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对两种亲缘关系密切的单细胞嗜热嗜酸红藻——嗜热栖热菌(Galdieria sulphuraria)和梅氏嗜热蓝细菌(Cyanidioschyzon merolae)进行的比较基因组学研究,揭示了嗜热栖热菌代谢灵活性的分子基础以及这两种藻类在碳水化合物代谢方面的显著差异。

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.

作者信息

Barbier Guillaume, Oesterhelt Christine, Larson Matthew D, Halgren Robert G, Wilkerson Curtis, Garavito R Michael, Benning Christoph, Weber Andreas P M

机构信息

Department of Plant Biology , Michigan State University, East Lansing, Michigan 48824, USA.

出版信息

Plant Physiol. 2005 Feb;137(2):460-74. doi: 10.1104/pp.104.051169.

Abstract

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.

摘要

单细胞藻类可作为研究和发现代谢途径、对细胞器分裂和细胞运动等细胞生物学过程进行功能剖析以及鉴定新基因和基因功能的模型。近期完成的多个藻类基因组序列和表达序列标签集,以及核转化和细胞器转化方法的建立,为利用藻类模型系统进行功能基因组学研究开辟了道路。嗜热嗜酸的单细胞红藻嗜热栖热硫红藻(Galdieria sulphuraria)因其非凡的代谢多样性,如能在50多种不同碳源上进行异养和混合营养生长,以及对热酸性环境的适应性,成为基因组学研究中一个特别有趣的物种。然而,从基因组序列中对未知代谢途径所需基因进行从头预测并非易事。一种极具说服力的基因鉴定策略是比较具有不同生理特性的相关生物体大小相似的基因组。利用这种方法,鉴定出了对嗜热栖热硫红藻代谢多样性至关重要的候选基因。将覆盖嗜热栖热硫红藻基因组70%以上的表达序列标签和高通量基因组序列读数与单细胞专性光合自养红藻梅氏嗜热栖热藻(Cyanidioschyzon merolae)的基因组进行了比较。超过30%的嗜热栖热硫红藻序列与梅氏嗜热栖热藻的任何基因均无关联。对这些序列的进一步研究揭示了大量嗜热栖热硫红藻特有的膜转运蛋白和碳水化合物代谢酶。基于这些数据,有人提出,参与还原碳化合物摄取的基因及其代谢相关酶对嗜热栖热硫红藻的代谢灵活性至关重要。

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