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大型非标准基因多样性和绿藻(管藻目,绿藻门)叶绿体基因组的动态进化。

Large Diversity of Nonstandard Genes and Dynamic Evolution of Chloroplast Genomes in Siphonous Green Algae (Bryopsidales, Chlorophyta).

机构信息

School of BioSciences, University of Melbourne, Parkville, Australia.

Botanic Garden Meise, 1860 Meise, Belgium.

出版信息

Genome Biol Evol. 2018 Apr 1;10(4):1048-1061. doi: 10.1093/gbe/evy063.

Abstract

Chloroplast genomes have undergone tremendous alterations through the evolutionary history of the green algae (Chloroplastida). This study focuses on the evolution of chloroplast genomes in the siphonous green algae (order Bryopsidales). We present five new chloroplast genomes, which along with existing sequences, yield a data set representing all but one families of the order. Using comparative phylogenetic methods, we investigated the evolutionary dynamics of genomic features in the order. Our results show extensive variation in chloroplast genome architecture and intron content. Variation in genome size is accounted for by the amount of intergenic space and freestanding open reading frames that do not show significant homology to standard plastid genes. We show the diversity of these nonstandard genes based on their conserved protein domains, which are often associated with mobile functions (reverse transcriptase/intron maturase, integrases, phage- or plasmid-DNA primases, transposases, integrases, ligases). Investigation of the introns showed proliferation of group II introns in the early evolution of the order and their subsequent loss in the core Halimedineae, possibly through RT-mediated intron loss.

摘要

叶绿体基因组在绿藻(叶绿体门)的进化历史中经历了巨大的改变。本研究关注的是有孔绿藻(管藻目)的叶绿体基因组的进化。我们呈现了五个新的叶绿体基因组,与现有的序列一起,提供了一个代表该目的除一个科之外的所有科的数据组。我们使用比较系统发育的方法,研究了该目的基因组特征的进化动态。我们的结果表明叶绿体基因组结构和内含子含量存在广泛的变异。基因组大小的变化是由基因间空间的数量和不与标准质体基因有显著同源性的游离开放阅读框决定的。我们根据它们保守的蛋白质结构域展示了这些非标准基因的多样性,这些结构域通常与移动功能(逆转录酶/内含子成熟酶、整合酶、噬菌体或质粒 DNA 引发酶、转座酶、整合酶、连接酶)有关。内含子的研究表明,在该目的早期进化中,第二类内含子大量增殖,随后在核心的卤虫科中丢失,可能是通过 RT 介导的内含子丢失。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/68f9/5888179/f720304edb6d/evy063f1.jpg

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