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Tracing the Evolution of the Plastome and Mitogenome in the Chloropicophyceae Uncovered Convergent tRNA Gene Losses and a Variant Plastid Genetic Code

机译:追踪绿藻科中的质体和有丝分裂基因组的进化发现收敛的tRNA基因丢失和变种质体遗传密码

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摘要

The tiny green algae belonging to the Chloropicophyceae play a key role in marine phytoplankton communities; this newly erected class of prasinophytes comprises two genera (Chloropicon and Chloroparvula) containing each several species. We sequenced the plastomes and mitogenomes of eight Chloropicon and five Chloroparvula species to better delineate the phylogenetic affinities of these taxa and to infer the suite of changes that their organelle genomes sustained during evolution. The relationships resolved in organelle-based phylogenomic trees were essentially congruent with previously reported rRNA trees, and similar evolutionary trends but distinct dynamics were identified for the plastome and mitogenome. Although the plastome sustained considerable changes in gene content and order at the time the two genera split, subsequently it remained stable and maintained a very small size. The mitogenome, however, was remodeled more gradually and showed more fluctuation in size, mainly as a result of expansions/contractions of intergenic regions. Remarkably, the plastome and mitogenome lost a common set of three tRNA genes, with the trnI(cau) and trnL(uaa) losses being accompanied with important variations in codon usage. Unexpectedly, despite the disappearance of trnI(cau) from the plastome in the Chloroparvula lineage, AUA codons (the codons recognized by this gene product) were detected in certain plastid genes. By comparing the sequences of plastid protein-coding genes from chloropicophycean and phylogenetically diverse chlorophyte algae with those of the corresponding predicted proteins, we discovered that the AUA codon was reassigned from isoleucine to methionine in Chloroparvula. This noncanonical genetic code has not previously been uncovered in plastids.
机译:属于藻科的微小绿藻在海洋浮游植物群落中起着关键作用。这种新近建立的类植物植物包括两个属(Chropropicon和Chloroparvula),每个属都有几种。我们对8个Chloropicon和5个Chloroparvula物种的质体组和有丝分裂基因组进行了测序,以更好地描绘这些类群的系统亲和力,并推断出它们的细胞器基因组在进化过程中持续发生的变化。在基于细胞器的系统树中解析的关系在本质上与先前报道的rRNA树完全一致,并且在质体组和有丝分裂组中发现了相似的进化趋势,但具有不同的动力学。尽管在两个属分裂时质体组的基因含量和顺序发生了相当大的变化,但随后仍保持稳定并保持很小的尺寸。但是,有丝分裂基因组的重塑过程更加缓慢,并且大小波动更大,这主要是由于基因间区域的扩展/收缩所致。值得注意的是,质体组和有丝分裂基因组丢失了三个tRNA基因的共同集合,其中trnI(cau)和trnL(uaa)的丢失伴随着密码子用法的重要变化。出乎意料的是,尽管Chnoparvula谱系中质体中的trnI(cau)消失了,但在某些质体基因中仍检测到了AUA密码子(此基因产物识别的密码子)。通过比较叶绿体藻类和系统发育多样的叶绿体藻类中质体蛋白编码基因的序列与相应预测蛋白的序列,我们发现AUA密码子在绿藻中从异亮氨酸重新分配为蛋氨酸。这种非规范的遗传密码以前尚未在质体中发现。

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