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The Complete Plastid Genome Sequence of the Secondarily Nonphotosynthetic Alga Cryptomonas paramecium: Reduction, Compaction, and Accelerated Evolutionary Rate

机译:次生非光合藻类隐孢子虫的完整质体基因组序列:减少,压实和加速的进化速度。

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摘要

The cryptomonads are a group of unicellular algae that acquired photosynthesis through the engulfment of a red algal cell, a process called secondary endosymbiosis. Here, we present the complete plastid genome sequence of the secondarily nonphotosynthetic species Cryptomonas paramecium CCAP977/2a. The ∼78 kilobase pair (Kbp) C. paramecium genome contains 82 predicted protein genes, 29 transfer RNA genes, and a single pseudogene (atpF). The C. paramecium plastid genome is approximately 50 Kbp smaller than those of the photosynthetic cryptomonads Guillardia theta and Rhodomonas salina; 71 genes present in the G. theta and/or R. salina plastid genomes are missing in C. paramecium. The pet, psa, and psb photosynthetic gene families are almost entirely absent. Interestingly, the ribosomal RNA operon, present as inverted repeats in most plastid genomes (including G. theta and R. salina), exists as a single copy in C. paramecium. The G + C content (38%) is higher in C. paramecium than in other cryptomonad plastid genomes, and C. paramecium plastid genes are characterized by significantly different codon usage patterns and increased evolutionary rates. The content and structure of the C. paramecium plastid genome provides insight into the changes associated with recent loss of photosynthesis in a predominantly photosynthetic group of algae and reveals features shared with the plastid genomes of other secondarily nonphotosynthetic eukaryotes.
机译:隐藻是一组单细胞藻类,它们通过吞噬红藻细胞而获得了光合作用,这一过程称为继发性内共生。在这里,我们介绍了次级非光合物种草履藻CCAP977 / 2a的完整质体基因组序列。约78千碱基对(Kbp)的草履梭状芽孢杆菌基因组包含82个预测的蛋白质基因,29个转移RNA基因和一个假基因(atpF)。草履虫梭状体质体基因组比光合隐孢子虫Guillardia theta和红假单胞菌盐藻小约50 Kbp。在草履形假丝酵母中缺失71个存在于G.theta和/或R. salina质体基因组中的基因。宠物,psa和psb光合基因家族几乎完全不存在。有趣的是,在大多数质体基因组(包括G. theta和R. salina)中以反向重复的形式存在的核糖体RNA操纵子在草履虫中以单拷贝形式存在。草履虫中的G + C含量(38%)高于其他隐单胞菌质体基因组,草履虫中的C. paramecium质体基因的特征在于密码子使用模式显着不同和进化速率提高。草履虫梭菌质体基因组的内容和结构提供了与藻类光合作用组中最近光合作用丧失相关的变化的见解,并揭示了与其他次要非光合真核生物的质体基因组共有的特征。

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