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Birth of Four Chimeric Plastid Gene Clusters in Japanese Umbrella Pine

机译:日本伞松中四个嵌合质体基因簇的诞生

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摘要

Many genes in the plastid genomes (plastomes) of plants are organized as gene clusters, in which genes are co-transcribed, resembling bacterial operons. These plastid operons are highly conserved, even among conifers, whose plastomes are highly rearranged relative to other seed plants. We have determined the complete plastome sequence of Sciadopitys verticillata (Japanese umbrella pine), the sole member of Sciadopityaceae. The Sciadopitys plastome is characterized by extensive inversions, pseudogenization of four tRNA genes after tandem duplications, and a unique pair of 370-bp inverted repeats involved in the formation of isomeric plastomes. We showed that plastomic inversions in Sciadopitys have led to shuffling of the remote conserved operons, resulting in the birth of four chimeric gene clusters. Our data also demonstrated that the relocated genes can be co-transcribed in these chimeric gene clusters. The plastome of Sciadopitys advances our current understanding of how the conifer plastomes have evolved toward increased diversity and complexity.
机译:植物的质体基因组(质体组)中的许多基因被组织成基因簇,其中基因被共转录,类似于细菌操纵子。这些质体操纵子是高度保守的,即使在针叶树中也是如此,它们的质体组相对于其他种子植物高度重排。我们已经确定了Sciadopityaceae的唯一成员-Sciadopitys verticillata(日本伞形松)的完整塑性组序列。 Sciadopitys plastome的特征在于广泛的倒位,串联重复后四个tRNA基因的假基因形成,以及参与同质异体组的唯一一对370 bp的反向重复。我们表明,Sciadopity中的质体转化已导致偏远的保守操纵子改组,从而导致四个嵌合基因簇的诞生。我们的数据还证明,可以在这些嵌合基因簇中共转录重定位的基因。 Sciadopitys的质体组推动了我们目前对针叶树质质体组如何向增加的多样性和复杂性发展的理解。

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