.
  • 总页数 165
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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