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来自绿海葵的小热休克蛋白的特征揭示了刺胞动物中α-晶状体蛋白基因的分子进化见解。

Characterization of small HSPs from Anemonia viridis reveals insights into molecular evolution of alpha crystallin genes among cnidarians.

作者信息

Nicosia Aldo, Maggio Teresa, Mazzola Salvatore, Gianguzza Fabrizio, Cuttitta Angela, Costa Salvatore

机构信息

Laboratory of Molecular Ecology and Biotechnology, National Research Council-Institute for Marine and Coastal Environment (IAMC-CNR) Detached Unit of Capo Granitola, Torretta Granitola, Trapani, Italy.

Institute for Environmental Protection and Research-ISPRA, Palermo, Italy.

出版信息

PLoS One. 2014 Sep 24;9(9):e105908. doi: 10.1371/journal.pone.0105908. eCollection 2014.

Abstract

Gene family encoding small Heat-Shock Proteins (sHSPs containing α-crystallin domain) are found both in prokaryotic and eukaryotic organisms; however, there is limited knowledge of their evolution. In this study, two small HSP genes termed AvHSP28.6 and AvHSP27, both organized in one intron and two exons, were characterised in the Mediterranean snakelocks anemone Anemonia viridis. The release of the genome sequence of Hydra magnipapillata and Nematostella vectensis enabled a comprehensive study of the molecular evolution of α-crystallin gene family among cnidarians. Most of the H. magnipapillata sHSP genes share the same gene organization described for AvHSP28.6 and AvHSP27, differing from the sHSP genes of N. vectensis which mainly show an intronless architecture. The different genomic organization of sHSPs, the phylogenetic analyses based on protein sequences, and the relationships among Cnidarians, suggest that the A.viridis sHSPs represent the common ancestor from which H. magnipapillata genes directly evolved through segmental genome duplication. Additionally retroposition events may be considered responsible for the divergence of sHSP genes of N. vectensis from A. viridis. Analyses of transcriptional expression profile showed that AvHSP28.6 was constitutively expressed among different tissues from both ectodermal and endodermal layers of the adult sea anemones, under normal physiological conditions and also under different stress condition. Specifically, we profiled the transcriptional activation of AvHSP28.6 after challenges with different abiotic/biotic stresses showing induction by extreme temperatures, heavy metals exposure and immune stimulation. Conversely, no AvHSP27 transcript was detected in such dissected tissues, in adult whole body cDNA library or under stress conditions. Hence, the involvement of AvHSP28.6 gene in the sea anemone defensome is strongly suggested.

摘要

编码小型热休克蛋白(含有α-晶状体蛋白结构域的sHSP)的基因家族在原核生物和真核生物中均有发现;然而,人们对其进化的了解有限。在本研究中,在地中海绿海葵(Anemonia viridis)中鉴定了两个小型HSP基因,分别称为AvHSP28.6和AvHSP27,它们均由一个内含子和两个外显子组成。水螅(Hydra magnipapillata)和星状海葵(Nematostella vectensis)基因组序列的公布,使得对刺胞动物中α-晶状体蛋白基因家族的分子进化进行全面研究成为可能。大多数水螅的sHSP基因具有与AvHSP28.6和AvHSP27相同的基因结构,这与星状海葵的sHSP基因不同,后者主要表现为无内含子结构。sHSPs不同的基因组结构、基于蛋白质序列的系统发育分析以及刺胞动物之间的关系表明,绿海葵的sHSPs代表了水螅基因通过节段性基因组复制直接进化而来的共同祖先。此外,可以认为逆转座事件是星状海葵sHSP基因与绿海葵发生分化的原因。转录表达谱分析表明,在正常生理条件下以及不同应激条件下,AvHSP28.6在成年海葵外胚层和内胚层的不同组织中均有组成性表达。具体而言,我们分析了在不同非生物/生物应激刺激后AvHSP28.6的转录激活情况,结果显示其在极端温度、重金属暴露和免疫刺激下会被诱导表达。相反,在这些解剖组织、成年海葵全身cDNA文库或应激条件下均未检测到AvHSP27转录本。因此,强烈提示AvHSP28.6基因参与了海葵的防御机制。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d7cc/4175457/9816bb8eeaa7/pone.0105908.g001.jpg

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