4.7 Article

Mitochondrial mRNA Processing in the Chlorophyte Alga Pediastrum duplex and Streptophyte Alga Chara vulgaris Reveals an Evolutionary Branch in Mitochondrial mRNA Processing

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PLANTS-BASEL
卷 10, 期 3, 页码 -

出版社

MDPI
DOI: 10.3390/plants10030576

关键词

mitochondria; RNA processing; algal evolution; circular RNA; polycytidylation; PacBio Iso-Seq

资金

  1. Buchanan Chair of Biology Endowment at UVA-Wise
  2. Fellowship in Natural Sciences program at UVA-Wise

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Our study analyzed transcript termini in two green algae, providing insights into the differences in mitochondrial mRNA processing between chlorophytic and streptophytic algae. The findings suggest a conservation of mRNA processing among the chlorophyceae, while some processing events diverged with the split between chlorophytic and streptophytic algae.
Mitochondria carry the remnant of an ancestral bacterial chromosome and express those genes with a system separate and distinct from the nucleus. Mitochondrial genes are transcribed as poly-cistronic primary transcripts which are post-transcriptionally processed to create individual translationally competent mRNAs. Algae post-transcriptional processing has only been explored in Chlamydomonas reinhardtii (Class: Chlorophyceae) and the mature mRNAs are different than higher plants, having no 5' UnTranslated Regions (UTRs), much shorter and more variable 3' UTRs and polycytidylated mature mRNAs. In this study, we analyzed transcript termini using circular RT-PCR and PacBio Iso-Seq to survey the 3' and 5' UTRs and termini for two green algae, Pediastrum duplex (Class: Chlorophyceae) and Chara vulgaris (Class: Charophyceae). This enabled the comparison of processing in the chlorophyte and charophyte clades of green algae to determine if the differences in mitochondrial mRNA processing pre-date the invasion of land by embryophytes. We report that the 5' mRNA termini and non-template 3' termini additions in P. duplex resemble those of C. reinhardtii, suggesting a conservation of mRNA processing among the chlorophyceae. We also report that C. vulgaris mRNA UTRs are much longer than chlorophytic examples, lack polycytidylation, and are polyadenylated similar to embryophytes. This demonstrates that some mitochondrial mRNA processing events diverged with the split between chlorophytic and streptophytic algae.

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