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Integrating sorghum whole genome sequence information with a compendium of sorghum QTL studies reveals uneven distribution of QTL and of gene-rich regions with significant implications for crop improvement

机译:将高粱全基因组序列信息与高粱QTL研究纲要整合后,发现QTL和基因丰富区域的分布不均,对作物改良具有重要意义

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摘要

A comprehensive analysis was conducted using 48 sorghum QTL studies published from 1995 to 2010 to make information from historical sorghum QTL experiments available in a form that could be more readily used by sorghum researchers and plant breeders. In total, 771 QTL relating to 161 unique traits from 44 studies were projected onto a sorghum consensus map. Confidence intervals (CI) of QTL were estimated so that valid comparisons could be made between studies. The method accounted for the number of lines used and the phenotypic variation explained by individual QTL from each study. In addition, estimated centimorgan (cM) locations were calculated for the predicted sorghum gene models identified in Phytozome (JGI GeneModels SBI v1.4) and compared with QTL distribution genome-wide, both on genetic linkage (cM) and physical (base-pair/bp) map scales. QTL and genes were distributed unevenly across the genome. Heterochromatic enrichment for QTL was observed, with approximately 22% of QTL either entirely or partially located in the heterochromatic regions. Heterochromatic gene enrichment was also observed based on their predicted cM locations on the sorghum consensus map, due to suppressed recombination in heterochromatic regions, in contrast to the euchromatic gene enrichment observed on the physical, sequence-based map. The finding of high gene density in recombination-poor regions, coupled with the association with increased QTL density, has implications for the development of more efficient breeding systems in sorghum to better exploit heterosis. The projected QTL information described, combined with the physical locations of sorghum sequence-based markers and predicted gene models, provides sorghum researchers with a useful resource for more detailed analysis of traits and development of efficient marker-assisted breeding strategies.
机译:使用1995年至2010年发布的48份高粱QTL研究进行了全面分析,以使历史高粱QTL实验获得的信息可以更容易地被高粱研究人员和植物育种者使用。总的来说,与44个研究的161个独特性状相关的771个QTL被投影到了高粱共识图上。估计QTL的置信区间(CI),以便可以在研究之间进行有效的比较。该方法考虑了所用品系的数量以及每个研究的单个QTL解释的表型变异。此外,还针对在植物检疫中鉴定的预测高粱基因模型(JGI GeneModels SBI v1.4)计算了估计的中央器官(cM)位置,并将其与全基因组QTL分布进行了遗传连锁(cM)和物理(碱基对)比较/ bp)的地图比例尺。 QTL和基因在整个基因组中分布不均。观察到QTL的异色富集,大约22%的QTL完全或部分位于异色区域。与在基于序列的物理图上观察到的常染色体基因富集相比,由于异色区域中重组的抑制,还基于高粱共有图谱上其预测的cM位置观察到了异源基因富集。在重组较差的地区发现高基因密度,并与增加的QTL密度相关联,对开发更有效的高粱育种系统以更好地利用杂种优势具有重要意义。描述的预计QTL信息,结合基于高粱序列的标记的物理位置和预测的基因模型,为高粱研究人员提供了有用的资源,可用于更详细地分析性状和开发有效的标记辅助育种策略。

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  • 来源
    《Theoretical and Applied Genetics》 |2011年第1期|169-191|共23页
  • 作者

    E. S. Mace; D. R. Jordan;

  • 作者单位

    Department of Employment Economic Development and Innovation Hermitage Research Station 604 Yangan Road Warwick QLD 4370 Australia;

    Queensland Alliance for Agriculture and Food Innovation Hermitage Research Station 604 Yangan Road Warwick QLD 4370 Australia;

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  • 正文语种 eng
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