Thiriet-Rupert Stanislas, Carrier Grégory, Chénais Benoît, Trottier Camille, Bougaran Gaël, Cadoret Jean-Paul, Schoefs Benoît, Saint-Jean Bruno
IFREMER, Physiology and Biotechnology of Algae Laboratory, rue de l'Ile d'Yeu, 44311, Nantes, France.
MicroMar, Mer Molécules Santé, IUML - FR 3473 CNRS, University of Le Mans, Le Mans, France.
BMC Genomics. 2016 Apr 11;17:282. doi: 10.1186/s12864-016-2610-9.
Studying transcription factors, which are some of the key players in gene expression, is of outstanding interest for the investigation of the evolutionary history of organisms through lineage-specific features. In this study we performed the first genome-wide TF identification and comparison between haptophytes and other algal lineages.
For TF identification and classification, we created a comprehensive pipeline using a combination of BLAST, HMMER and InterProScan software. The accuracy evaluation of the pipeline shows its applicability for every alga, plant and cyanobacterium, with very good PPV and sensitivity. This pipeline allowed us to identify and classified the transcription factor complement of the three haptophytes Tisochrysis lutea, Emiliania huxleyi and Pavlova sp.; the two stramenopiles Phaeodactylum tricornutum and Nannochloropsis gaditana; the chlorophyte Chlamydomonas reinhardtii and the rhodophyte Porphyridium purpureum. By using T. lutea and Porphyridium purpureum, this work extends the variety of species included in such comparative studies, allowing the detection and detailed study of lineage-specific features, such as the presence of TF families specific to the green lineage in Porphyridium purpureum, haptophytes and stramenopiles. Our comprehensive pipeline also allowed us to identify fungal and cyanobacterial TF families in the algal nuclear genomes.
This study provides examples illustrating the complex evolutionary history of algae, some of which support the involvement of a green alga in haptophyte and stramenopile evolution.
转录因子是基因表达中的关键参与者,通过谱系特异性特征研究转录因子对于探究生物的进化历史具有重要意义。在本研究中,我们首次对定鞭藻与其他藻类谱系进行了全基因组转录因子鉴定和比较。
为了进行转录因子的鉴定和分类,我们使用BLAST、HMMER和InterProScan软件组合创建了一个综合流程。该流程的准确性评估表明其适用于每种藻类、植物和蓝细菌,具有非常好的阳性预测值和灵敏度。这个流程使我们能够鉴定和分类三种定鞭藻——金藻、球石藻和帕夫藻;两种不等鞭毛藻——三角褐指藻和海洋微拟球藻;绿藻莱茵衣藻和红藻紫球藻中的转录因子。通过使用金藻和紫球藻,这项工作扩展了此类比较研究中所包含的物种种类,从而能够检测和详细研究谱系特异性特征,例如紫球藻、定鞭藻和不等鞭毛藻中绿色谱系特有的转录因子家族的存在。我们的综合流程还使我们能够在藻类核基因组中鉴定出真菌和蓝细菌的转录因子家族。
本研究提供了一些例子来说明藻类复杂的进化历史,其中一些例子支持绿藻参与了定鞭藻和不等鞭毛藻的进化。