The Evolutionary History of Daphniid α-Carbonic Anhydrase within Animalia.

International journal of evolutionary biology Pub Date : 2015-01-01 Epub Date: 2015-03-29 DOI:10.1155/2015/538918
Billy W Culver, Philip K Morton
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引用次数: 7

Abstract

Understanding the mechanisms that drive acid-base regulation in organisms is important, especially for organisms in aquatic habitats that experience rapidly fluctuating pH conditions. Previous studies have shown that carbonic anhydrases (CAs), a family of zinc metalloenzymes, are responsible for acid-base regulation in many organisms. Through the use of phylogenetic tools, this present study attempts to elucidate the evolutionary history of the α-CA superfamily, with particular interest in the emerging model aquatic organism Daphnia pulex. We provide one of the most extensive phylogenies of the evolution of α-CAs, with the inclusion of 261 amino acid sequences across taxa ranging from Cnidarians to Homo sapiens. While the phylogeny supports most of our previous understanding on the relationship of how α-CAs have evolved, we find that, contrary to expectations, amino acid conservation with bacterial α-CAs supports the supposition that extracellular α-CAs are the ancestral state of animal α-CAs. Furthermore, we show that two cytosolic and one GPI-anchored α-CA in Daphnia genus have homologs in sister taxa that are possible candidate genes to study for acid-base regulation. In addition, we provide further support for previous findings of a high rate of gene duplication within Daphnia genus, as compared with other organisms.

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动物中水蚤类α-碳酸酐酶的进化史。
理解驱动生物酸碱调节的机制是很重要的,特别是对于经历快速波动pH条件的水生栖息地的生物。以往的研究表明,碳酸酐酶(CAs)是锌金属酶的一个家族,在许多生物体中负责酸碱调节。通过使用系统发育工具,本研究试图阐明α-CA超家族的进化史,特别是对新兴的模式水生生物水蚤。我们提供了α-CAs进化的最广泛的系统发育之一,包括261个氨基酸序列,跨越从刺胞动物到智人的分类群。虽然系统发育支持了我们之前对α-CAs进化关系的大部分理解,但我们发现,与预期相反,细菌α-CAs的氨基酸保守支持了细胞外α-CAs是动物α-CAs祖先状态的假设。此外,我们发现水蚤属的两个胞质α-CA和一个gpi锚定α-CA在姐妹类群中有同源物,可能是研究酸碱调节的候选基因。此外,我们还进一步支持了先前发现的水蚤属与其他生物相比具有较高的基因复制率。
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