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Genome-wide identification of transcription factors and transcription-factor binding sites in oleaginous microalgae Nannochloropsis

机译:全基因组鉴定含油微藻拟南芥中的转录因子和转录因子结合位点

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摘要

Nannochloropsis spp. are a group of oleaginous microalgae that harbor an expanded array of lipid-synthesis related genes, yet how they are transcriptionally regulated remains unknown. Here a phylogenomic approach was employed to identify and functionally annotate the transcriptional factors (TFs) and TF binding-sites (TFBSs) in N. oceanica IMET1. Among 36 microalgae and higher plants genomes, a two-fold reduction in the number of TF families plus a seven-fold decrease of average family-size in Nannochloropsis, Rhodophyta and Chlorophyta were observed. The degree of similarity in TF-family profiles is indicative of the phylogenetic relationship among the species, suggesting co-evolution of TF-family profiles and species. Furthermore, comparative analysis of six Nannochloropsis genomes revealed 68 “most-conserved” TFBS motifs, with 11 of which predicted to be related to lipid accumulation or photosynthesis. Mapping the IMET1 TFs and TFBS motifs to the reference plant TF-“TFBS motif” relationships in TRANSFAC enabled the prediction of 78 TF-“TFBS motif” interaction pairs, which consisted of 34 TFs (with 11 TFs potentially involved in the TAG biosynthesis pathway), 30 TFBS motifs and 2,368 regulatory connections between TFs and target genes. Our results form the basis of further experiments to validate and engineer the regulatory network of Nannochloropsis spp. for enhanced biofuel production.
机译:拟南芥属是一组含油微藻,它们具有与脂质合成相关的基因的扩展阵列,但是如何转录调控它们仍是未知的。在这里,采用了一种系统生物学的方法来识别和功能注释海洋大肠杆菌IMET1中的转录因子(TF)和TF结合位点(TFBS)。在36个微藻类和高等植物基因组中,观察到的TF家族数目减少了两倍,而Nannochloropsis,Rhodophyta和Chlorophyta中的平均家庭大小减少了7倍。 TF家族谱系的相似程度表明了物种之间的系统发育关系,暗示了TF家族谱系与物种的共同进化。此外,对六个拟南芥基因组的比较分析揭示了68个“最保守的” TFBS基序,其中11个被预测与脂质积累或光合作用有关。在TRANSFAC中将IMET1 TF和TFBS基序映射到参照植物TF-“ TFBS基序”的关系使得能够预测78个TF-“ TFBS基序”相互作用对,其中包括34 TF(其中11 TF可能参与TAG生物合成途径) ),30 TFBS基序和TF与目标基因之间的2,368条调控连接。我们的结果构成了进一步实验的基础,以验证和设计Nannochloropsis spp的调控网络。用于增强生物燃料生产。

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