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首页> 外文期刊>Genetics: A Periodical Record of Investigations Bearing on Heredity and Variation >Genetic regulation of gene expression during shoot development in Arabidopsis.
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Genetic regulation of gene expression during shoot development in Arabidopsis.

机译:拟南芥芽发育过程中基因表达的遗传调控。

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The genetic control of gene expression during shoot development in Arabidopsis thaliana was analyzed by combining quantitative trait loci (QTL) and microarray analysis. Using oligonucleotide array data from 30 recombinant inbred lines derived from a cross of Columbia and Landsberg erecta ecotypes, the Arabidopsis genome was scanned for marker-by-gene linkages or so-called expression QTL (eQTL). Single-feature polymorphisms (SFPs) associated with sequence disparities between ecotypes were purged from the data. SFPs may alter the hybridization efficiency between cDNAs from one ecotype with probes of another ecotype. In genome scans, five eQTL hot spots were found with significant marker-by-gene linkages. Two of the hot spots coincided with classical QTL conditioning shoot regeneration, suggesting that some of the heritable gene expression changes observed in this study are related to differences in shoot regeneration efficiency between ecotypes. Some of the most significant eQTL, particularly those at the shoot regeneration QTL sites, tended to show cis-chromosomal linkages in that the target genes were located at or near markers to which their expression was linked. However, many linkages of lesser significance showed expected "trans-effects," whereby a marker affects the expression of a target gene located elsewhere on the genome. Some of these eQTL were significantly linked to numerous genes throughout the genome, suggesting the occurrence of large groups of coregulated genes controlled by single markers.
机译:结合数量性状基因座(QTL)和芯片分析分析拟南芥芽发育过程中基因表达的遗传控制。利用来自哥伦比亚和兰斯伯格直立型生态型杂交的30个重组自交系的寡核苷酸阵列数据,对拟南芥基因组进行了逐基因标记或所谓的表达QTL(eQTL)扫描。从数据中清除了与生态型之间的序列差异相关的单特征多态性(SFP)。 SFP可能会改变一种生态型的cDNA与另一种生态型的探针之间的杂交效率。在基因组扫描中,发现五个eQTL热点具有显着的标记物-基因关联。两个热点与经典QTL条件芽再生一致,这表明本研究中观察到的一些可遗传基因表达变化与生态型之间的再生效率差异有关。一些最重要的eQTL,特别是在枝条再生QTL位点的eQTL,倾向于显示顺式-染色体连接,因为目标基因位于与其表达相连的标记上或附近。然而,许多次要意义较小的连接显示出预期的“反式作用”,由此标记物影响位于基因组其他位置的靶基因的表达。这些eQTL中的一些与整个基因组中的众多基因显着相关,这表明存在由单个标记控制的大量共调基因。

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