Complete Mitochondrial Genome of a Gymnosperm, Sitka Spruce (Picea sitchensis), Indicates a Complex Physical Structure

Author:

Jackman Shaun D1,Coombe Lauren1,Warren René L1,Kirk Heather1,Trinh Eva1,MacLeod Tina1,Pleasance Stephen1,Pandoh Pawan1,Zhao Yongjun1,Coope Robin J1,Bousquet Jean2,Bohlmann Joerg3,Jones Steven J M1,Birol Inanc1

Affiliation:

1. Genome Sciences Centre, BC Cancer, Vancouver, British Columbia, Canada

2. Forest Genomics, Institute for Systems and Integrative Biology, Université Laval, Quebec, Quebec, Canada

3. Michael Smith Laboratories, University of British Columbia, Vancouver, British Columbia, Canada

Abstract

Abstract Plant mitochondrial genomes vary widely in size. Although many plant mitochondrial genomes have been sequenced and assembled, the vast majority are of angiosperms, and few are of gymnosperms. Most plant mitochondrial genomes are smaller than a megabase, with a few notable exceptions. We have sequenced and assembled the complete 5.5-Mb mitochondrial genome of Sitka spruce (Picea sitchensis), to date, one of the largest mitochondrial genomes of a gymnosperm. We sequenced the whole genome using Oxford Nanopore MinION, and then identified contigs of mitochondrial origin assembled from these long reads based on sequence homology to the white spruce mitochondrial genome. The assembly graph shows a multipartite genome structure, composed of one smaller 168-kb circular segment of DNA, and a larger 5.4-Mb single component with a branching structure. The assembly graph gives insight into a putative complex physical genome structure, and its branching points may represent active sites of recombination.

Funder

Genome Canada, Genome Quebec, Genome British Columbia, and Genome Alberta

Publisher

Oxford University Press (OUP)

Subject

Genetics,Ecology, Evolution, Behavior and Systematics

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