Extensive Shifts from Cis- to Trans-splicing of Gymnosperm Mitochondrial Introns

Author:

Guo Wenhu12,Zhu Andan134,Fan Weishu134,Adams Robert P5,Mower Jeffrey P13

Affiliation:

1. Center for Plant Science Innovation, University of Nebraska, Lincoln, NE

2. School of Biological Sciences, University of Nebraska, Lincoln, NE

3. Department of Agronomy and Horticulture, University of Nebraska, Lincoln, NE

4. Germplasm Bank of Wild Species, Kunming Institute of Botany, Chinese Academy of Sciences, Kunming, Yunnan, China

5. Biology Department, Baylor University, Waco, TX

Abstract

Abstract Hundreds of plant mitogenomes have been sequenced from angiosperms, but relatively few mitogenomes are available from its sister lineage, gymnosperms. To examine mitogenomic diversity among extant gymnosperms, we generated draft mitogenomes from 11 diverse species and compared them with four previously published mitogenomes. Examined mitogenomes from Pinaceae and cycads retained all 41 protein genes and 26 introns present in the common ancestor of seed plants, whereas gnetophyte and cupressophyte mitogenomes experienced extensive gene and intron loss. In Pinaceae and cupressophyte mitogenomes, an unprecedented number of exons are distantly dispersed, requiring trans-splicing of 50–70% of mitochondrial introns to generate mature transcripts. RNAseq data confirm trans-splicing of these dispersed exons in Pinus. The prevalence of trans-splicing in vascular plant lineages with recombinogenic mitogenomes suggests that genomic rearrangement is the primary cause of shifts from cis- to trans-splicing in plant mitochondria.

Funder

University of Nebraska

School of Biological Sciences Research Award

Large-scale Scientific Facilities

Chinese Academy of Sciences

Baylor University

National Science Foundation

Publisher

Oxford University Press (OUP)

Subject

Genetics,Molecular Biology,Ecology, Evolution, Behavior and Systematics

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