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Mining plant genome browsers as a means for efficient connection of physical, genetic and cytogenetic mapping: an example using soybean

机译:挖掘植物基因组浏览器作为有效连接物理,遗传和细胞遗传图谱的一种手段:使用大豆的示例

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Physical maps are important tools to uncover general chromosome structure as well as to compare different plant lineages and species, helping to elucidate genome structure, evolution and possibilities regarding synteny and colinearity. The increasing production of sequence data has opened an opportunity to link information from mapping studies to the underlying sequences. Genome browsers are invaluable platforms that provide access to these sequences, including tools for genome analysis, allowing the integration of multivariate information, and thus aiding to explain the emergence of complex genomes. The present work presents a tutorial regarding the use of genome browsers to develop targeted physical mapping, providing also a general overview and examples about the possibilities regarding the use of Fluorescent In Situ Hybridization (FISH) using bacterial artificial chromosomes (BAC), simple sequence repeats (SSR) and rDNA probes, highlighting the potential of such studies for map integration and comparative genetics. As a case study, the available genome of soybean was accessed to show how the physical and in silico distribution of such sequences may be compared at different levels. Such evaluations may also be complemented by the identification of sequences beyond the detection level of cytological methods, here using members of the aquaporin gene family as an example. The proposed approach highlights the complementation power of the combination of molecular cytogenetics and computational approaches for the anchoring of coding or repetitive sequences in plant genomes using available genome browsers, helping in the determination of sequence location, arrangement and number of repeats, and also filling gaps found in computational pseudochromosome assemblies.
机译:物理图谱是揭示一般染色体结构以及比较不同植物谱系和物种的重要工具,有助于阐明基因组结构,进化以及关于同线性和共线性的可能性。序列数据产量的增加为将信息从作图研究与基础序列联系起来提供了机会。基因组浏览器是提供访问这些序列的无价平台,包括用于基因组分析的工具,允许集成多变量信息,从而有助于解释复杂基因组的出现。本工作介绍了有关使用基因组浏览器开发目标物理作图的教程,还提供了有关使用细菌人工染色体(BAC)进行荧光原位杂交(FISH),简单序列重复的可能性的一般概述和示例。 (SSR)和rDNA探针,突显了此类研究在地图整合和比较遗传学方面的潜力。作为案例研究,访问了大豆的可用基因组,以显示如何在不同水平上比较这些序列的物理和计算机内分布。还可通过鉴定超出细胞学方法检测水平的序列来补充此类评估,此处以水通道蛋白基因家族的成员为例。拟议的方法强调了分子细胞遗传学和计算方法相结合的补充能力,可使用可用的基因组浏览器将编码或重复序列锚定在植物基因组中,有助于确定序列的位置,排列和重复次数,并填补空白在计算伪染色体装配中发现。

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