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首页> 外文期刊>Comparative biochemistry and physiology, Part D. Genomics & proteomics >Evolutionary analysis of orthologous cDNA sequences from cultured and symbiotic dinoflagellate symbionts of reef-building corals (Dinophyceae: Symbiodinium)
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Evolutionary analysis of orthologous cDNA sequences from cultured and symbiotic dinoflagellate symbionts of reef-building corals (Dinophyceae: Symbiodinium)

机译:造礁珊瑚的养殖和共生鞭毛共生体直系同源cDNA序列的进化分析(Dinophyceae:Symbiodinium)

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Dinoflagellates are ubiquitous marine and freshwater protists. The endosymbiotic relationship between dinoflagellates of the genus Symbiodinium (also known as zooxanthellae) and corals forms the basis of coral reefs. We constructed and analyzed a cDNA library from a cultured Symbiodinium species clade A (CassKB8). The majority of annotated ESTs from the Symbiodinium sp. CassKB8 library cover metabolic genes. Most of those belong to either carbohydrate or energy metabolism. In addition, components of extracellular signal transduction pathways and genes that play a role in cell–cell communication were identified. In a subsequent analysis, we determined all orthologous cDNA sequences between this library (1,484 unique sequences) and a library from a Symbiodinium species clade C (C3) (3,336 unique sequences) that was isolated directly from its symbiotic host. A set of 115 orthologs were identified between Symbiodinium sp. CassKB8 and Symbiodinium sp. C3. These orthologs were subdivided into three groups that show different characteristics and functions: conserved across eukaryotes (CE), dinoflagellate-specific (DS) and Symbiodinium-specific (SS). Orthologs conserved across eukaryotes are mainly comprised of housekeeping genes, photosynthesis-related transcripts and metabolic proteins, whereas the function for most of the dinoflagellate-specific orthologs remains unknown. A dN/dS analysis identified the highest ratio in a Symbiodinium-specific ortholog and evidence for positive selection in a dinoflagellate-specific gene. Evolution of genes and pathways in different dinoflagellates seems to be affected by different lifestyles, and a symbiotic lifestyle may affect population structure and strength of selection. This study is the first evolutionary comparative analysis of orthologs from two coral dinoflagellate symbionts.
机译:鞭毛藻是无处不在的海洋和淡水生物。共生菌属(Symbiodinium)(也称为人畜黄藻)的鞭毛藻与珊瑚之间的内共生关系构成了珊瑚礁的基础。我们从培养的Symbiodinium物种进化枝A(CassKB8)构建并分析了cDNA文库。来自Symbiodinium sp。的大多数带注释的EST。 CassKB8文库涵盖了代谢基因。其中大多数属于碳水化合物或能量代谢。此外,还鉴定了细胞外信号转导途径的成分和在细胞间通讯中起作用的基因。在随后的分析中,我们确定了该文库(1,484个唯一序列)和直接从其共生宿主分离的共生菌种进化枝C(C3)(3,336个唯一序列)的文库之间的所有直系同源cDNA序列。在Symbiodinium sp。之间鉴定出一组115个直系同源物。 CassKB8和Symbiodinium sp。 C3。这些直向同源物可分为三组,分别显示不同的特征和功能:在真核生物中保守(CE),对鞭毛鞭毛虫特异性(DS)和共生生物特异性(SS)。跨真核生物保守的直向同源物主要由管家基因,光合作用相关的转录本和代谢蛋白组成,而对于大多数鞭毛特异性直向同源物的功能仍然未知。 dN / dS分析确定了共生菌特异性直系同源物中的最高比率,并证实了鞭毛鞭毛藻特异基因中阳性选择的证据。不同鞭毛藻的基因和途径的进化似乎受不同生活方式的影响,而共生生活方式可能影响种群结构和选择强度。这项研究是对两种珊瑚鞭毛共生体直向同源物进行的第一个进化比较分析。

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