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1), genome reduction in both can be enabled by horizontal gene transfer to the host (34–37), and both have been shown to import proteins produced by the host (38, 39).But what of the apparent difference in genomic stability observed between endosymbionts and organelles?We found 233 scaffolds assembled from these combined data that contained recognizable scaffolds were present at different depths of coverage (Table 1), consistent with what would be expected if the scaffolds did not assemble from DNA fragments derived from the same physically linked DNA molecule.We also found many cases where different versions of the same gene were present on several different scaffolds.On Sex Vid dot xxx you will find many different categories which are made to save you time and help you out with finding that video which makes you stiff and wanting to rub one out.Maybe you're in the mood to watch some kinky sex cartoons, well you are in the right place, for you will be able to find many on Sex Here we test this hypothesis by investigating the structure of the Hodgkinia genomes that are 1.1-Mb pairs in length when considered together, an almost 10-fold increase in size from the hypothetical single-genome ancestor.These results parallel some examples of genome fragmentation and expansion in organelles, although the mechanisms that give rise to these extreme genome instabilities are likely different. This landmark paper provided many key insights that would be repeatedly reinforced in different bacterial symbioses during the subsequent 15 y, including extreme gene loss and genome reduction, precise metabolic complementarity and interdependence with the host insect, highly biased nucleotide and amino acid compositions, and limited gene sets involved in DNA repair, gene regulation, and cell envelope biosynthesis (2).

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Interestingly, this wild diversity in organelle genome structure and size is not reflected in coding capacity (25).

It is now clear that large mitochondrial genomes are derived from smaller mitochondrial genomes through processes such as repetitive DNA expansion and foreign DNA acquisition (23, 24, 30–32).