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Integration of a Systems Biological Network Analysis and QTL Results for Biomass Heterosis in Arabidopsis thaliana

机译:在拟南芥和系统中的生物网络分析的集成QTL结果生物质能杂种优势

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摘要

To contribute to a further insight into heterosis we applied an integrative analysis to a systems biological network approach and a quantitative genetics analysis towards biomass heterosis in early Arabidopsis thaliana development. The study was performed on the parental accessions C24 and Col-0 and the reciprocal crosses. In an over-representation analysis it was tested if the overlap between the resulting gene lists of the two approaches is significantly larger than expected by chance. Top ranked genes in the results list of the systems biological analysis were significantly over-represented in the heterotic QTL candidate regions for either hybrid as well as regarding mid-parent and best-parent heterosis. This suggests that not only a few but rather several genes that influence biomass heterosis are located within each heterotic QTL region. Furthermore, the overlapping resulting genes of the two integrated approaches were particularly enriched in biomass related pathways. A chromosome-wise over-representation analysis gave rise to the hypothesis that chromosomes number 2 and 4 probably carry a majority of the genes involved in biomass heterosis in the early development of Arabidopsis thaliana.
机译:为了进一步了解杂种优势,我们对系统拟南芥系统进行了综合分析,并对拟南芥早期发育中的生物量杂种优势进行了定量遗传学分析。这项研究是针对亲本种系C24和Col-0以及相互杂交的。在超表达分析中,测试了两种方法的所得基因列表之间的重叠是否明显大于偶然的预期。在系统生物学分析结果列表中,排名最高的基因在杂种QTL候选区域中显着超标,无论是杂种还是中亲和最亲杂种。这表明,影响生物量杂种优势的不仅是少数几个基因,而且还有数个基因位于每个杂种QTL区域内。此外,两种整合方法的重叠结果基因在生物质相关途径中特别丰富。染色体方面的过度表达分析提出了这样的假设,即第2号和第4号染色体可能携带拟南芥早期发育中涉及生物量杂种优势的大多数基因。

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