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Complete DNA sequences of the plastid genomes of two parasitic flowering plant species Cuscuta reflexa and Cuscuta gronovii

机译:两种寄生开花植物物种Cuscuta reflexa和Cuscuta gronovii的质体基因组的完整DNA序列

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摘要

BackgroundThe holoparasitic plant genus Cuscuta comprises species with photosynthetic capacity and functional chloroplasts as well as achlorophyllous and intermediate forms with restricted photosynthetic activity and degenerated chloroplasts. Previous data indicated significant differences with respect to the plastid genome coding capacity in different Cuscuta species that could correlate with their photosynthetic activity. In order to shed light on the molecular changes accompanying the parasitic lifestyle, we sequenced the plastid chromosomes of the two species Cuscuta reflexa and Cuscuta gronovii. Both species are capable of performing photosynthesis, albeit with varying efficiencies. Together with the plastid genome of Epifagus virginiana, an achlorophyllous parasitic plant whose plastid genome has been sequenced, these species represent a series of progression towards total dependency on the host plant, ranging from reduced levels of photosynthesis in C. reflexa to a restricted photosynthetic activity and degenerated chloroplasts in C. gronovii to an achlorophyllous state in E. virginiana.
机译:背景整体寄生植物Cu草属包括具有光合作用能力和功能性叶绿体的物种,以及具光合作用受限和退化的叶绿体的叶绿素和中间形式。先前的数据表明,不同的Cuscuta物种在质体基因组编码能力方面存在显着差异,这可能与其光合作用相关。为了阐明伴随寄生性生活方式的分子变化,我们对两个物种Cuscuta reflexa和Cuscuta gronovii的质体染色体进行了测序。尽管效率不同,但这两种物种都能进行光合作用。这些物种与已对质体基因组进行了测序的无叶绿叶寄生植物Epifagus virginiana的质体基因组一起,代表了一系列对宿主植物的完全依赖性,从反射小球藻的光合作用水平降低到光合活性受到限制。并在罗氏衣原体中将叶绿体退化为弗吉尼亚州的E. virginiana。

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