Abstract
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 thatplastomic inversions inSciadopitys haveled toshufflingof the remoteconservedoperons, resulting inthebirthof fourchimericgene 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.
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Hsu, C. Y., Wu, C. S., & Chaw, S. M. (2016). Birth of four chimeric plastid gene clusters in Japanese umbrella pine. Genome Biology and Evolution, 8(6), 1776–1784. https://doi.org/10.1093/gbe/evw109
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