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Identification and comparative analysis of the chloroplast α-subunit gene of DNA-dependent RNA polymerase from seven Euglena species

机译:七种裸藻属植物DNA依赖性RNA聚合酶叶绿体α-亚基基因的鉴定和比较分析

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摘要

When the sequence of the Euglena gracilis chloroplast genome was reported in 1993 the α-subunit gene (rpoA) of RNA polymerase appeared to be missing, based on a comparison of all putative reading frames to the then known rpoA loci. Since there has been a large increase in known rpoA sequences, the question of a Euglena chloroplast rpoA gene was re-examined. A previously described unknown reading frame of 161 codons was found to be part of an rpoA gene split by a single group III intron. This rpoA gene, which is highly variable from species to species, was then isolated and characterized in five other euglenoid species, Euglena anabaena, Euglena granulata, Euglena myxocylindracea, Euglena stellata and Euglena viridis, and in the Astasia longa plastid genome. All seven Euglena rpoA genes have either one or three group III introns. The rpoA gene products in Euglena spp. appear to be the most variable in this gene family when compared to the rpoA gene in other species of bacteria, algae and plants. Additionally, Euglena rpoA proteins lack a C-terminal domain required for interaction with some regulatory proteins, a feature shared only with some chlorophyte green algae. The E.gracilis rpoA gene is the distal cistron of a multigene cluster that includes genes for carbohydrate biosynthesis, photosynthetic electron transport, an antenna complex and ribosomal proteins. This study provides new insights into the transcription system of euglenoid plastids, the organization of the plastid genome, group III intron evolution and euglenoid phylogeny.
机译:根据所有假定的阅读框与当时已知的rpoA基因座的比较,1993年报道了细纹虫(Euglena gracilis)叶绿体基因组的序列时,似乎缺少RNA聚合酶的α亚基基因(rpoA)。由于已知rpoA序列的大量增加,因此重新检查了Euglena叶绿体rpoA基因的问题。发现以前描述的161个密码子的未知阅读框是rpoA基因的一部分,该基因由单个III组内含子分裂。然后,该rpoA基因在种与种之间具有高度可变性,然后在其他五种类桉属植物中进行了分离和鉴定,这些物种包括:Euglena anabaena,Euglena granulata,Euglena myxocylindracea,Euglena stellata和Euglena viridis,以及在Astasia longa质体基因组中。所有七个Euglena rpoA基因都具有一个或三个III组内含子。 Euglena spp中的rpoA基因产物。与其他细菌,藻类和植物中的 rpoA 基因相比,该基因家族中的变异似乎最大。此外, Euglena rpoA蛋白缺少与某些调节蛋白相互作用所需的C末端结构域,该功能仅与某些绿藻绿藻共享。 gracilis rpoA 基因是一个多基因簇的远端顺反子,包括碳水化合物的生物合成,光合电子转运,触角复合体和核糖体蛋白的基因。这项研究提供了新的见解,对延胡索质体的转录系统,质体基因组的组织,III组内含子进化和延胡索系统发育。

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