首页> 美国卫生研究院文献>Plant Physiology >Focus Issue on Chlamydomonas: Comparative Genomics of Two Closely Related Unicellular Thermo-Acidophilic Red Algae Galdieria sulphuraria and Cyanidioschyzon merolae Reveals the Molecular Basis of the Metabolic Flexibility of Galdieria sulphuraria and Significant Differences in Carbohydrate Metabolism of Both Algae
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Focus Issue on Chlamydomonas: Comparative Genomics of Two Closely Related Unicellular Thermo-Acidophilic Red Algae Galdieria sulphuraria and Cyanidioschyzon merolae Reveals the Molecular Basis of the Metabolic Flexibility of Galdieria sulphuraria and Significant Differences in Carbohydrate Metabolism of Both Algae

机译:衣原体的焦点问题:两种紧密相关的单细胞热嗜酸性红藻Galdieria sulphuraria和Cyanidioschyzon merolae的比较基因组学揭示了Galdieria sulphuraria代谢柔性的分子基础和两种藻类的碳水化合物代谢的显着差异

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摘要

Unicellular algae serve as models for the study and discovery of metabolic pathways, for the functional dissection of cell biological processes such as organellar division and cell motility, and for the identification of novel genes and gene functions. The recent completion of several algal genome sequences and expressed sequence tag collections and the establishment of nuclear and organellar transformation methods has opened the way for functional genomics approaches using algal model systems. The thermo-acidophilic unicellular red alga Galdieria sulphuraria represents a particularly interesting species for a genomics approach owing to its extraordinary metabolic versatility such as heterotrophic and mixotrophic growth on more than 50 different carbon sources and its adaptation to hot acidic environments. However, the ab initio prediction of genes required for unknown metabolic pathways from genome sequences is not trivial. A compelling strategy for gene identification is the comparison of similarly sized genomes of related organisms with different physiologies. Using this approach, candidate genes were identified that are critical to the metabolic versatility of Galdieria. Expressed sequence tags and high-throughput genomic sequence reads covering >70% of the G. sulphuraria genome were compared to the genome of the unicellular, obligate photoautotrophic red alga Cyanidioschyzon merolae. More than 30% of the Galdieria sequences did not relate to any of the Cyanidioschyzon genes. A closer inspection of these sequences revealed a large number of membrane transporters and enzymes of carbohydrate metabolism that are unique to Galdieria. Based on these data, it is proposed that genes involved in the uptake of reduced carbon compounds and enzymes involved in their metabolism are crucial to the metabolic flexibility of G. sulphuraria.
机译:单细胞藻类用作研究和发现代谢途径的模型,用于细胞生物学过程的功能解剖,例如细胞器分裂和细胞运动,以及用于鉴定新基因和基因功能。几个藻类基因组序列和表达的序列标签集合的最新完成以及核和细胞器转化方法的建立为使用藻类模型系统的功能基因组学方法开辟了道路。热嗜酸单细胞红藻Galdieria sulfuraria代表了一种特别适合基因组学的物种,这是由于其非凡的代谢多功能性(例如在50多种不同碳源上的异养和混养生长)以及对热酸性环境的适应性。但是,从基因组序列对未知代谢途径所需的基因从头开始进行预测并非易事。基因鉴定的一种引人注目的策略是比较具有不同生理特性的相关生物的相似大小的基因组。使用这种方法,鉴定了对加尔迪利亚的代谢多功能性至关重要的候选基因。将表达的序列标签和高通量的基因组序列读数(覆盖了超过70%的硫链霉菌)与单细胞专性自养红藻Cyanidioschyzon merolae的基因组进行了比较。超过30%的Galdieria序列与任何Cyanidioschyzon基因都不相关。仔细检查这些序列后发现,大量的膜转运蛋白和糖类代谢酶是加尔迪里亚所独有的。基于这些数据,提出了参与摄取减少的碳化合物的基因和参与其代谢的酶对于硫脲假单胞菌的代谢灵活性至关重要。

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