Michigan State University, Department of Plant Biology, East Lansing, MI 48824, USA.
Protist. 2012 Nov;163(6):832-43. doi: 10.1016/j.protis.2012.01.002. Epub 2012 Feb 23.
The chloroplast genome of Eutreptia viridis Perty, a basal taxon in the photosynthetic euglenoid lineage, was sequenced and compared with that of Euglena gracilis Ehrenberg, a crown species. Several common gene clusters were identified and gene order, conservation, and sequence similarity was assessed through comparisons with Euglena gracilis. Significant gene rearrangements were present between Eutreptia viridis and Euglena gracilis chloroplast genomes. In addition, major expansion has occurred in the Euglena gracilis chloroplast accounting for its larger size. However, the key chloroplast genes are present and differ only in the absence of psaM and roaA in Eutreptia viridis, and psaI in Euglena gracilis, suggesting a high level of gene conservation within the euglenoid lineage. Further comparisons with the plastid genomes of closely related green algal taxa have provided additional support for the hypothesis that a Pyramimonas-like alga was the euglenoid chloroplast donor via secondary endosymbiosis.
绿眼虫(Eutreptia viridis Perty)的叶绿体基因组被测序,并与冠物种眼虫(Euglena gracilis Ehrenberg)的叶绿体基因组进行了比较。通过与眼虫的比较,确定了几个常见的基因簇,并评估了基因的排列、保守性和序列相似性。绿眼虫和眼虫的叶绿体基因组之间存在明显的基因重排。此外,眼虫的叶绿体发生了重大扩张,导致其体积更大。然而,关键的叶绿体基因存在,只是绿眼虫缺少 psaM 和 roaA,眼虫缺少 psaI,这表明眼虫目内的基因高度保守。与亲缘关系较近的绿藻类群的质体基因组的进一步比较,为通过二次内共生,Pyramimonas 样藻类是眼虫叶绿体供体的假说提供了额外的支持。