De novoAssembly and Comparative Analyses of Mitochondrial Genomes in Piperales

Author:

Yu Runxian12,Chen Xudong12,Long Lingjie12,Jost Matthias3,Zhao Ran1,Liu Lumei12,Mower Jeffrey P4,dePamphilis Claude W5,Wanke Stefan36,Jiao Yuannian12ORCID

Affiliation:

1. State Key Laboratory of Systematic and Evolutionary Botany, Institute of Botany, The Chinese Academy of Sciences , Beijing , China

2. College of Life Science, University of Chinese Academy of Sciences , Beijing , China

3. Institute of Botany, Dresden University of Technology , Dresden , Germany

4. Center for Plant Science Innovation and Department of Agronomy and Horticulture, University of Nebraska , Lincoln, Nebraska

5. Department of Biology and Huck Institutes of the Life Sciences, The Pennsylvania State University , University Park, Pennsylvania

6. Departamento de Botanica, Instituto de Biología, Universidad Nacional Autonoma de Mexico , Coyoacan, Distrito Federal , Mexico

Abstract

AbstractThe mitochondrial genome of Liriodendron tulipifera exhibits many ancestral angiosperm features and a remarkably slow evolutionary rate, while mitochondrial genomes of other magnoliids remain yet to be characterized. We assembled nine new mitochondrial genomes, representing all genera of perianth-bearing Piperales, as well as for a member of the sister clade: three complete or nearly complete mitochondrial genomes from Aristolochiaceae and six additional draft assemblies including Thottea, Asaraceae, Lactoridaceae, and Hydnoraceae. For comparative purpose, a complete mitochondrial genome was assembled for Saururus, a member of the perianth-less Piperales. The average number of short repeats (50–99 bp) was much larger in genus Aristolochia than in other angiosperm mitochondrial genomes, and approximately 30% of repeats (<350 bp) were found to have the capacity to mediate recombination. We found mitochondrial genomes in perianth-bearing Piperales comprising conserved repertories of protein-coding genes and rRNAs but variable copy numbers of tRNA genes. We identified several shifts from cis- to trans-splicing of the Group II introns of nad1i728, cox2i373, and nad7i209. Two short regions of the cox1 and atp8 genes were likely derived from independent horizontal gene transfer events in perianth-bearing Piperales. We found biased enrichment of specific substitution types in different lineages of magnoliids and the Aristolochiaceae family showed the highest ratio of A:T > T:A substitutions of all other investigated angiosperm groups. Our study reports the first mitochondrial genomes for Piperales and uses this new information for a better understanding of the evolutionary patterns of magnoliids and angiosperms in general.

Publisher

Oxford University Press (OUP)

Subject

Genetics,Ecology, Evolution, Behavior and Systematics

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