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The Tetrahymena metallothionein gene family: twenty-one new cDNAs, molecular characterization, phylogenetic study andudcomparative analysis of the gene expression under different abiotic stressors

机译:四膜虫金属硫蛋白基因家族:21个新cDNA,分子鉴定,系统发育研究和不同非生物胁迫下基因表达的比较分析

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摘要

Background: Ciliate metallothioneins (MTs) are included in family 7 of the MT superfamily. This family has been divided into two main subfamilies: 7a or CdMTs and 7b or CuMTs. All ciliate MTs reported have been isolated from different Tetrahymena species and present unique features with regard to standard MTs. Likewise, an expression analysis has been carried out on some of MT genes under metal stress, corroborating their classification into two subfamilies. udResults: We isolated 21 new cDNAs from different Tetrahymena species to obtain a wider view of the biodiversity of these conserved genes. Structural analysis (cysteine patterns) and an updated phylogenetic study both corroborated the previous classification into two subfamilies. A new CuMT from a Tetrahymena-related species Ichthyophthirius multifiliis was also included in this general analysis. We detected a certain tendency towards the presentation of a CdMT tri-modular structure in Borealis group species with respect to Australis group. We report for the first time a semi-complete paralog duplication of a CdMT gene originating a new CdMT gene isoform in T. malaccensis. An asymmetry of the codon usage for glutamine residues was detected between Cd- and CuMTs, and the phylogenetic implications are discussed. A comparative gene expression analysis of several MT genes by qRTPCR revealed differential behavior among them under different abiotic stressors in the same Tetrahymena species.ud Conclusions: The Tetrahymena metallothionein family represents a quite conserved proteinstructure group with unique features with respect to standard MTs. Both Cd- and CuMT subfamilies present very defined and differentiated characteristics at several levels: cysteine patterns, modular structure, glutamine codon usage and gene expression under metal stress, among others. Gene duplication through evolution seems to be the major genetic mechanism for creating new MT gene isoforms and increasing their functional diversity.
机译:背景:纤毛金属硫蛋白(MT)包括在MT超家族的7族中。该家族被分为两个主要的亚家族:7a或CdMT和7b或CuMT。报告的所有纤毛MT均已从不同的四膜虫物种中分离出来,并且相对于标准MT具有独特的功能。同样,已经在金属胁迫下对一些MT基因进行了表达分析,证实了它们被分为两个亚家族。 ud结果:我们从不同的四膜虫物种中分离了21个新的cDNA,以更广泛地了解这些保守基因的生物多样性。结构分析(半胱氨酸模式)和最新的系统发育研究均证实了先前的分类为两个亚家族。此一般分析中还包括一个来自四膜虫相关物种多菌丝鱼的新CuMT。我们检测到在北极组物种中相对于南极组呈现CdMT三模结构的某种趋势。我们首次报告了源自T. malaccensis的新CdMT基因同工型的CdMT基因的半完全旁系同源物复制。在Cd和CuMT之间检测到谷氨酰胺残基的密码子使用不对称,并讨论了系统发生意义。通过qRTPCR对几个MT基因进行的比较基因表达分析显示,在相同的四膜虫物种中,在不同的非生物胁迫下它们之间的行为不同。 Cd和CuMT亚家族在几个水平上都表现出非常明确和不同的特征:半胱氨酸模式,模块结构,谷氨酰胺密码子使用和金属胁迫下的基因表达等。通过进化的基因复制似乎是创造新的MT基因同工型并增加其功能多样性的主要遗传机制。

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