Bennett Matthew S, Shiu Shin-Han, Triemer Richard E
Department of Plant Biology, Michigan State University, 612 Wilson Rd, Room# 166 Plant Biology Labs, East Lansing, Michigan, 48824, USA.
Ecology, Evolutionary Biology and Behavior Program, Michigan State University, 293 Farm Ln, Room# 103 Giltner Hall, East Lansing, Michigan, 48824, USA.
J Phycol. 2017 Jun;53(3):493-502. doi: 10.1111/jpy.12531. Epub 2017 Apr 5.
Gene duplication is an important evolutionary process that allows duplicate functions to diverge, or, in some cases, allows for new functional gains. However, in contrast to the nuclear genome, gene duplications within the chloroplast are extremely rare. Here, we present the chloroplast genome of the photosynthetic protist Euglena archaeoplastidiata. Upon annotation, it was found that the chloroplast genome contained a novel tandem direct duplication that encoded a portion of RuBisCO large subunit (rbcL) followed by a complete copy of ribosomal protein L32 (rpl32), as well as the associated intergenic sequences. Analyses of the duplicated rpl32 were inconclusive regarding selective pressures, although it was found that substitutions in the duplicated region, all non-synonymous, likely had a neutral functional effect. The duplicated region did not exhibit patterns consistent with previously described mechanisms for tandem direct duplications, and demonstrated an unknown mechanism of duplication. In addition, a comparison of this chloroplast genome to other previously characterized chloroplast genomes from the same family revealed characteristics that indicated E. archaeoplastidiata was probably more closely related to taxa in the genera Monomorphina, Cryptoglena, and Euglenaria than it was to other Euglena taxa. Taken together, the chloroplast genome of E. archaeoplastidiata demonstrated multiple characteristics unique to the euglenoid world, and has justified the longstanding curiosity regarding this enigmatic taxon.
基因复制是一个重要的进化过程,它使复制后的功能产生分化,或者在某些情况下,允许获得新的功能。然而,与核基因组不同,叶绿体中的基因复制极为罕见。在此,我们展示了光合原生生物古质体眼虫(Euglena archaeoplastidiata)的叶绿体基因组。经注释发现,该叶绿体基因组包含一个新的串联直接重复序列,它编码了部分核酮糖-1,5-二磷酸羧化酶/加氧酶大亚基(rbcL),随后是核糖体蛋白L32(rpl32)的完整拷贝以及相关的基因间序列。尽管发现重复区域中的替换(均为非同义替换)可能具有中性功能效应,但对重复的rpl32的分析在选择压力方面尚无定论。该重复区域未表现出与先前描述的串联直接重复机制一致的模式,并展示了一种未知的重复机制。此外,将该叶绿体基因组与同一科中其他先前已表征的叶绿体基因组进行比较,发现了一些特征,表明古质体眼虫可能与单形藻属(Monomorphina)、隐眼虫属(Cryptoglena)和眼虫藻属(Euglenaria)中的分类单元关系更为密切,而与其他眼虫分类单元的关系较远。综上所述,古质体眼虫的叶绿体基因组展示了眼虫类世界特有的多个特征,并证明了长期以来对这个神秘分类单元的好奇是合理的。